534 resultados para senescence
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α.O objetivo deste estudo foi avaliar se a restrição alimentar materna durante a lactação altera a função ovariana da prole na puberdade e na vida adulta. No dia do nascimento da ninhada, as ratas foram separadas aleatoriamente nos seguintes grupos: (C) controle = dieta com 23% de proteína; (PER) restrição protéica calórica = dieta com 8% de proteína. Após o desmame, as proles tiveram livre acesso a dieta com 23% proteína e apenas os animais na fase diestro foram sacrificados com uma dose letal de pentobarbital aos 40 e 90 dias de idade. O sangue foi retirado por punção cardíaca e o soro armazendo para posterior dosagem dos níveis hormonais por radioimunoensaio. O ovário direito foi excisado, pesado e armazenado a 80C para subseqüente avaliação do receptor de androgênio (AR), das isoformas dos receptores de estrogênio (ERα, ERβ1 e ERβ2), do receptor do hormônio folículo estimulante (FSHR), do receptor do hormonio luteinizante (LHR), das isoformas dos receptores de leptina (Ob-R, Ob-Ra and Ob-Rb), e da enzima aromatase pela técnica de RT-PCR. O ovário esquerdo foi incluido em parafina, seccionado em cortes de 5 μm de espessura e processado por análise histológica de rotina, para classificação dos foliculos ovarianos. Na puberdade, o grupo PER apresentou um aumento significativo (p<0,05) no número dos folículos pré-antrais e antrais, enquanto o número de folículos primordiais, folículos de Graaf e corpo lúteo foram reduzidos significativamente (p<0,05). As concentrações sericas de estradiol (pg/ml) foram significativamente aumentadas (p<0,05). Houve aumento significativo na expressão do RNAm dos FSHR (p<0.05) e LHR (p<0.05), e diminuição significativa na expressão do RNAm dos AR (p<0.05), ERα (p<0.05), ERβ1 (p<0.05) e ERβ2 (p<0.05). Na vida adulta, a restrição alimentar causou uma diminuição no número total de folículos ovarianos, entretanto esta redução só foi significativa no número dos folículos primordiais, primários e de Graaf (p<0.05). Houve redução significativa da expressão da enzima aromatase (p<0.01), do FSHR (p<0.05), LHR (p<0.05), Ob-R (p<0.05) e Ob-Rb (p<0.05). Podemos concluir que a restrição alimentar materna durante a lactação causa uma programação metabólica no ovário da prole, alterando a foliculogênese, expressão das diferentes isoformas dos receptores de estrogênio, leptina, androgênio e gonadotropinas e da enzima aromatase. Essa programação, possivelmente decorrente dos baixos níveis de leptina nos primeiros dias de vida, pode contribuir para uma senescência precoce e redução da fertilidade já descrita na literatura.
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对紫茉莉花(MirabiIis jalapa L.)衰老过程中,花冠鲜重的变化,总游离氨基酸含量,总蛋白质含量、可溶性蛋白质含量、R—S蛋白含公以及DNA含量、RNA含量和总游离核苷酸进行了测定;并对相对子这些变化的过氧化酶活性。水解酶活性诸如蛋白水解酶、DNA水解酶、RNA水解酶、酸性磷酸酶等的活性分别进行了检测。花冠在不同衰老时间可溶性蛋白质用SDS—PAGE分析进行了分离,过氧化物同工酶通过聚丙烯酰胺凝胶电泳进行了检测。此外,应用了组织化学、细胞化学方法对细胞结构及“核穿壁”现象进行了显微镜观察。 从实验结果可以看出紫茉莉花冠的迅速衰老不但表现为细胞结构的变化和“核穿璧”现象的出现,还有细胞组分如蛋白质、核酸和其它大分子物质的降解。可溶性蛋白SDS—PA GE分析的图谱显示出衰老过程中某些蛋白质谱带的变化。其中,大分子量蛋白质117.5KD、91.2KD、 77.6KD 68.7KD、 6 3, 8KD谱带依次性地随着衰老的进行而消失;新带47.6 KD、 40.0KD出现,且吸收增大。部分蛋白质谱带的消失和新带的出现以及各种蛋白质含量的变化,游离氨基酸含量和蛋白水解酶活性的变化表明蛋白水解酶参与了蛋白质的降解,但由于蛋白质在整个衰老过程中是被连续地合成和分解,因此所测的蛋白含量实际上是合成与分解的净差值。D N A 、RNA含量的降低和游离核苷酸的增加可能是由于DNA水解酶和RNA水解酶作用的结果,但也不排除核酸合成过程的参与。过氧化物酶活性和同工酶谱带的增加证实该酶在衰老过程中促进衰老的作用
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衰老和冷害是果实采后极易发生的两种重要的生理性失调,严重影响了果实的商品质量和市场价值。本论文选用在采后贮藏期间容易衰老和出现冷害的枇杷、杧果和桃果实作为研究材料,比较深入系统地研究了这些果实采后衰老或冷害的机理和调控。主要的研究内容包括:(1)枇杷果实在不同贮藏条件下(低温、气调)的生理代谢、品质变化、衰老进程和贮藏性;(2)杧果果实采后生理特性及外源草酸和水杨酸处理对杧果冷害、品质和活性氧代谢的影响;(3)桃果实在低温贮藏下冷害发生特征,并从氧化还原平衡和蛋白质组表达方面探讨了桃果实采后冷害的发生机理。 试验结果表明:(1)与自发气调包装(MAP)相比,气调(CA, 10% O2+1%CO2)能更有效的抑制枇杷果实的腐烂、延缓衰老、保持品质,以及控制多聚半乳糖醛酸酶(PG)和多酚氧化酶(PPO)的活性。枇杷果实在1 ºC气调下贮藏50天,腐烂指数低于7%,并保持固有的风味品质。短时间的高氧处理对果实腐烂和品质影响不大,促进了贮藏后期果实内乙醇的积累;(2)外源草酸和水杨酸处理显著减轻了杧果果实在贮藏期间的冷害程度,但对果实的硬度、可溶性固型物和可滴定酸含量影响不大。外源草酸和水杨酸提高了果实内抗坏血酸和谷胱甘肽的还原状态、提高了H2O2含量、降低了O2-含量和脂氧合酶活性,并提高了超氧化物岐化酶、过氧化氢酶、过氧化物酶、抗坏血酸氧化酶和谷胱甘肽还原酶的活性;(3)与非冷害桃果实相比,冷害桃果实呈现较低的H2O2含量、较高的膜透性、较高的酚类物质含量以及较高的抗坏血酸和谷胱甘肽还原状态。水杨酸对果实内H2O2含量、膜透性、酚类物质含量有显著的影响。冷害桃果实与非冷害桃果实的蛋白质表达也有明显的区别,32个差异表达蛋白依其功能分为8类,分别为能量产生、代谢、次生代谢、抗性、蛋白质的分布、基因转录、细胞结构和细胞生长。水杨酸对其中20个蛋白质的表达有显著影响。烯醇化酶、脂质运载蛋白、脱水蛋白、分支酸变位酶以及桂醇脱氢酶等与桃冷害发生有密切关系。 通过对上述结果的分析,得出如下结论:(1)与MAP相比,CA(10% O2 + 1% CO2)可显著延缓枇杷果实的衰老、腐烂和品质下降,CA延缓枇杷衰老的作用机理可能与其减轻果实内氧胁迫、降低PG和PPO活性有关;(2)用外源草酸或水杨酸处理杧果,可减轻贮藏期间果实的冷害程度,其调控机制可能与提高果实抗坏血酸和谷胱甘肽的还原状态、抑制O2-含量和提高H2O2含量有关;(3)在低温贮藏下,桃冷害发生与果实内较低的H2O2含量、生物膜完整性的破坏以及酚类物质含量增加密切相关,果实生物膜完整性的破坏与烯醇化酶、脂质运载蛋白、过敏蛋白以及脱水蛋白的下调表达有关,而酚类物质含量的增加与分支酸变位酶、桂醇脱氢酶的上调表达有关。
