953 resultados para Soybean (Glycine max)
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O presente estudo visa fornecer subsídios para o processo de tomada de decisão de controle das plantas daninhas baseado em nível de dano na produtividade de culturas agrícolas. Com o objetivo de avaliar o aproveitamento de parâmetros das plantas daninhas e das plantas de soja no monitoramento da interferência das plantas daninhas, foi realizado, em Botucatu (SP), um experimento sob condições de campo, com delineamento em blocos casualizados. A cultura foi mantida na presença ou ausência de comunidade vegetal infestante por diferentes períodos. O monitoramento da interferência das plantas daninhas na cultura de soja pode se dar através do acumulo total de matéria seca da comunidade vegetal infestante e dos seguintes parâmetros de crescimento das plantas de soja: número de folhas trifolioladas, área da lâmina foliar, acumulo de matéria seca de folhas e total. O acumulo de matéria seca de cada espécie de planta daninha isoladamente, não foi parâmetro eficiente para determinar-se interferência (competição) na cultura da soja.
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Visando fornecer subsídios para programas de manejo de plantas daninhas em culturas agrícolas, foi realizado o presente estudo. Assim, foi conduzido um experimento de campo em Botucatu (Sao Paulo), com o objetivo de determinar, através do procedimento estatístico de análise de regressão, o período crítico para prevenção da interferência (PCPI) de plantas daninhas de folha larga na produtividade da cultura de soja. Foi utilizado o delineamento experimental em blocos casualizados. A cultura foi mantida na presença das plantas daninhas de folha larga por diferentes períodos. O período crítico determinado foi de 21 a 30 dias após a emergência da cultura, segundo ajuste dos dados de produtividade ao modelo "Broken-stick". No entanto, o período crítico determinado apresentou-se de modo que permite o controle através do uso, uma única vez, de método momentâneo, sem efeito residual.
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生物固氮和植物光合作用作为全球生态系统的两个基本生物学过程, 在碳氮循环、自然生态系统的维持和演替,以及农业生产中起了重要作用。尽管过去关于共生固氮与光合作用的研究取得了巨大成就,但是,很少将两者直接联系起来。本研究通过比较低光效和高光效大豆接种高效固氮根瘤菌后固氮与光合作用的差异,比较接种根瘤菌和施用铵态氮肥对大豆光合生理的影响或光照强度对大豆光合固氮的影响,以及C4基因转化C3 豆科植物—苜蓿的研究,试图将两者偶联起来。研究获得以下结果: 1.用nifA和dct工程根瘤菌接种低光效和高光效大豆后,与出发菌株比,均提高了大豆的固氮和光合作用。两者相比,nifA工程菌对低光效大豆黑农37号发挥了比较好的作用,大豆的光合作用参数,固氮活性和植物株高、株重等产量参数比dct工程菌好;dct工程菌接种高光效大豆黑农40号后,尽管固氮酶活性与nifA工程菌相比没有明显差异,但是大豆光合作用和产量参数有了比较明显的提高。 2.光照培养条件下,对大豆进行了接种根瘤菌(108细菌/ mL)、低氮(5 mmol/L (NH4)2SO4)和高氮(30 mmol/L (NH4)2SO4)处理。测定的大豆生长状况和光合作用系列参数结果表明:低氮处理的最好,接种根瘤菌的次之,高氮处理的最差。由此说明单纯接种根瘤菌满足不了大豆发育过程中的氮营养要求,其光合作用和生长受到不利影响。但是,高氮处理也并没有提高大豆的光合作用,其生长发育甚至受到抑制。该结果为生产实践中合理施肥提供了光合生理方面的参考。 3.接根瘤菌和不接根瘤菌的大豆在正常光强(150μmol photons m-2s-1)下生长三周后进行遮光(15μmol photons m-2s-1,7天)和复光(正常光强,7天)处理,大豆的光合作用有下降和回复。测定的一系列光合参数、叶绿素荧光参数,以及植物的生长生理参数结果表明:接根瘤菌大豆与不接根瘤菌的大豆对遮光的响应有不同。正常光照下,接种根瘤菌能促进大豆生长与光合作用;遮光处理后,根瘤菌对大豆的促进作用不显著。 4.获得了不同苜蓿品种的愈伤组织及其诱导的再生植株。并作了用小米、甘蔗的PEPC基因转化苜蓿的研究。由于在实验过程中,考虑转基因植物的安全性,着重于用甘露糖筛选转化体系的研究工作,忽略了用抗生素筛选转化体。用PCR法从苜蓿中扩增出甘露糖异构酶基因(pmi),表明苜蓿体内含有自己的甘露糖异构酶基因,使得甘露糖筛选没有成功。
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钾是作物生长发育的必需矿质元素,缺钾对大豆产量和营养品质影响显著。硅是植物的有益元素,在低钾胁迫条件下,硅对大豆生长是否有改善作用还未见相关报道,本研究以对低钾敏感的不同基因型大豆品种(铁丰35和铁丰31)为试验材料,在低钾条件下(1 mmol L-1),施加Na2SiO3,通过大豆生物量、根系形态学、生理学和抗氧化物酶活性等参数的变化,研究硅在大豆缺钾胁迫生长中的作用。主要研究结果如下: 1低钾胁迫对大豆生长发育和生理指标形状的影响 与正常钾生长条件(5 mmol L-1)相比,对低钾敏感的基因型大豆品种铁丰35,低钾胁迫使铁丰35品种主根、侧根,过氧化氢 (H2O2)和丙二醛含量(MDA),根系和叶片的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)活性和光合特性指标等发生显著变化,同样地,铁丰31品种根系的SOD、CAT、POD活性和MDA含量也发生显著变化。相反,铁丰31品种的其它形态学和生理学指标参数受低钾胁迫影响差异不显著。 2 Si和Na+对大豆生长发育和生理过程中低钾胁迫的减缓作用 为探明Si对大豆生长发育和生理过程中低钾胁迫的减缓作用,我们将Na2SiO3分别设立3个浓度处理水平(0.1, 2.0, 5.0 mmol L-1),对照CK0:5.0 mmol/L KNO3+0.0 mmol/L Na2SiO3,副对照CK1:1.0 mmol/L KNO3+4.0mmol/L NaCl,其中以Si2处理是2个品种减缓低钾胁迫效应最好的,对大豆生长发育和促进大豆根、茎和叶内钾浓度含量,低钾胁迫使SOD、POD、CAT活性,H2O2和MDA含量,以及光合特性(Pn, WUE)等指标参数得以显著地改善,但Na2SiO3对低钾敏感品种铁丰35的减缓作用远大于对低钾不敏感的品种铁丰31。为排除Na2SiO3中Na+对低钾大豆的生长作用,用等浓度NaCl进行检验,结果表明,Na+可以部分地减缓低钾胁迫,并且这减缓作用远小于等浓度的Si。本试验结果说明Si通过改变几个关键的生理过程,进而提高低钾胁迫条件下,大豆生长发育的表达活力,以有效地改善低钾对大豆生长的胁迫。 3 Si通过提高抗氧化胁迫进而减缓大豆生长发育中低钾胁迫 低钾胁迫使大豆地上和地下生物产量与对照CK0相比显著减少,增施Na2SiO3前后大豆其根冠比、过氧化氢积累、钾含量、膜质过氧化产物和抗氧化物酶活性变化显著。另外,Na2SiO3显著减缓了低钾胁迫使大豆根冠比、提高了低钾大豆根、茎、叶内钾浓度,Si还减缓了过氧化氢 (H2O2)和丙二醛含量(MDA),这说明Si抑制了低钾的过氧化胁迫,显著地抑制了因低钾胁迫而使超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POD)等活性的升高,这些酶活性提高效应被施加的Na2SiO3消除,这些结果表明,Si通过提高抗氧化胁迫能力,进而减缓大豆生长发育的低钾胁迫,对低钾胁迫有非常重要的减缓调控作用。