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果实为开花植物所特有的发育器官,在种子的成熟和传播过程中发挥着重要作用。同时,肉质果实中含有丰富的营养物质,包括纤维素、维生素、抗氧化剂等,成为人们饮食的重要组成部分。由于果实的成熟衰老和抗病性直接影响果品的质量和市场价值,因此,研究果实成熟衰老和抗病性的调控机制具有重要的理论意义和应用前景。本文主要利用蛋白质组学的方法,探讨外源化学物质抑制果实成熟衰老和诱导抗病性的调控机制。 1. 硅对果实的抗病性诱导:用硅酸钠(1%)处理采后的甜樱桃果实,再接种褐腐病原菌(Molinilia fracticola),置于20C下,观测贮藏期间果实的发病率,并分析硅处理后诱导的主要蛋白质及调控机制。研究结果表明:硅酸钠处理可显著抑制贮藏期间褐腐病的发生,其抑病机理与硅诱导PR-蛋白的表达,提高果实的抗氧化水平,减轻由病原菌侵染造成的氧化胁迫相关。同时,硅处理还能保护细胞骨架结构,有利于增强果实对病原菌入侵的抵抗力。 2. 水杨酸对果实的抗病性诱导:用水杨酸(SA,2mM)在果园处理三种成熟度的甜樱桃果实,然后接种青霉病原菌(Penicillium expansum)观察其发病情况,并取样分析参与抗病性应答的主要蛋白质及调控机制。试验结果表明:SA处理能显著降低青霉病的发病率和抑制病斑扩展,而且SA对低成熟度甜樱桃果实的抗性诱导效果更好。在八成熟的果实中,有5个热激蛋白和4个脱氢酶蛋白被SA诱导,这些蛋白参与了糖酵解和三羧酸循环。抗氧化蛋白和PR蛋白主要参与较低成熟度果实的抗性应答,而热激蛋白和脱氢酶在较高成熟度果实的抗性应答中更明显,SA诱导的抗性与代谢途径相关。 3. 草酸对果实的抗性诱导:用5mM的草酸处理冬枣果实后,接种青霉菌(P. expansum),观察果实发病情况,测定果实相关的生理指标,分析参与果实抗性应答的主要蛋白质及调控机制。结果表明:草酸能明显延缓冬枣果实的衰老,提高果实对青霉菌的抗性。草酸处理能抑制果实乙烯的释放量和呼吸强度,延缓叶绿素的降解,减少乙醇积累。利用蛋白质组学的研究方法证实了在25个参与了草酸处理应答的蛋白中,胱硫醚-β-合酶结构域包含蛋白(CBB domain-containing protein)和3个与光合作用相关蛋白[二磷酸核酮糖羧化酶/加氧酶(Ribulose bisphosphate carboxylase/oxygenase activase, chloroplast precursor),二磷酸核酮糖羧化酶/加氧酶大亚基结合蛋白(RuBisCO large subunit-binding protein subunit beta, chloroplast precursor),植物光系统Ⅱ放氧复合蛋白2(PSII oxygen-evolving complex protein 2)]的表达量上调,乙醇脱氢酶的表达量出现下调。草酸处理还提高了与乙烯合成前体相关蛋白的表达,抑制了ACC合成酶的活性。草酸提高果实抗病的机制与延缓果实成熟衰老和保持果实抗性有关。 4. 果实衰老的调控机制:采用高氧(100%)和低氧(2-3%)处理苹果果实,观察果实衰老的进程,并基于蛋白质组学的研究方法,探讨苹果果实衰老与线粒体蛋白质组的关系。结果表明,在苹果衰老过程中有22个蛋白的表达量发生变化,这些蛋白主要参与了三羧酸循环,电子传递,碳代谢和胁迫应答。高氧处理能诱导氧化胁迫,加速了果实的衰老。质谱鉴定结果证明:在高氧胁迫下,超氧化物歧化酶(manganese superoxide dismutase,MnSOD)和线粒体外膜通道蛋白(porin) 的表达量降低,MnSOD的活性受到抑制,由此提高了线粒体中超氧阴离子的含量,增加了蛋白质的氧化损伤。 此外,高氧处理改变了porin的功能,导致了线粒体膜的透势发生变化,从而引起外膜损伤。由此阐明了活性氧在果实的成熟衰老调控中的重要作用。
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较系统地比较研究了超高产杂交稻两优培九培矮64S 93-11和华安3号X07S 紫恢100与多年来大规模推广种植的杂交稻品种汕优63珍汕97A 明恢63的光合生理特性结果表明 1 从苗期到抽穗期超高产杂交稻两优培九和华安3号的净光合速率Pn都比汕优63高而在苗期的午间强光条件下和分蘖期的早晨以及抽穗期的早晚相对弱光条件下其Pn的差别尤为显著说明超高产杂交稻两优培九和华安3号不仅有较高的Pn和较强的抗光抑制能力而且还能充分利用早晨和傍晚较弱的光照条件有效地进行光合作用 2 超高产杂交稻剑叶具有较高的光合色素含量和Chla/b比值同时也具有较高的水分利用效率WUE较高的Chla/b比值表明超高产杂交稻剑叶能够更有效地利用太阳能而较高的WUE则有利于后期节约稻田用水 3 两优培九和华安3号类囊体膜的77K荧光光谱在不同发育时期均高于对照汕优63对其进行Gaussan分析发现这两个超高产杂交稻的反应中心以及天线复合物的发射峰均优于汕优63表明超高产杂交稻具有更强光能吸收能力并且能够将所吸收的光能高效地应用于光合电子传递 4 超高产杂交稻在苗期和分蘖期的净光合速率Pn都明显高于对照可以为群体的扩大后期的生长发育和高产奠定坚实的物质基础 5 三个杂交稻品种抽穗期剑叶的净光合速率相差不大但两优培九和华安3号具有较汕优63高得多的表观量子效率和羧化效率即超高产杂交稻能够高效地利用光能和田间二氧化碳首次提出对光能和二氧化碳的高效利用是两优培九和华安3号高产地重要原因 在对杂交稻净光合速率日变化的研究中发现超高产杂交稻两优培九和华安3号在午间强光条件下具有较对照汕优63更高的净光合速率表明超高产杂交稻具有更强的抗光抑制能力为了研究其光保护机理进一步研究了杂交稻对光抑制的响应结果表明 1超高产杂交稻两优培九和华安3号较对照品种汕优63具有更强的抗光抑制及光保护能力同时在光抑制结束后又能够更迅速地恢复光合功能较强的抗光抑制能力和较高的恢复能力可能是其高产的重要生理原因之一 2光抑制过程中超高产杂交稻叶黄素循环玉米黄素积累速率和积累量都明显高于对照并且在其后的恢复过程中其恢复速率和恢复程度也明显高于汕优63发现叶黄素循环的脱环化作用在光抑制处理30min时即基本接近最大值并未随着光抑制的进一步加重而不断上升认为叶黄素循环在杂交稻光保护中的重要作用可能在于玉米黄素的快速积累对光保护作用的启动 3在对自然条件下光抑制的研究中发现汕优63比超高产杂交稻两优培九和华安3号更容易受到午间光抑制的伤害 4午间光抑制条件下叶黄素循环的玉米黄素Z和环氧玉米黄素A大量积累而叶黄素循环库则没有什么变化认为是叶黄素循环脱环化组分A和Z的积累而不是叶黄素循环库对水稻在中午强光条件下的光保护起重要作用 5在所研究水稻品种的午间光抑制实验中叶绿素荧光的非光化学猝灭系数和叶黄素循环的脱环化状态DES之间没有正比例关系进一步推论环式电子传递可能在杂交稻的光保护中起重要作用 6对用不同试剂处理的杂交稻叶片进行光抑制处理研究发现ASAVDE酶底物其含量可以有效地调节活性处理对杂交稻的抗光抑制能力并没有带来多大改善而DTTVDE酶的特异抑制剂处理也没有使其光抑制大大加重而用DBMIB环式电子传递抑制剂处理则使杂交稻受到比对照强得多的光抑制对qN解析的结果发现强光下qE并未上升反而下降而qT却在光抑制条件下表现出上升现象这些实验结果首次阐明叶黄素循环的热耗散在杂交稻的光保护中不起关键作用而环式电子传递则对于杂交稻的光保护起至关重要的作用其机理可能在于强光条件下环式磷酸化的加剧生成大量ATP用于光破坏的修复作用同时避免类囊体膜的过度酸化从而导致强光下qN的下降这也是光抑制条件下qE下降和qT上升的原因所在此外在研究中发现光抑制处理导致Chla/b比值的上升并且提出这种上升的原因可能在于强光条件下光合系统对LHCII需求减少从而导致对Chlb需求减少最终使得部分Chlb向Chla转化这种转化可能是杂交稻在光抑制条件下的一种保护性响应 7对超高产杂交稻华安3号冠层不同衰老程度叶片的光合功能比较研究的结果表明剑叶的光合功能最强第二叶次之第三叶具有一定的光合功能第四和第五叶则相当衰老基本上丧失光合能力而光合机构的衰老可能始于反应中心的衰老天线系统的衰老要迟于反应中心的衰老叶片衰老进程中Chla和Chlb同步降解但是Chlb先还原为Chla导致Chla/b比值的上升并且认为衰老过程中的这种Chlb的还原是Chlb降解的一个早期的和不可避免的步骤