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利用RNAi改良大豆油脂品质 大豆[Glycine max (L.) Merr.]起源于中国,栽培历史悠久,是重要的粮食作物, 同时也是植物油和蛋白的重要来源。随着经济的发展和生活水平的提高,人们不但对大豆的需求量大大增加,同时对大豆的品质也提出了更高的要求。近年来,我国大豆进口量逐年攀升,已远远超过本国生产量。国外转抗除草剂转基因大豆大面积种植大大降低了生产成本,直接影响了我国大豆生产。因此,提高产量和改良品质是当前中国大豆生产所面临的重要课题。基因工程是大豆品种改良更为有效和快速的方法,但是由于历史原因我国的大豆转基因育种与发达国家尚存在一定差距,对我国的大豆生产贡献十分有限。因此,建立高效的大豆转化体系,加强大豆基因工程研究和育种是解决大豆面临困境的关键。 本研究的目的是以我国主要栽培大豆品种(黑农、合丰和东农等)为材料,利用GUS(β-glucuronidase)报告基因和RNAi技术,建立高效的大豆基因转化体系和基因功能研究体系。为大豆产量和品质基因工程改良提供技术手段和理论基础。结果如下: 以大豆下胚轴为外植体,对分生组织产生不定芽的频率进行了研究。培养基中添加高浓度BAP(6-benzylaminopurine)可以诱导外植体分生组织增殖产生不定芽的发生率;在培养基中添加银离子可以明显地促进大豆单个外植体多芽的产生,使得诱导不定芽总数目显著增加;不同基因型大豆再生不定芽能力有着较大区别,黑农44,黑农37,合丰35,合丰39等品种再生能力强;相对于大豆子叶节等再生系统,大豆下胚轴体系具有高效高频的再生特点(总的再生频率高于80%),且重复性好,容易操作。 以大豆下胚轴为外植体,用含有GUS报告基因的根癌农杆菌对其进行遗传转化,并重点对农杆菌菌液浓度、农杆菌侵染时间、乙酰丁香酮(AS)和抗氧化剂浓度等因素对农杆菌大豆转化效率的影响进行了研究。组织化学染色结果显示GUS基因在外植体顶端表达强烈,表达位置主要位于初生芽基部周围的分生组织。 农杆菌浸染时间以 4h 为最佳,此时的GUS瞬时表达频率可达73.0%;培养基中添加浓度为200μmol/L的乙酰丁香酮,可以显著增加GUS瞬时表达频率。抗氧化剂可以显著降低共培养阶段外植体的褐化和坏死率,进而显著提高农杆菌转化效率。用根癌农杆菌转化大豆下胚轴的方法得到了表达GUS基因转基因大豆株系。 利用大豆油酸去饱和酶基因(FAD2-1;Genbank, L43920)在第315-852碱基之间的基因片断构建了反向重复的RNAi表达载体,以农杆菌介导大豆下胚轴转化方法进行转化,并且获得转基因植株。经过PCR,Southern杂交和转基因后代的脂肪酸分析,表明沉默结构已经成功整合到大豆基因组中,并成功抑制了内源基因的表达。与栽培大豆品种相比较,转基因大豆种子的脂肪酸组成发生显著变化,油酸含量由栽培大豆的18.1%增加到71.5%¬-81.9%;亚油酸含量从栽培大豆的46.4%降到了约3.4%。 栽培大豆种子中油酸去饱和比率(ODP, oleic desaturation proportion)为0.76 到 0.84,转基因大豆种子的油酸去饱和比率降为0.06-0.26,表明Δ12-去饱和酶活性降低了74%-94%。上述结果表明,我们构建的RNAi反向重复序列沉默结构高效地抑制了大豆种子FAD2-1基因。 在本研究中,我们通过外源GUS基因的表达和内源FAD2基因的抑制,成功地建立了以大豆下胚轴为外植体的高效农杆菌介导大豆转化体系,并获得了相应的转基因株系。本研究对我国大豆品种基因工程改良以及进一步大豆功能基因组研究有重要参考价值。 四合木茎积累三脂酰甘油特征 四合木(Tetraena mongotica Maxim)是蒺藜科(Zygophyllaceac)四合木属唯一的种,是地球上最具代表性的古老残遗濒危珍稀植物。由于四合木极易燃烧,当地居民称其为“油柴”。 通过对四合木内可能存在的“油”成分进行了分析,我们发现其茎组织含有大量的三脂酰甘油(Triacylglycerols),含量达到46 mg/g DM。在韧皮部中更高,达到90 mg/g DM。我们通过半薄切片对四合木中三脂酰甘油在不同组织的分布和存在形式进行了研究,发现三脂酰甘油主要以油体形式存在于木质部和韧皮部的薄壁组织中。在韧皮部中,几乎所有的薄壁细胞都含有大量的油体。 三脂酰甘油在植物的生长发育中起着非常重要的作用。作为植物生长发育所需的碳源和能量,三脂酰甘油一般储存在植物的种子和果实中。虽然也有关于其在茎和叶中发现的报道,但是含量很少。四合木茎组织含有大量的三脂酰甘油,这种现象可能与四合木茎中存在茎特异油脂合成酶系统有关。因此,克隆相关基因并在作物中表达,将对能源植物的开发具有重要意义。
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为了探明多年免耕下农田恶性杂草发生的机理,提高保护性耕作下作物对农田恶性杂草持久稳定的抑制效果,依据陕西安塞田间4a的定位试验,采用小区调查取样和室内实验相结合的方法,从物种组成、密度特征、多样性以及相似性特征等方面,研究了黄土丘陵旱作农区大豆(Glycine max)、玉米(Zea mays)、红小豆(Semen Phaseoli)、马铃薯(Solanum tuberosum)在翻耕化肥(CF)、翻耕有机肥(CM)、翻耕无肥(CN)、免耕化肥(NF)、免耕有机肥(NM)、免耕无肥(NN)等水平下的农田土壤种子库。结果表明:(1)4种作物24种土样中共萌发出12个物种1965株幼苗,隶属于7科12属。1年生杂草占94%,棒头草(fugax nees ex steud)、苋菜(Acalypha australis)、马唐(Digitaria sanguinalis)、早熟禾(Poasphondylodes)为优势种,占87%。(2)在0~20cm土层不同处理间,土壤种子库的密度变动于(282.9±63.4)~(7482.5±1078.3)粒.m-2,其中,红小豆小区>马铃薯小区>大豆小区>玉米小区;翻耕小区>免...