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小麦是我国的重要粮食作物,小麦籽粒产量的形成主要来自小麦旗叶的光合同化产物,但是,小麦籽粒的灌浆时期正好伴随着旗叶的衰老过程,因此,研究小麦旗叶在衰老期间的光合作用有着重要意义。同时,光合器官也是产生活性氧的重要部位,如何消除衰老叶片中的活性氧,保证衰老旗叶光合作用的进行也有着重要意义。本文对衰老旗叶在衰老过程中的光合作用和抗氧化代谢进行了较为全面的研究。结果如下: 1.在大田小麦衰老旗叶中叶绿素含量,光合速率和RuBPCase活性随着衰老的进程而逐渐降低。但是在衰老过程中光系统II最大光化学效率(Fv/Fm),实际光系统II量子效率,光化学焠灭以及开放的光系统II激发能的利用效率在衰老初期和中期几乎不变,而到衰老晚期急剧下降。非光化学焠灭在衰老初期和中期也是几乎没有明显变化,到衰老晚期迅速上升。光系统II捕光色素复合体在衰老叶片中的下降要慢于光系统II核心和光系统I的下降。这些结果说明衰老叶片中,光系统II在叶绿素含量和光合速率和RuBPCase活性降低的情况下依然保持着完整的功能,而实际光系统II量子效率的下降是由于光系统II反应中心的关闭和光能热耗散的提高引起的。 2.叶黄素循环库随着衰老进程逐渐增加,叶黄素循环的脱环氧化状态也是逐渐增加。由于叶黄素循环在光能热耗散中有着重要贡献,这表明在衰老叶片中光能热耗散的提高与叶黄素循环在衰老叶片中的提高有关。 3.在衰老过程中,小麦旗叶的MDA,抗坏血酸含量以及其与脱氢抗坏血酸比值逐渐增加,谷胱甘肽含量逐渐降低,这说明在衰老叶片中,主要是抗坏血酸作为活性氧清除剂。 4. 分别以不同单位表示抗氧化代谢中各种酶的活性,这些酶包括:脱氢抗坏血酸还原酶,单脱氢抗坏血酸还原酶,抗坏血酸过氧化酶,谷胱甘肽还原酶,过氧化氢酶和超氧化物岐化酶。结果表明:以每克鲜重为单位表示的酶活随着衰老逐渐降低,而以每毫克蛋白表示的酶活都随着衰老逐渐升高,表现趋势为衰老初期小幅度变化,衰老晚期大幅度变化。同时,测定结果表明小麦旗叶衰老过程中的蛋白含量降低。这些说明在衰老过程中抗氧化酶的降解速度可能慢于其他蛋白的降解速度,相对提高了消除活性氧的能力。 5.对大田小麦开花期,衰老中期,衰老晚期的旗叶光合作用日变化作了较为系统的研究。结果表明,在小麦旗叶衰老的三个时期,叶绿素含量和Chl a/b比值以及叶黄素循环库在一天中变化不明显。光合速率随着光强增大而提高,在中午表现出明显的光抑制。光系统II最大光化学效率,实际光系统II量子效率,光化学焠灭和开放的光系统II激发能的利用效率在中午强光下较明显的降低,非光化学焠灭在中午强光下升高。它们的变化幅度都是在开花期和衰老中期较小或者几乎没有变化,而在衰老晚期旗叶中变化幅度明显增大。叶黄素脱环氧化状态随一天中光强的增大而增大,且在衰老晚期叶片中变化幅度最大。这说明在强光条件下,衰老叶片中光系统II仍然维持着完整的功能,这种功能的维持可能与高光强下光系统II的关闭和叶黄素循环参与的光能热耗散的增加有关。 6.对开花期,衰老中期,衰老晚期的旗叶抗氧化物日变化的研究发现:抗坏血酸含量和ASC/DASC都是在衰老晚期中午强光条件下有较明显的升高,在早晨和傍晚弱光条件下其值较低。脱氢抗坏血酸含量和ASC+DASC含量在一天中未表现出明显的变化规律。GSH+GSSG,GSH和GSH/GSSG有相似的变化规律,即在衰老的三个时期都表现出在一天的中午强光下的值比早晨和傍晚弱光条件下要高。GSSG在一天几乎不变。对开花期,衰老中期,衰老晚期旗叶的抗氧化酶日变化的研究发现:在开花期和衰老中期,DHAR活性一天中变化不大;在衰老晚期,其活性在中午强光条件下显著上升,而早晨和下午光强较弱的条件下,活性相对较低。ASPX, MDHAR, CAT和GR活性变化与DHAR类似。SOD活性在一天中变化不明显。结果表明,强光促进了抗氧化代谢中抗坏血酸的再生,特别在严重衰老叶片中与抗坏血酸再生有关的酶都在中午强光下有显著提高。严重衰老叶片中其他抗氧化酶在强光下,也表现出显著的提高,在衰老叶片中抗氧化系统提高了消除活性氧的能力,特别是在强光下,抗氧化系统有着重要的作用。
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牡丹(Paeonia suffruticosa Andr.)是芍药科芍药属牡丹组植物,花大、色艳、型美、香郁、药用范围广、文化内涵丰富,被尊为“国色天香”、“花中之王”。我国植牡丹、赏牡丹有1600多年的历史,培育了许多价值高的品种,遗憾的是个别黄色、鲜红色、绿色等珍贵品种不断消失,而且现有的一些文化价值与观赏价值极高的古牡丹、著名的牡丹园的老牡丹均出现了衰弱现象,有的已奄奄一息。为了探索传统牡丹品种消失及牡丹衰老的原因,本研究在充分调查、整理国内品种资源的基础上,总结了牡丹品种的传承和消失情况,掌握了古牡丹的资源状况。通过连作土壤栽培试验证明了牡丹连作障碍的存在,并选定了生长在同一区域的5、10、15、20、25、30年生6个株龄的‘洛阳红(Luo Yang Hong)’为研究对象,从形态指标的调查、生理指标的测定、根际土壤及根系浸提液的化感成分分析三个方面着手,确定了牡丹开始衰老的时期;揭示了牡丹衰老机理;总结了古牡丹保留、复壮、养护办法;为牡丹专类园的管理及可持续性发展提供了理论和技术指导。本研究主要结果如下: 1、牡丹品种和古牡丹资源 通过对中国牡丹品种资源的文献查阅和实地考察,系统整理了我国不同时代的品种状况,调查结果表明:宋、元、明、清共有品种1109种,目前仅存143种,品种资源消失十分严重。收集整理了49处古牡丹资料,并据此绘制了我国目前古牡丹分布图;实地调查了17处24株古牡丹,详细介绍了部分品种的来历传说、生长状况和衰亡原因。5个优良传统品种在中国科学院植物研究所牡丹种质资源圃内得以保存,其中潞城古牡丹,植株最大(高2.3 m,冠径5.6 m),且生长旺盛;西溪牡丹属丰花品种,40年植株可开花811朵。 2、牡丹连作障碍 利用牡丹连作根际土壤及其浸出液栽培牡丹,结果表明,播种苗及分株苗的生长均受到了抑制;连作年限越久的处理抑制作用越强;根际土壤浸出液对牡丹生长的影响较大,对前期地下部和后期地上部都有很强的抑制作用,而且还抑制了上胚轴休眠的解除;根际土壤对后期株高和展叶幅的影响较大,对播种苗前期生根影响不大。牡丹存在连作障碍现象,连作障碍是牡丹衰弱的重要原因。 3、牡丹衰老时间及机理 通过对6 个株龄‘洛阳红’的形态、生理指标及根际土壤化感成分的比较得出,牡丹在同一地方大约栽植15 年后开始衰弱,20 年以内应该采取复壮措施。利用气相色谱—质谱联用技术(Gas Chromatograph-Mass Spectrometer, GC-MS)检测到根际土壤及根系浸提液中主要存在:烷烃、烯烃、芳香烃、醇、醚、酚醌、有机酸、醛、酮、酯、苯、胺等12 类有机物。对比分析得出有12 种物质可能是根系分泌物,根际土壤中可能具毒害作用的物质有40 种,栽植牡丹使土壤中增加的物质有24 种。 4、古牡丹复壮技术及应用 栽培基质中添加活性炭、沙子、麦饭石等均能有效的促进牡丹的生长,以活性炭的效果最好。对“汉牡丹”实施了综合复壮措施,效果明显。
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Human cerebral cortical function degrades during old age. Much of this change may result from a degradation of intracortical inhibition during senescence. We used multibarreled microelectrodes to study the effects of electrophoretic application of gamma-aminobutyric acid (GABA), the GABA type a (GABAa) receptor agonist muscimol, and the GABAa receptor antagonist bicuculline, respectively, on the properties of individual V1 cells in old monkeys. Bicuculline exerted a much weaker effect on neuronal responses in old than in young animals, confirming a degradation of GABA-mediated inhibition. On the other hand, the administration of GABA and muscimol resulted in improved visual function. Many treated cells in area V1 of old animals displayed responses typical of young cells. The present results have important implications for the treatment of the sensory, motor, and cognitive declines that accompany old age.
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The maturation pattern of sexual reproduction in Hizikia fusiformis (Harvey) Okamura (Sargassaceae, Phaeaophyta) was examined in 2003 at Yunao Bay, Nanao Island, Shantou, China. Maturation began in mid-April (seawater temperature 19-21 degrees C), reached the peak in mid-May (maturation rate ca. 70%, and seawater temperature 23.5-25 degrees C) and finished in late-June (seawater temperature 27.5-30 degrees C). The Hizikia plants continued to gain the length from the beginning of maturation season to reach a maximum mean length of 34.8 cm in mid-May, after which the mean length was reduced drastically due to the senescence and rupture of the larger plants in size. The major portion of the mature plants belonged to the larger plants between April and May, but to the smaller ones in June. It is suggested that the plant must achieve a critical size before reproductive maturation occurred. There was a positive relationship between the number of receptacles (NR), as well as the reproductive allocation (RA), and the plant size of Hizikia population, with the recorded maximum values of NR and RA being 1220 and 64.3% respectively, for a single plant.
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Superoxide dismutase activity in water hyacinth leaves was not sensitive to small changes in environmental pH, but declined markedly with greater pH changes. KCN inhibited superoxide dismutase activity, suggesting that the enzyme was mainly composed of the Cu-Zn form. Low temperature (2-degrees-C) treatment caused a decline in superoxide dismutase activity. This effect became more pronounced as the treatment time was prolonged. Furthermore, the decline was much more significant than reductions of glucose-6-phosphate dehydrogenase activity or respiration under comparable conditions. With increasing physiological age, superoxide dismutase activity declined and was significantly lower in old than in young leaves. Therefore, superoxide dismutase activity might be employed as one of physiological parameters in studying leaf senescence.
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A study was undertaken on the susceptibility of the F-4 generation of "all-fish" growth hormone transgenic carp, Cyprinus carpio L, against Ichthyophthirius multifiliis infections. When 1-year old, transgenic carp, with non-transgenic carp and non-manipulated carp (controls) were split into three batches, and experimental infections were performed throughout the 3-month period. All 72 fish were successfully infected. It was shown that there was a significant difference (P<0.01) on infection level between transgenics and non-transgenics, and transgenics and controls. It possibly resulted from transgenics that had stronger non-specific immune functions. In addition, fish surface area affected significantly infection level (P<0.001). Carp with larger surface area harboured more parasites for each type of fish, but transgenic with larger surface area than non-transgenics and controls (P<0.01), loaded fewer parasites than others. Besides, the time of infection also greatly influenced (P<0.001) infection level. Results showed that there was a significant decline in parasite infectivity through October to November (P<0.001). It was likely to suggest that there existed senescence resulted in failure of any I. multifiliis isolate maintenance. Significant difference in infectivity between isolate G from grass carp and isolate H from gold fish suggested that different parasite strains may exist. (C) 2009 Elsevier B.V. All rights reserved.
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由于人类活动所引起的地球大气层中温室气体的富集已导致全球地表平均温度在20世纪升高了0.6 ℃,并预测在本世纪将上升1.4-5.8 ℃。气候变暖对陆地植物和生态系统影响深远,并已成为全球变化研究的重要议题。高海拔、高纬度地带的生态系统对气候变化最敏感。而在高原和高山极端环境影响下所形成的高寒草甸生态系统极其脆弱,对由于温室效应引起的全球气候变化极其敏感,对这些变化的响应更具有超前性。 本研究以川西北高寒草甸植物群落及几种主要物种为研究对象,采用国际山地综合研究中心(ITEX)普遍所采用的增温方法-----开顶式生长室(OTC)模拟气候变暖来研究增温对高寒草甸植物群落结构、物质分配及其主要物种生长和生理的影响,以探讨高寒草甸植物响应与适应气候变暖的生物学和生态学机制。主要研究结论如下: 1、OTC的增温效果 由于地温、地表温度和气温的平均值在OTC内分别高出对照样地0.28℃、0.46℃和1.4℃,这说明本研究所采用的开顶式生长室(OTC)起到了增温的作用;同时,由于温室内与温室外接受的降水量相同,温室内由于热量条件的改善,土壤蒸发和植被的蒸腾作用增强,直接导致了OTC内土壤表层相对湿度的减少。 2、群落结构对增温的响应 由于增温时间较短,增温内外样地的物种组成并未发生改变;但增温后一定程度上改变了植物群落的小气候环境,从而导致物种间的竞争关系被破坏,种间竞争关系的破坏引起群落优势种组成发生相应的改变,在对照样地,鹅绒委陵菜、甘青老鹳草、遏蓝菜和蚤缀是占绝对优势的物种,而在OTC内,小米草、尼泊尔酸模、垂穗披碱草、发草和羊茅的重要性显著增加。 禾草和杂草由于对增温的生物学特性及其资源利用响应的不同,加之增温造成土壤含水量下降等环境因子的改变。与对照样地相比较,OTC内禾草的盖度及生物量都显著增加,而杂草的盖度和生物量则显著下降。 3、植物生长期对增温的响应 OTC内立枯和调落物的生物量在生长季末(10月份)都要小于对照样地的立枯和调落物生物量,而OTC内的地上鲜体生物量在10月份却略高于对照样地。这说明OTC内植物的衰老或死亡得以延缓,而植物的生长期得以延长。 4、群落生物量及分配对增温的响应 OTC内的地上鲜体生物量(10月份除外)和地下0-30cm的根系生物量与对照样地相比较,都出现了不同程度的减少;土壤根系的分配格局也发生了明显的改变,其中,OTC内0-10cm土层的生物量分配比例增加,而20-30cm土层生物量分配比例的减少。 5、群落碳、氮对增温的响应 增温后,OTC内植物群落地上活体和地下活根的碳浓度不同程度的高于对照样地,植物群落的碳库在OTC内也略高于对照样地;而OTC内植物群落地上活体和地下活根的氮浓度不同程度的低于对照样地,其植物群落的氮库与对照样地相比也略有下降。 6、几种主要植物的生长及物质分配对增温的响应 垂穗披碱草在增温后株高、比叶面积和地上生物量均显著地增加;尼泊尔酸模在增温后比叶面积和单株平均生物量积累显著地增加,而各组分中,增温处理使叶的生物量显著增加,而根的生物量却显著下降;鹅绒委陵菜在增温后株高、比叶面积和单株平均生物量积累显著地减少,而各组分中,增温处理使叶和茎的生物量显著减少,根的生物量却显著地增加。 尼泊尔酸模的LMR、RMR、R/S、根部碳含量、碳和氮在叶片与根部的分配比例在增温后显著地增加,而SMR、根部氮含量、碳和氮在茎部的分配比例在增温后却显著地降低;鹅绒委陵菜的RMR、R/S、碳和氮在根部的分配比例在增温后显著地增加,而SMR、LMR、碳在叶片的分配比例在增温后却显著地降低 7、几种主要植物的光合生理过程对增温的响应 增温使垂穗披碱草和尼泊尔酸模叶片中的叶绿素a、叶绿素b、总叶绿素含量显著增加;而鹅绒委陵菜叶片的叶绿素a、叶绿素b、总叶绿素含量在增温后显著减少,类胡萝卜素含量在增温后却显著增加。 增温对3种植物的气体交换产生了显著影响。其中,垂穗披碱草和尼泊尔酸模叶片的光响应曲线在增温后明显高于对照处理,A、E、gs、Pmax、、Rday、AQY和LSP显著增加,而LCP则显著降低;鹅绒委陵菜的光响应曲线在增温后则明显的低于对照处理,A、E、gs、Pmax、、Rday、AQY和LSP显著减少,而LCP则显著增加。 增温后垂穗披碱草和尼泊尔酸模叶片的Fv/Fm、Yield和qP显著增加;而鹅绒委陵菜叶片的Fv/Fm、Yield和qP则显著减少,qN却显著地增加。 8、几种主要植物的抗氧化酶系统对增温的响应 增温使垂穗披碱草和尼泊尔酸模体内抗氧化酶活性和非酶促作用有所提高,植物膜脂过氧化作用降低;鹅绒委陵菜叶片中酶促反应和非酶促反应在增温后也显著提高,但可能由于增温后的土壤干旱超过了鹅绒委陵菜叶的抗氧化保护能力,抗氧化酶活性及非酶促反应(脯氨酸、类胡萝卜素)的提高不足以完全清除干旱诱导形成的过量活性氧,因此叶片的膜脂过氧化程度仍然显著提高。 Enrichment of atmospheric greenhouse gases resulted from human activities such as fossil fuel burning and deforestation has increased global mean temperature by 0.6 ℃ in the 20th century and is predicted to increase in this century by 1.4-5.8 ℃. The global warming will have profound, long-term impacts on terrestrial plants and ecosystems. The ecoologcial consequences arising from global warming have also become the very important issuses of global change research. The terrestrial habitats of high-elevation and high-latitude ecosystems are regarded as the most sensitive to changing climate. The alpine meadow ecosystme, which resulted from the composite effects of mountain extreme climatic factors in Tibetan Plateau, is thus thought to be especially vulnerable and sensitive to global warming. In this paper, the response of plant community and several main species in the alpine meadow of Northewst Sichuan to experimemtal warming was studied by using open-top chambers (OTC). The aim of the this study was to research the warming effects on plant community structure, substance allocation, growth and physiological processes of several mian species, and to explore the biological and ecological mechanism of how the alpine meadow plants acclimate and adapt to future global warming. The results were as follows: 1. Warming effects of OTC The mean soil temperature, soil surface temperature and air temperature in OTC manipulation increased by 0.28℃、0.46℃ and 1.4℃ compared to the control during the growing season. This suggested that the OTC used in our study had increased temperature there. Meanwhile, the OTC manipulation slightly altered thermal conditions, but the same amount of precipitation was supplied to both the OTC manipulation and the control, so higher soil evaporation and plant transpiration in OTC manipulation directly lead to the decrease of soil surface water content. 