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盆栽试验方法研究充分供水(W)、适度干旱(M)和严重干旱(D)三种条件下,不同株型的两个大豆品种晋大74和晋豆24在混播和单播时的籽粒产量及生物量构成。结果表明:晋大74品种具有较高的植株生物量和较强竞争能力,在单播时籽粒产量较低,而竞争能力较低的晋豆24品种在单播时籽粒产量却较高,这一结论将对大豆株型设计提供一定的科学依据。
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近二十多年来,基于对臭氧层衰减、紫外线B(UV-B)增强的担心,研究者希望了解到紫外线辐射对不同作物的影响情况,增强UV-B辐射条件下是否对作物的生长发育、产量质量构成威胁。在本试验中,我们首先探讨了双子叶作物黄瓜(Cucumis sativus)和大豆(Glycine max)对不同紫外波段的生物效应[分别为B-UVA(315-400 nm),N-UVA(315-340 nm),B-UVB(275-400 nm)和N-UVB(290-340 nm),UV-(>400nm)作对照]。我们观察到所有的UV波段处理都使黄瓜和大豆的生长受到抑制,并且细胞受到不同程度的氧化伤害;UV波段处理的作用效果与不同波段的紫外有效生物辐射剂量有关。处理差异在UV-B波段内部和UV-A波段内部同样存在。植物生长UV辐射公式(BSWF)能很好的预测本试验UV-B波段内的平均植物效应,但不能预测UV-A波段的植物效应。短波UV-A的生物作用强于长波UV-A。光合色素的变化与UV波谱差异和种间差异有关。在高的紫外/可见光背景下,UV-A处理同UV-B同样导致光合色素的降低,但黄瓜类胡萝卜素/叶绿素比例升高。与其他研究者的试验结果比较后,我们认为紫外线B辐射的生物效应一致性很高,但紫外线A波段的生物学效应存在较大争议。因此我们在本试验的基础上仅进行荞麦[苦荞(Fagopyrum tataricum Gaertn.)和甜荞(Fagopyrum esculentum Moench.)]对紫外线B波段的响应研究。 我们对苦荞品种-圆籽荞进行了连续两个生长季节的大田半控制试验以观察UV-B辐射对苦荞生长、发育、产量及叶片色素的影响;试验小区进行降低UV-B、近充足UV-B和增强UV-B辐射处理。我们的试验表明在不同强度UV-B辐射下苦荞的生长、地上部生物量积累及最终产量都有所下降,但苦荞的发育加快;当前条件下的日光紫外线B辐射对植物生长和产量也造成负面影响。植物光合色素被日光及增强UV-B辐射降低;UV化合物及卢丁含量在中低剂量的UV-B辐射强度下显著升高,但在高剂量的增强UV-B辐射下短期升高后迅速下降。我们的试验表明苦荞是一个对UV-B高度敏感的作物。苦荞对UV-B的敏感性与UV-B剂量、外界环境因素及生长季节有关。 单个苦荞品种的试验结果使我们认识到外界UV-B辐射已经对苦荞生长发育构成逆境条件,未来全球气候变化条件下增强紫外线B辐射可能使其处于更不利的生长环境中。因此我们有进行了多个种群进行UV-B响应观察并筛选耐性种群。我们对15个苦荞种群进行增强UV-B辐射处理(6.30 kJ m2 UV-BBE,模拟当地25%的臭氧衰减),我们观察苦荞UV-B辐射效应存在显著的种内差异,UV-B辐射对多数种群具有抑制作用,但对一些种群还有刺激作用。我们采用主成分分析方法与作物UV-B响应指数(RI)来评价苦荞作物UV-B辐射耐性。我们发现作物的UV-B耐性不仅与其原产地背景UV-B强度有关,而且与作物相对生长效率、次生代谢产物含量(如卢丁)及其他因素有关。我们观察到苦荞伸展叶总叶绿素变化与UV-B耐性成正相关;室内苦荞幼苗的UV-B辐射致死试验表明:苦荞种群死亡率与其UV-B耐性成负相关。 此外,我们对甜荞的UV-B辐射响应也进行了初步研究。选取美姑甜荞、巧家甜荞和云龙甜荞进行5个梯度的增强UV-B辐射室外模拟试验。我们观察到UV-B辐射显著降低了甜荞的生长、生物量及产量;并严重影响了甜荞的生殖生长,降低了花序数、种子数和结实率;并且UV-B辐射对甜荞的抑制作用存在显著的剂量效应。三种甜荞品种存在显著的种内差异,其中美姑品种UV-B耐性最强,且膜脂受UV-B辐射氧化伤害最小,这与该品种UV-B辐射下较高的GR酶活性、APX酶活性和PPO酶活性、以及含量更高的抗坏血酸有关。甜荞的次生代谢也受到增强UV-B辐射的影响,其香豆酰类化合物在UV-B辐射下升高显著,而槲皮素含量也在高剂量UV-B辐射下有所增加;卢丁含量依赖UV-B辐射剂量而变化,中低剂量UV-B辐射下其卢丁含量逐渐升高,但在高剂量辐射下逐渐下降。 通过对生长在高海拔地区的荞麦作物(苦荞和甜荞)进行的室外研究,我们认识到作物不同品种存在很大的耐性差异,这就为UV-B耐性育种创造了有利条件。进一步加大荞麦种质资源筛选力度并深入认识荞麦抗性机理,在此基础上通过杂交或其他基因融合手段培育抗性品种,对高剂量UV-B辐射地区的荞麦产量的提高将起到重要推动作用,并使荞麦生产能有效应对未来全球气候变化条件下UV-B辐射可能升高的威胁。 