2. The reponse of community structure to experimental warming The species richness was not changed by the short-term effect of OTC manipulation. However, experimental warming changed the microenvironment of plant community, therefore competitive balances among species were shift, leading to changes in species dominance. In the present study, the dominant plant species in the control plots were some forbs including Potentilla anserine, Geranium pylzowianum, Thlaspi arvense and Arenaria serpyllifolia, however, the importance value of some gramineous grasses including Elymus nutans, Deschampsia caespitosa, Festuca ovina, and some forbs including Euphrasia tatarica and Rumex acetosa significantly increased in OTC. The different biology characteristics and resource utilizations between gramineous grasses and forbs, and enhanced temperature caused change in some environment factors such as soil water content. As a result, the coverage and biomass of gramineous grasses significantly increased in OTC compared to the control, however, the coverage and biomass of forbs singnifciantly decreased in OTC compared to the control. 3. The reponse of plant growing season to experimental warming Both the standing dead and fallen litter biomass in OTC were lower than those in the control in October, and the biomass of aboveground live-vegetation in OTC was higher than that of the control. The results indicated that the senescence of plants was postponed, and the growing season was prolonged in our research. 4. The reponse of community biomass accumulation and its allocation to experimental warming Experimental warming caused the decrease of aboveground live biomass and belowground root biomass except for the aboveground live biomass in October. Experimental warming also had pronounced effects on the pattern of root biomass allocation. In the present study, the root biomass in 0-10cm soil layer increased in OTC manipulation compared to the control, however, the root biomass in the 20-30cm soil layer decreased in OTC manipulation compared to the control. 5. The reponse of community C and N content to experimental warming The C concentration and stock in aboveground live and belowground root both increased in OTC manipulation compared to the control. However, the N concentration and stock in aboveground live and belowground root both decreased in OTC manipulation compared to the control. 6. The reponse of gowth and biomass, C and N alloction of several species to experimental warming Experimental warming significantly increased the height, SLA (specific leaf area) and aboveground biomass of Elymus nutans in OTC manipulation compared to the control. The SLA and total biomass of Rumex acetosa also significantly increased in OTC manipulation compared to control, among the different components of Rumex acetosa, leaf biomass significantly increased, but root biomass significantly decreased in OTC manipulation compared to the control. However, the height, SLA and total biomass of Potentilla anserina significantly decreased in OTC manipulation compared to the control, among the different component of Potentilla anserina, leaf and stem biomass significantly decreased, but root biomass significantly increased in OTC manipulation compared to the control. The LMR (leaf mass ratio), RMR (root mass ratio), R/S (shoot/root biomass ration) and root C concentration of Rumex acetosa significantly increased in OTC manipulation compared to outside control, also, Rumex acetosa allocated relatively more C and N content to leaf and root in response to experimental warming, however, the SMR (stem mass ration) and root N concentration of Rumex acetosa significantly decreased in OTC manipulation compared to outside control, also, Rumex acetosa allocated relatively less C and N content to stem in response to experimental warming. The RMR and R/S of Potentilla anserina significantly increased in OTC manipulation compared to outside control, also, Potentilla anserina allocated relatively more C and N content to root in response to experimental warming, however, the SMR and LMR of Potentilla anserina significantly decreased in OTC manipulation compared to outside control, also, Potentilla anserina allocated relatively less C and N content to leaf in response to experimental warming. 7. The reponse of physiological processes of several species to experimental warming Experimental warming significantly increased chlorophyll a, chlorophyll b and total chlorophyll of Elymus nutans and Rumex acetosa in OTC manipulation compared to outside control. However, chlorophyll a, chlorophyll b, total chlorophyll and carotenoid of Potentilla anserina in OTC manipulation significantly decreased compared to outside control. Experimental warming had pronounced effects on gas exchange of Elymus nutans, Rumex acetosa and Potentilla anserine. In the present study, warming markedly increased the light response curves of Elymus nutans and Rumex acetosa in OTC manipulation compared to outside control, and also singnificantly increased A (net photosynthesis rate), E (transpiration rate), gs (stomatal conductance), Pmax (maximum net photosynthetic rate), Rday (dark respiration rate), AQY (apparent quantum yield) and LSP (light saturation point), but LCP (photosynthetic light compensation) of Elymus nutans and Rumex acetosa in OTC manipulation singnificantly decreased compared to outside control. However, warming markedly decreased the light response curves of Potentilla anserina in OTC manipulation compared to outside control, and also singnificantly decreased A, E, gs, Pmax, Rday, AQY and LSP, but LCP of Potentilla anserina in OTC manipulation singnificantly increased compared to outside control. Experimental warming singnificantly increased the chlorophyll fluorescence kinetics parameters such as Fv/Fm, Yield and qP of Elymus nutans and Rumex acetosa and qN of Potentilla anserina in OTC manipulation, but Fv/Fm, Yield and qP of Potentilla anserina in OTC manipulation singnificantly decreased. 8. The reponse of antioxidative systems of several species to experimental warming Experimental warming tended to increase the activities of antioxidative enzymes and stimulate the role of non-enzymes of Elymus nutans and Rumex acetosa. As a result, MDA content of Elymus nutans and Rumex acetosa decreased. The activities of antioxidative enzymes and non-enzymes of Potentilla anserina also significantly increased in OTC manipulation, but more O2- was produced because of lower soil water content, and the O2- accumulation exceeded the defense ability of antioxidative systems and non-enzymes fuctions. As a result, MDA content of Potentilla anserine still increased in OTC manipulation compared to outside control.
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当前大气CO2浓度升高是全球变化的主要趋势之一,CO2浓度升高还会引起全球变暖等其它环境问题,因而CO2浓度浓度升高对植物影响的研究已经成为全球变化领域的焦点。红桦是川西亚高山地区暗针叶林演替初期的先锋树种和演替后期的建群种,在群落演替过程中它对环境因子的响应决定红桦群落的演替进程。本文通过控制CO2浓度的气候室试验,研究了CO2浓度倍增环境下,不同密度水平红桦碳氮固定、分配可能发生的改变,并探讨了升高大气CO2浓度对群体内部竞争的影响。以期通过本研究明确川西亚高山地区代表性物种红桦对未来气候变化的响应,为今后采取措施应对气候变化、妥善进行森林管理提供理论依据和科学指导。主要研究结果如下: 1.升高CO2浓度对红桦幼苗生长的影响以及树皮、树干响应的不同 (1) CO2浓度升高显著促进红桦幼苗的生物量、株高、基茎的生长,同时也改变生物量在体内的分配格局,主要是增加根和主茎、减少叶在总生物量中的比重。(2)树皮和树干对升高CO2浓度的影响有差异,它们对CO2浓度升高的反应程度不同,但反应方向一致。 2.密度的副效应 (1) 增加种植密度对单株生物量、株高和基径的生长具有副效应,也降低升高CO2浓度对红桦生长的正效应。(2) 增加种植密度,显著增加红桦幼苗的群体生物量,从而使红桦群体固定更多的大气CO2气体。可见密度在决定红桦生物量及固碳能力方面具有重要意义。探索适合未来大气CO2浓度升高条件下植物生长的密度,对未来的森林经济生产、生态恢复具有重要意义。 3. 升高CO2浓度对红桦幼苗苗冠结构及冠层内部竞争的影响 (1) 冠幅、冠高、苗冠表面积和苗冠体积等树冠特征均受CO2浓度升高的影响而增加,但是受密度增加的影响而降低。(2) 单位苗冠投影面积叶片数(LDcpa)和单位苗冠体积叶片数(LDcv)均低于相应的现行CO2浓度处理,这主要是由于冠幅和冠高的快速生长所造成的。(3) LDcpa和LDcv的降低表明,红桦在升高CO2浓度的条件下,会作出积极的响应,从而缓解由于群体和个体生长的增加所引起的竞争压力的增加。 4. 升高CO2浓度对红桦幼苗养分元素吸收与分配的影响 (1) CO2浓度升高,植株各器官N、P含量降低,但单株N、P总吸收量均增加。红桦幼苗体内N、P浓度的下降是由于生物量迅速增加引起的稀释效应造成的。(2) CO2浓度升高,N、P向主茎和根的分配增加,向叶片的分配减少,主要是由于前者在总生物量中的比重增加,而后者减少了。(3) CO2浓度升高,氮磷利用效率(NUE和PUE)提高,氮磷累积速率(NAcR和PAcR)显著增加。而NUE和PUE的提高可以有效缓解CO2浓度升高后,亚高山和高山地区森林土壤中养分元素不足对森林生产力的限制。 5. 升高CO2浓度对红桦幼苗群体碳平衡的影响 (1) 升高CO2浓度对植物的光合作用、呼吸速率和生长均具有促进作用。(2) 土壤有机碳含量在实验前期迅速增加,后期积累速率下降。(3) 升高CO2浓度以后,土壤呼吸显著增强;土壤呼吸还具有明显的季节变化。(4) 红桦群体日固碳量受到升高CO2浓度的促进作用。结果(1)-(4)说明所研究群落的碳动态对现行的气候波动是敏感的;所研究群落在作为大气CO2气体的源-汇关系方面至少存在季节间的源汇飘移。(5)种植密度的升高显著增加了群体固碳量。 6. 升高CO2浓度对红桦幼苗生长后期叶片衰老的影响 升高CO2浓度有利于减缓红桦幼苗叶片生长季节末期的衰老。生长季节末期,随着CO2浓度的升高光合速率和可溶性蛋白含量均呈上升趋势,同时MDA(丙二醛)含量下降,保护酶SOD(超氧化物岐化酶)、CAT(过氧化氢酶)活性升高。由此说明,升高CO2浓度有利于减缓生长季节后期叶片的衰老,使叶片维持较高的光合速率,也从生理学的角度支持了本文及前人有关CO2浓度升高促进植物光合和生长的假说及结果。 The increased CO2 concentration is one of the most important problems among global changes. The increase of CO2 will also cause other environmental problems, such as global warming, etc. So the effects of elevated CO2 on plant have drawn sights of many scientists in the research field of global change. Red birch (Betula albosinensis) usually emerges as the pioneer species in initial stage and as constructive species in later stages of forest community succession of the dark coniferous forests in Western Sichuan, China. It’s response to elevated CO2 may determine the succession process of the community where it lives in. By controlling CO2 at the ambient and twice as the ambient level (ambient + 350 umol mol-1) using enclosed-top chambers (ETC), possible effects of elevated CO2 on carbon fixation and allocation under two plantation densities are investigated. The effects of elevated CO2 on competition within canopy of red birch seedlings are also observed in the present paper. We hope to make sure of the effects of elevated CO2 on the representative species, red birch. And so that, our results could provide a strong theoretical evidence and scientific direction for forest management and afforestation under a future, CO2 elevated world. The results are as fowllows: 1. The effects of elevated CO2 on growth and the different responses of wood and bark of red birch seedlings (1) Elevated CO2 increases the growth of seedling biomass, seedling height and basal diameter of red birch. It also changed the biomass allocation in red birch seedlings. The ratio of root and main stem to all biomass is increased and the ratio of leaf is decreased. (2) Tree bark and wood show different response degree but similar response direction to elevated CO2. 2. Negative effects of planting density (1) The increase of planting density showes negative effects on the individual growth of seedling biomass, seedling height and basal diameter of red birch. It also eliminates the positive effects of elevated CO2 on growth of red birch seedlings. (2) Community biomass is increased by the elevated planting density, which means that the high density red birch community could fix more CO2 than the low density one. These results show that planting density plays an important role in determining biomass and carbon fixation ability of red birch community. Thus, exploring proper planting density becomes economically important for the future, CO2 elevated word. 3. The effects of elevated CO2 on crown architecture and competition within canopy of red birch seedlings (1) Crown width, crown depth, crown surface area and crown volume are all increased under the influence of elevated CO2. (2) Leaf number per unit area of projected crown area (LDcpa) and per unit volume of crown volume (LDcv) are lower under elevated CO2. This is resulted from the stimulated growth of tree crown features. (3) The decrease of LDcpa and LDcv indicate that plants will respond forwardly to reduce the possible increase of competition resulted from stimulated growth of individual plant and collectives in conditions of elevated CO2. 4. The effects of elevated CO2 on nutrition accumulation and allocation of red birch seedlings (1) Contents of N and P decrease due to the prompt increase of biomass of plant organs caused by elevated CO2. However, their accumulations increase under elevated CO2. (2) Elevated CO2 increases the allocation of N, P to main stem but reduced its allocation to leaf for that dry weight of the former increased but the dry weight of the later decreased. (3) Using efficiencies of N, P (NUE and PUE) and their accumulation rates (NAcR and PAcR) are found to increase under elevated CO2. Soil nutrition contents are always the limiting factors for plant growth at subalpine and alpine region. The increased NUE and PUE are helpful to eliminate the nutrition limitation in this area in the future world, when CO2 concentration doubles the ambient. 5. The effects of elevated CO2 on carbon balance of red birch communities (1) Net photosynthetic rates (Pn), dark respiration rates (Rd) and growth are all stimulated by elevated CO2. (2) Content soil organic carbon increases sharply at the primary stage of experiments and then the increasing rates decrease to a low level at later stages. (3) Soil respiration rates increase significantly with the elevation of CO2 concentration. (4) The daily carbon fixations of whole community are heightened by elevated CO2. The results (1)-(4) suggest that, the community being studied are sensitive to current climate change; the studied community, as a sink of atmospheric CO2, is pool-sink alternative between seasons. (5) The carbon fixations are increased along the increase of planting densities. 6. The effects of elevated CO2 on physiological features of leaf senescences of red birch seedlings at the later stage of growing season Elevated CO2 helps to postpone the leaf senescences of red birch at the end of the growth season. CO2 enrichment increases the photosynthetic rates, contents of soluble proteins and photosynthetic pigments. And meanwhile contents of malondialdehyde (MDA) decreases and activities of superoxide dismutase (SOD) and catalase (CAT) are both increased. These results suggest that the senescences of red birch leaves are delayed by elevated CO2, which keep the photosynthetic rates at relatively high levels. Our results lend supports to hypothesis and results on stimulated photosynthetic rates and growth from both other researchers and the present paper.