During last few decades, due to concern of ozone layer depletion and enhancement of ultraviolet B radiation(UV-B, 280-315 nm), the agronomist want to know the responses of different crop species to UV-B. In the first experiment of our study, the effect of different UV band [B-UVA(315-400 nm), N-UVA(315-340 nm), B-UVB(275-400 nm), N-UVB(290-340 nm)and UV-(>400nm, as control)] on the cucumber(Cucumis sativus)and soybean(Glycine max)were investigated in growth room. Spectra-dependent differences in growth and oxidation indices existed within UV-A bands as well as UV-B bands. The general biological effects of different band were UV- < B-UVA< N-UVA<N-UVB<B-UVB. The plant growth biologically spectra weighting function(BSWF)matched well with average plant response in UV-B region, but not in UV-A region. Shorter UV-A wavelength imposed more negative impact than longer UV-A wavelength did in both species. The effect on photosynthetic pigment was related to different UV bands and different species. The photosynthetic pigment content was decreased by UV-A spectra as well as UV-B spectra. In comparison with the results of previous studies, we found that the wavelength-dependent biological effect of ultraviolet B radiation has high consistency, but the biological effect of ultraviolet-A radiation was inconsistent. We narrow our following study on the effect of ultraviolet B radiation on the buckwheat(tartary buckwheat and common buckwheat). The tartary buckwheat(Fagopyrum tataricum Gaertn.)cultivars Yuanziqiao was grown in the sheltered field plots for two consecutive seasons under reduced, near-ambient and two supplemental levels of UV-B radiation. The crop growth, photosynthetic pigments, total biomass, final seed yield and thousand-grain weight were decreased by near-ambient and enhanced UV-B radiation, while crop development was promoted by enhanced UV-B radiation. Leaf rutin concentration and UV-B absorbing compound was generally increased by UV-B with the exception of 8.50 kJ m-2 day-1 supplemental levels. Our results showed that tartary buckwheat is a potentially UV-B sensitive species. Study on one cultivars showed that ambient solar radiation had present a stress to tartary buckwheat. This makes it necessary to observe the UV-B response of many cultivars and screen tolerant cultivars. Fifteen populations of tartary buckwheat were experienced enhanced UV-B radiation simulating 25% depletion of the stratospheric ozone layer in Kunming region, and plant responses in growth, morphology and productivity were observed. Principal components analysis(PCA)was used to evaluate overall sensitivity of plant response to UV-B as well as response index. The different populations exhibited significant differences in responses to UV-B. The photosynthetic pigments of young seedlings were also affected significantly under field condition. On the other hand, the healthy seedlings of different populations were exposed to the high level of UV-B radiation in growth chambers to determine the plant lethality rate. The plant tolerance evaluated by multivariate analysis was positively related to total plant chlorophyll change, but negatively related to lethality rate. In other hand, the UV-B responses of the other important cultivated buckwheat species, common buckwheat(Fagopyrum esculentum Moench.), were also studied preliminarily. Three widespread cultivated variety(Meigu, Qiaojia and Yunlong cultivars)were provided with five level of enhanced UV-B radiation outdoors. We observed that the crop growth, development and production were significantly decreased, and reproductive production, like anthotaxy number, seed number and seed setting ratio, was also decreased. Dose-dependent inhibition effect caused by enhanced UV-B radiation also existed in common buckwheat. Significant intraspecific difference existed in those three cultivars. The Meigu cultivars with dwarfed growth and lower production have highest UV-B tolerance as well as lowest damage in cell membrane, this could be associated with profound enhancements of glutathione reductase(GR)activity, ascorbate peroxidase activity and polyphenol oxidase activity as well as higher ascorbic acid concentration. The secondary metabolism was also affected by UV-B radiation, with profound elevation of coumarin compound and moderate increase of quercetin concentration. Rutin concentration was peaked in 5kJ m-2 UV-B. The contrasting effect of UV-B radiation on different populations indicated that there existed abundant genetic resources for selecting tolerant populations of common and tartary buckwheat. Much effort needed be pose on screening of buckwheat germplasm and clarification of mechanism of buckwheat tolerance to UV-B. On this base the tolerant cultivars could be bred by hybridization and other gene transfusion method, this would help increase buckwheat yield in high ambient UV-B region and counteract the effect of possible enhanced UV-B radiation in future.