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干旱胁迫是全球范围内影响植物生存、生长和分布的重要环境因子。岷江上游干旱河谷区,由于生态环境的脆弱性和长期人类活动的干扰和过度利用,导致植被严重退化,水土流失加剧,山地灾害频繁,干旱化和荒漠化趋势明显。这种趋势若不能遏制,将严重阻碍区域社会经济的快速协调发展,并且威胁成都平原地区的发展和长江中下游地区的生态安全。因而开展干旱河谷生态恢复研究成为解决这些问题的关键。水分匮乏是限制干旱河谷生态恢复的关键因子,在全球气候变化的背景下,干旱胁迫在区域尺度上可能会更加严重,并使干旱河谷的生态环境更加恶化。因此,深入研究干旱河谷乡土植物对干旱胁迫的响应和适应机理,具有非常重要的理论和实践意义。 本论文以岷江上游干旱河谷的三种乡土豆科灌木,白刺花(Sophora davidii)、小马鞍羊蹄甲(Bauhinia faberi var. microphylla)和小雀花(Campylotropics polyantha)理论和实践意义。为研究对象,在人工控制条件下设计了4-5个连续性干旱胁迫处理,系统地研究了灌木幼苗的生长、生物量积累和水分利用效率(WUE)、形态结构和生理过程等对干旱胁迫的反应,揭示了幼苗的干旱适应能力及种间差异。主要研究结论如下: 1) 灌木生长和繁殖对干旱胁迫的反应 在干旱胁迫下,幼苗生长速率显著减小,叶片衰老和脱落比率增大,这些变化随着胁迫强度的增加具有累积效应。叶片比茎对干旱胁迫的反应更敏感。在严重干旱胁迫下,幼苗的有性繁殖被限制,但在中等程度干旱胁迫下,幼苗的有性繁殖能力被提高。 2) 灌木生物量积累及其分配和WUE对干旱胁迫的反应 在干旱胁迫下,灌木各器官的生物量都显著减小,但是生物量的分配侧重于地下部分,使得根茎比在干旱条件下增大。幼苗的耗水量(WU)随着干旱胁迫的增加而显著减少。白刺花和小马鞍羊蹄甲WUE在干旱胁迫下降低;小雀花的WUE在中等干旱胁迫下升高。 3) 灌木叶片结构特征对干旱胁迫反应 白刺花叶片具有较为典型的旱生型结构,而小马鞍羊蹄甲和小雀花则为中生型结构。在1至2年的干旱胁迫下,灌木叶片结构组成未发生本质性的改变,主要是细胞大小的变化。在中等和严重干旱胁迫下,叶肉组织厚度明显减小;并且气孔和表皮细胞面积也显著减小,气孔和表皮细胞密度显著增大;叶肉细胞层数、P/S值、表皮厚度等无显著变化。 4) 灌木对干旱胁迫的生理响应 气体交换参数和叶片相对含水量(RWC)在中等干旱胁迫下发生了明显的改变,而叶绿素荧光参数和光合色素含量在严重干旱胁迫下才发生显著变化。在干旱胁迫下,净光合作用速率(Pn)、气孔导度(gs)和RWC呈下降趋势,而叶片温度(Tl)呈增加趋势,蒸腾速率(Tr)的变化不明显。除了日最大Pn减小以外,干旱胁迫对气体交换参数的日变化无显著影响,但是对光合-光响应曲线有显著的影响,使有效光合时间缩短。在严重干旱胁迫下光系统受到损害而代谢减弱,PSⅡ中心的内禀光能转换效率(Fv/Fm)、量子产量(Yield)、光化学淬灭参数(qP)显著降低,而非光化学淬灭参数(NPQ)明显增加。气孔限制和非气孔限制对Pn的影响与干旱胁迫强度有关。在中度胁迫下,气孔限制起主导作用,在严重胁迫下非气孔限制起主导作用,40% FC水分条件可能是灌木由气孔限制向非气孔限制的转折点。 5) 灌木对干旱胁迫的适应能力及其种间差异 三种灌木对干旱胁迫具有较好的适应能力,即使在20% FC,幼苗未因干旱胁迫III而死亡;80% FC适宜于幼苗生长。白刺花生长速率慢,耗水量较少,具有较强的耐旱和耐贫瘠能力,并具有干旱忍受机制,能够在较干旱的环境中定居和生长。小马鞍羊蹄甲和小雀花,生长快,水分消耗量较大,尤其是小雀花,对干旱胁迫的忍受能力较弱,具有干旱回避机制,因而适宜于在较为湿润的生境中生长。综合分析表明,生长速率较慢的物种抗旱能力较强,其更适宜于作为干旱地区植被恢复物种。 Drought is often a key factor limiting plant establishment, growth and distribution inmany regions of the world. The harsh environmental conditions and long-termanthropogenic disturbance had resulted in habitat destruction in the dry valley ofMinjiang river, southwest China. Recently, it tended to be more severe on the vegetationdegradation, soil erosion and water loss, natural disaster, as well as desertification, whichimpact on regional booming economy and harmonious development, and would be verydangerous to the environmental security in the middle and lower reaches of Yangzi River.Therefore, ecological restoration in the dry valley is one of the vital tasks in China. Waterdeficit is known to affect adversely vegetation restoration in this place. Moreover, in thecontext of climate change, an increased frequency of drought stress might occur at aregional scale in the dry valleys of Minjiang River. The selection of appropriate plantingspecies for vegetation restoration in regard to regional conditions is an important issue atpresent and in further. The research on responses of indigenous species to drought stresscould provide insights into the improvement of the vegetation restoration in the dry valleys of Minjiang River. In this paper, the responses of three indigenous leguminous shrubs, Sophora davidii,Bauhinia faberi var. microphylla and Campylotropics polyantha, to various soil watersupplies were studied in order to assess drought tolerance of seedlings, and to compare interspecific differences in seedlings’ responses to drought stress. The results were as follows: 1 Growth and reproduction of shrubs in response to drought stress Seedling growth reduced significantly while leaf senescence accelerated underdrought stress, the cumulative responses to prolonged drought were found. The capacityfor reproduction was limited by severe drought stress, and improved by moderate droughtstress. Leaf responses were more sensitive than shoot to various water supplies. 2 WUE, biomass production and its partitioning of shrubs in response to drought stress Drought stress reduced significantly the total dry mass and their components ofseedlings, and altered more biomass allocation to root system, showing higher R/S ratiounder drought. Water use (WU) and water-use efficiency (WUE) of both S. davidii and B.faberi var. microphylla declined strongly with drought stress. The WU C. polyantha ofalso declined with drought stress, but WUE improved under moderate drought stress. 3 Anatomical characteristics and ultrastructures of leaves in response to drought stress There were xeromorphic for S. davidii leaves and mesomorphic for B. faberi var.microphylla and C. polyantha at the all water supplies. The foundational changes in leafstructures were not found with drought stress. However, mesophyll thickness, the areas ofstomatal and epidermis reduced slightly while the densities of stomatal and epidermisincreased under severe drought stress. Variations in these parameters could mainly be duoto cell size. Other structures did not displayed significant changes with drought stress. 4 Physiological responses of shrubs to drought stress The gas exchange parameters and leaf relative water content (RWC) were affectedby moderate stress, while chlorophyll fluorescence and chlorophyll content were onlyaffected by severe stress. Drought stress decreased net photosynthesis rate (Pn), stomatalconductance, light-use efficiency and RWC, and increased leaf temperature. Therespiration rates (Tr) were kept within a narrower range than Pn, resulting in aprogressively increased instantaneous water use effiecency (WUEi) under drought stress.Moreover, drought stress also affected the response curve of Pn to RAR, there was adepression light saturation point (Lsat) and maximum Pn (Pnmax) for moderate andsevere stressed seedling. However, diurnal changes of gas exchange parameters did notdiffer among water supplies although maximum daily Pn declined under severe stress.VISevere stress reduced Fv/Fm, Yield and qP while increased NPQ and chlorophyll content.Photosynthetic activity decreased during drought stress period due to stomatal andnon-stomatal limitations. The relative contribution of these limitations was associatedwith the severity of stress. The limitation to Pn was caused mainly by stomatal limitationunder moderate drought stress, and by the predominance of non-stomatal limitation undersevere stress. In this case, 40% FC water supply may be a non-stomatal limitation 5 Interspecific differences in drought tolerance of shrubs Three shrubs exhibited good performance throughout the experiment process, evenif at 20% FC treatment there were no any seedlings died, 80% FC water supply wassuitable for their establishment and growth. S. davidii minimized their water loss byreducing total leaf area and growth rate, as well as maintained higher RWC and Pncompared to the other two species under drought stress, thus they might be more tolerantto the drought stress than the other two species. On the contrary, it was found that C.polyantha and B. faberi var. microphylla had higher water loss because of their stomatalconductance and higher leaf area ratios. They reduced water loss with shedding theirleaves and changing leaf orientation under drought stress. Based on their responses, thestudied species could be categorized into two: (1) S. davidii with a tolerance mechanismin response to drought stress; (2) C. polyantha and B. faberi var. microphylla withdrought avoidance mechanism. These results indicated that slow-growing shrub speciesare better adapted to drought stress than intermediate or fast-growing species in present orpredicted drought conditions. Therefore, selecting rapid-growing species might leavethese seedlings relatively at a risk of extreme drought.