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通过对干湿交替环境下春小麦、马铃薯、大豆和玉米等作物的产量、水分利用效率及光合作用、蒸腾作用、气孔导度等生理变化的研究表明 :( 1 )春小麦和马铃薯在干湿交替环境下可获得与充分供水相当的产量而它们的水分利用效率却显著提高 ,大豆减产幅度较大 ,玉米减产严重 ,其水分利用效率显著低于全湿处理 ;( 2 )浇水后各作物的光合速率、蒸腾速率和气孔导度都有所增加 ,但不同作物增加的幅度不同 ,就是同一作物各指标的增幅也不同 ;( 3)干湿交替环境下同化物的运输模式有利于春小麦籽粒的充实和马铃薯块茎的膨大 ,而不利于玉米产量的形成 ;( 4 )产量不仅决定于营养生长阶段 ,更主要决定于生殖生长阶段。此外 ,还就干湿交替过程中若干生理变化和经济产量形成机制作了初步探讨。
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RESUMO: O controle de plantas voluntárias de soja (Glycine max ) é uma exigência estabelecida em lei. A criação do vazio sanitário determina o período na entressafra no qual não deve haver a presença no campo de plantas emergidas de soja. Essa deliberação visa reduzir o inóculo do fungo causador da ferrugem asiática da soja (Phakopsora pachyrhizi). Além disso, a competição imposta por essas plantas pode reduzir a produtividade das culturas em sucessão. O experimento foi conduzido a fim de avaliar o controle de plantas voluntárias de soja em cultivos de girassol (Helianthus annuus). Os tratamentos aplicados foram: testemunha capinada, testemunha sem capina, amônio glufosinato 40 g i.a. ha-1, amônio glufosinato 100 g i.a. ha-1, sulfentrazone 75 g i.a. ha-1, sulfentrazone 100 g i.a. ha-1, tembotrione 21 g i.a. ha-1, carfentrazone 4 g i.a. ha-1, saflufenacil 1,75 g i.a. ha-1, saflufenacil 3,5 g i.a. ha-1, triclopyr 120 g i.a. ha-1 e MSMA 197,5 g i.a. ha-1. O herbicida sulfentrazone nas doses de 75 e 100 g i.a. ha -1 causa fitotoxicidade ao girassol logo após a aplicação, porém há recuperação das plantas, sem prejuízo a produtividade da cultura. Esses mesmos tratamentos não causam morte total das plantas voluntárias de soja, mas paralisam temporariamente seu crescimento, evitando a competição com a cultura do girassol. O amônio glufosinato é eficaz no controle de plantas voluntárias de soja. No entanto, os sintomas de fitotoxicidade na cultura do girassol são elevados, refletindo em perda de rendimento da cultura. Os outros tratamentos não proporcionam controle satisfatório das plantas voluntárias de soja, além de causar redução na produtividade do girassol. ABSTRACT: The control of volunteer soybean (Glycine max) is regulated by law due to the host-free period which determines the interval that is not allowed the presence of soybean plants in fields. The decision aims to reduce the inoculum of the fungus that causes the Asian soybean rust (Phakopsora pachyrhizi). Furthermore, the competition imposed by volunteer soybean plants can reduce crop yields. The experiment was conducted to evaluate the control of volunteer soybean plants in sunflower (Helianthus annuus). The treatments were as follows: hoed check, check without hoeing, glufosinate ammonium 40 g ai ha-1, glufosinate ammonium 100 g ai ha-1, sulfentrazone 75 g ai ha-1, sulfentrazone 100 g ai ha-1, tembotrione 21 g ai ha-1, carfentrazone 4g ai ha-1, saflufenacil 1.75 g ai ha-1, saflufenacil 3.5 g ai ha -1, triclopyr 120 g ai ha-1 and MSMA 197.5 g ai ha-1. Sulfentrazone (75 and 100 g ai ha-1) caused phytotoxicity on sunflower plants, however there is recovery of plants and no yield losses. The same treatments do not cause the total death of volunteer soybean plants, however temporarily paralyze its growth and avoid competition with the sunflower crop. The glufosinate ammonium is effective in controlling volunteer soybean plants. However, symptoms of phytotoxicity in the sunflower crop are high, reflecting in yield losses. The other treatments do not provide satisfactory control of volunteer soybean plants and even cause reduction in sunflower productivity.
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The hypothesis that rapid y-aminobutyric acid (GABA) accumulation is a plant defense against phytophagous insects was investigated. Simulation of mechanical damage resulting from phytophagous insect activity increased soybean (Glycine max L.) leaf GABA 10- to 25-fold within 1 to 4 min. Pulverizing leaf tissue resulted in a value of 2. 15 (±O. 11 SE) ~mol GABA per gram fresh weight. Increasing the GABA levels in a synthetic diet from 1.6 to 2.6 Jlffiol GABA per gram fresh weight reduced the growth rates, developmental rates, total biomass (50% reduction), and survival rates (30% reduction) of cultured Oblique banded leaf-roller (OBLR) (Choristonellra rosacealla Harris) larvae. In field experiments OBLR larvae were found predominantly on young terminal leaves which have a reduced capacity to produce GABA in response to mechanical damage. Glutamate decarboxylase (GAD) is a cytosolic enzyme which catalyses the decarboxylation of L-Glu to GABA. GAD is a calmodulin binding enzyme whose activity is stimulated dramatically by increased cytosolic H+ or Ca2 + ion concentrations. Phytophagous insect activity will disrupt the cellular compartmentation of H+ and Ca2 +, activate GAD and subsequent GABA accumulation. In animals GABA is a major inhibitory neurotransmitter. The possible mechanisms resulting in GABA inhibited growth and development of insects are discussed.
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Currently we have little understanding of the impacts of land use change on soil C stocks in the Brazilian Amazon. Such information is needed to determine impacts'6n the global C cycle and the sustainability of agricultural systems that are replacing native forest. The aim of this study was to predict soil carbon stocks and changes in the Brazilian Amazon during the period between 2000 and 2030, using the GEFSOC soil carbon (C) modelling system. In order to do so, we devised current and future land use scenarios for the Brazilian Amazon, taking into account: (i) deforestation, rates from the past three decades, (ii) census data on land use from 1940 to 2000, including the expansion and intensification of agriculture in the region, (iii) available information on management practices, primarily related to well managed pasture versus degraded pasture and conventional systems versus no-tillage systems for soybean (Glycine max) and (iv) FAO predictions on agricultural land use and land use changes for the years 2015 and 2030. The land use scenarios were integrated with spatially explicit soils data (SOTER database), climate, potential natural vegetation and land management units using the recently developed GEFSOC soil C modelling system. Results are presented in map, table and graph form for the entire Brazilian Amazon for the current situation (1990 and 2000) and the future (2015 and 2030). Results include soil organic C (SOC) stocks and SOC stock change rates estimated by three methods: (i) the Century ecosystem model, (ii) the Rothamsted C model and (iii) the intergovernmental panel on climate change (IPCC) method for assessing soil C at regional scale. In addition, we show estimated values of above and belowground biomass for native vegetation, pasture and soybean. The results on regional SOC stocks compare reasonably well with those based on mapping approaches. The GEFSOC system provided a means of efficiently handling complex interactions among biotic-edapho-climatic conditions (> 363,000 combinations) in a very large area (similar to 500 Mha) such as the Brazilian Amazon. All of the methods used showed a decline in SOC stock for the period studied; Century and RothC simulated values for 2030 being about 7% lower than those in 1990. Values from Century and RothC (30,430 and 25,000 Tg for the 0-20 cm layer for the Brazilian Amazon region were higher than those obtained from the IPCC system (23,400 Tg in the 0-30 cm layer). Finally; our results can help understand the major biogeochemical cycles that influence soil fertility and help devise management strategies that enhance the sustainability of these areas and thus slow further deforestation. (C) 2007 Elsevier B.V. All rights reserved.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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A metodologia, atualmente utilizada, para a determinação das perdas na colheita de soja, que consiste na utilização de armações de 2 m², vem fornecendo resultados com alto coeficiente de variação, o que dificulta detectar diferenças significativas entre os tratamentos, mesmo que esta diferença apresente valores numéricos muito altos. em função deste problema, objetivou-se avaliar o efeito das armações sobre a quantificação das perdas totais na colheita da cultura da soja, alterando-se a velocidade de deslocamento da colhedora e a abertura entre o cilindro e o côncavo. O delineamento experimental foi em blocos casualizados, em esquema fatorial 2 x 3 x 2, totalizando 12 tratamentos com quatro repetições. Os resultados evidenciaram que o coeficiente de variação para a armação de 2 m² foi de 88,26%, enquanto que para a armação de 3 m² este valor foi de 32,85%, e que com a armação de 2 m² foram detectadas perdas totais de 45 kg ha-1, enquanto que com a de 3 m² quantificou-se 73 kg ha-1, indicando que a área das armações interfere na quantificação das perdas totais na cultura da soja.