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近年来,随着对作物重茬(连年种植)障碍原因的深入研究,植物的化感作用越来越受到国内外众多学者的重视。而作为重要调料和药用植物的生姜,其连作障碍也备受关注,系统地研究生姜化感作用将有助于理解和最终解决生姜连作障碍问题。本文通过研究生姜不同部位、不同浓度的水浸液对与其间作的两个物种(大豆和四季葱)种子的萌发及幼苗生长的影响,从而证明生姜化感作用的存在;并通过温室盆栽实验研究了生姜的自毒作用(即研究生姜不同部位、不同浓度的水浸液对其幼苗的形态、生理生化、光合作用、土壤酶、土壤微生物多样性及土壤养分的影响),从而揭示生姜退化和衰老的机制,并为生姜筛选出合适的间作物种提供科学依据,对生姜连作障碍提出科学的解决方法。主要研究结果如下: 1. 与对照相比,生姜所有部位(根茎、茎、叶)、所有浓度(10、20、40、 80 g l-1)的水浸液均抑制了大豆种子和葱籽的萌发率、幼苗生长、水分吸收和脂肪酶活性,并且其抑制程度随着水浸液浓度的增加而增强,其生姜各部位水浸液抑制效应的强弱顺序为茎>叶>根茎。这一结果表明生姜根茎、茎、叶含有能够抑制大豆种子和葱籽种子萌发和幼苗生长的水溶性化感物质。根茎是生姜的主要收获部位,而生姜的残株(主要是茎和叶)应该从大田中处理掉以减轻其抑制效应。生姜水浸液中主要化感成分包括:根茎水浸液中主要是丁香酸和伞花内脂;茎水浸液中主要是阿魏酸,且其含量最高为73.4 ug/g;叶水浸液中除了阿魏酸,其他六种物质均检测出来,但含量较高的主要有丁香酸、伞花内脂和香豆酸。 2. 生姜茎和叶不同浓度的水浸液均显著抑制了生姜幼苗的株高、每株叶片数和叶面积,其抑制程度随着水浸液浓度的增加而有所增强,而生姜幼苗每株分枝数差异不显著;同时生姜水浸液也极大程度地影响了生姜幼苗的生物量(包括地下生物量、地上生物量和总生物量,均为鲜重)。在同一浓度下,茎水浸液对生姜幼苗形态指标及生物量指标均显示出最强的抑制作用,叶水浸液次之,根茎水浸液最弱。与对照相比,低浓度的生姜根茎水浸液提高了生姜幼苗叶片内四种抗氧化酶(SOD、POD、CAT、APX)活性,高浓度的根茎水浸液抑制了四种抗氧化酶活性,而茎和叶水浸液均随着浓度的增加而抑制了四种抗氧化酶活性,三种水浸液均随着浓度的增加降低了生姜幼苗叶片内叶绿素的含量,而增加了生姜幼苗叶片的相对电导率和丙二醛含量。同时,三种水浸液均随着浓度的增加降低了生姜幼苗的光合参数(包括胞间CO2浓度、气孔导度、蒸腾速率及净光合速率)。 3. 三种生姜水浸液对所测六种土壤酶活性均产生了不同程度的影响,其中影响最大的是酸性磷酸酶和蔗糖酶,在10 g l-1 时就达到了显著水平,并且所有酶均有随着水浸液浓度增加而增大的趋势;相同部位的水浸液随着浓度的增加,细菌和真菌的数量呈增加趋势,而放线菌的数量呈减少趋势;三种生姜水浸液均随着浓度的增加降低了土壤中有机质的含量,加剧了土壤中硝态氮含量的积累,根茎水浸液对土壤有效磷、速效钾和铵态氮均显示出低浓度提高其含量而高浓度降低其含量的趋势,而茎和叶水浸液则随着浓度的增加均降低了其含量。 4. 与生姜单作相比,所有间作系统均在旺盛生长期和收获期不同程度地提高了土壤酶活性,同时也增加了土壤细菌数量及土壤微生物总数但不显著;所有间作系统在旺盛生长期和收获期均不同程度地影响了土壤真菌及放线菌数量(增加或减少),所有间作系统间的多样性指数差异不显著,除了旺盛生长期四种作物(生姜-大豆-四季葱-大蒜)的间作模式显著降低了多样性指数,其值仅为生姜单作的33.18%;生姜与大豆间作不仅提高了19.6%的生姜产量而且获得了较好的经济效益,并且,所有间作系统均显著抑制了生姜姜瘟病的发生。 5. 不同栽培模式不同程度地影响了收获期生姜的株高、分枝数、根茎产量及内在品质。其中处理2显著地促进了生姜的分枝(10.5%),同时处理2、3和4也促进了生姜的生长(株高分别增加了15.0%、11.4%和14.0%),并且这三个处理提高了生姜的产量;处理2和3能有效提高生姜块茎中维生素C(分别较单作生姜显著提高了3.29%和4.05%)、处理3显著提高了可溶性糖(8.2%)、姜辣素(4.6%)和蛋白质等有益物质的含量,降低硝酸盐有害物质的含量(处理2显著降低了14.0%),改善了姜块的外观和内在品质。并且,生姜与大豆间作具有最高的纯收入和产投比,分别较生姜单作提高了24.80%和8.8%。Recently, allelopathy has been more and more paid attentions by national and foreign scholars with profound research on reasons of crop replanted (continuous planted) obstacle. Ginger rhizome is valuable all over the world either as a spice or herbal medicine and ginger replanted obstacle is also paid attentions. Systematic research on ginger allelopathy will contribute to understanding and ultimate solving problem of ginger replanted obstacle. The effects of ginger aqueous extracts with different parts and concentrations on seed germination and early seedling growth of soybean and chive were studied in this article to testify that ginger existed allelopathy. Furthermore, ginger autotoxicity was also studied by pot experiment in greenhouse (namely research on effects of ginger aqueous extracts with different parts and concentrations on morphological indexes, physiological and biochemical indexes, photosynthesis, soil enzymes, soil microbial diversity and soil nutrients) to reveal mechanism of ginger degeneration and senescence, provide scientific basis for selecting appropriate intercropping species and put forward scientific resolvent for ginger replanted obstacle. The main results were as follows: 1. All aqueous extracts at all concentrations inhibited seed germination, seedling growth, water uptake and lipase activity of soybean and chive compared with the control, and the degree of inhibition increased with the incremental extracts concentration. The degree of toxicity of different ginger plant parts can be classified in order of decreasing inhibition as stem>leaf>rhizome. The results of this study suggested that rhizome, stem and leaf of ginger contained water soluble allelochemicals which could inhibit seed germination and seedling growth of soybean and chive. The rhizome is the main harvested part of ginger. The residue (mainly stems and leaves) of the ginger plant should be removed from the field so as to diminish its inhibitory effect. The main allelopathic components of three kind of aqueous extracts were as follows: Rhizome extract chiefly contained syringic acid and vmbelliferone and stem extract mainly contained frulic acid whose content was the highest (73.4 ug/g). The other six substances were detected except of frulic acid, but only contents of syringic acid, vmbelliferone and p-coumaric acid were higher. 2. Stem and leaf aqueous extracts of ginger with different concentrations significantly inhibited plant height, leaf numbers per plant and leaf area, and the degree of inhibition increased with the incremental extracts concentration. However, tiller number per plant of ginger seedling showed no significant difference. At the same time, ginger aqueous extracts also influenced biomass including under-ground biomass, above-ground biomass and total biomass (fresh weight) to a large extent. Under the same concentration, stem aqueous extract showed the mostly inhibitory effect on morphological indexes and biomass indexes of ginger seedling. Rhizome aqueous extract showed the leastly inhibitory effect and leaf aqueous extract was intervenient. Enhanced concentration of ginger aqueous extracts significantly reduced total chlorophyll content, accompanying with increases in memberane permeability (REL) and lipid peroxidation (MDA). Compared with the control, rhizome ginger aqueous extract of lower concentration (10 g l-1) increased the activities of major antioxidant enzymes (superoxide dismutase, SOD; peroxidase, POD; catalase, CAT; ascorbate peroxidase, APX) of ginger leaf tissue and higher concentration inhibited the activities of four antioxidant enzymes. However, stem and leaf aqueous extract inhibited the activities of four antioxidant enzymes with increase in concentration. Meanwhile, enhanced concentration of ginger aqueous extracts significantly reduced photo-parameters of ginger seedling (including CO2 concentration, stoma conductivity, net photosynthesis rate and transpiration rate). 3. Rhizome, stem and leaf ginger aqueous extract showed different effect on six soil enzyme activities, and acid phosphatase and invertase showed significant effect when aqueous extract concentration got 10 g l-1. Furthermore, six soil enzyme activities increased with increase in aqueous extract concentration. Bcterial and fungi number tended to increase while antinomyces tented to decrease with the increase in aqueous extract concentration of identical part. Ginger aqueous extracts reduced soil organic matter content with increased concentration, accompanying with NO3-—N accumulation in soil. Rhizome aqueous extract showed the same tendency for available P, available K and NH4+—N, namely lower concentration increased their contents in soil and higher concentration reduced their contents. While stem and leaf aqueous extracts reduced their contents with the increamental concentration. 4. All intercropping systems increased soil enzyme activities to different extent both at VGS and at HS compared to solo ginger. All intercropping systems increased the colony numbers of soil bacteria and total of soil microbe but not significantly either at VGS or at HS. All intercropping systems increased the colony numbers of soil fungi and actinomytes to a different extent (increase or decrease) both at VGS and at HS. For DI, difference between all cultivation patterns and S-G was not significant either at VGS or at HS except that G-S-C-G whose value was only 33.18% of S-G at VGS significantly decreased. G-S not only increased ginger yield by 19.6% but also obtained better economic benefit. Furthermore, all intercropping systems significantly inhibited occurrence of bacterial wilt of ginger. 5. Different cultivated pattern influenced plant height, tiller numbers, rhizome yields and intrinsic quality of ginger. Treatment 2 significantly facilitated tiller occurring (10.5%). Treatment 2, 3 and 4 promoted ginger growth (plant height respectively increased 15.0%、11.4% and 14.0%) and enhanced rhizome yields. Treatment 2 and 3 effectively increased vitamin C content (significantly increased 3.29% and 4.05% compared to solo ginger). Treatment 3 significantly increased contents of beneficial substances such as soluble sugar (8.2%), gingerols (4.6%) and protein. Treatment 2 significantly decreased contents of deleterious substance namely nitrate (14.0%) and improved appearance and intrinsic quality of ginger rhizome. Furthermore, treatment 2 (ginger/soybean intercropping) could obtain better economic benefit and showed the highest net income and ratio of benefit and cost whose values respectively increased by 24.80% and 8.8% compared to solo ginger.