88 resultados para Chla


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兼顾富营养化评价和水生态系统常规监测,提出了以7种常见营养物(NO_3-N,NO_2-N,NH_4-N,TN,PO_4-P,TP,SiO_2)和浮游植物3个常用参数(日平均初级生产量P_G,生物量B,chla)为指标体系的湖泊营养类型评价标准;使用层次分析法,对上述10个因子作出权重分配,从而建立起评价湖泊富营养化程度的一种新方法。评价结果表明:尽管近年来东湖浮游植物的几项指标有所下降,但东湖富营养化程度奉有明显改变,

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青藏高原东缘的亚高山针叶林是长江上游重要的生态屏障,经过近六十年的采伐后,取而代之的是大量人工种植的云杉纯林。目前,这些人工林已经表现出树种单一,结构层次简单等生态问题,其物种多样性及生态效益与同地带天然林相比差距较明显。如何丰富该地区物种多样性,完善人工林生态系统的生态功能是一个十分重要的课题。林下植物是人工林群落的重要组成部分,对维持群落的生物多样性及完善生态系统功能具有明显的作用。因此,研究该地区人工针叶林的林下植被对不同生境的适应性对于理解人工林生态系统物种多样性的形成和维持机制都具有重要的意义。 本文以青藏高原东部亚高山针叶林的主要森林类型----云杉人工林为研究对象,选择林下11种具有不同喜光特性的常见植物,分别设置人工林林冠下及成熟林窗为研究样地,通过对各种植物叶片形态与物质分配特征、叶片解剖学特征、叶片光合生理特性、植物自然分布特征等方面的比较分析,研究林下植物对不同光生境的适应策略及其适应能力,揭示不同物种对人工林生境的适应共性,为西南亚高山地区植被恢复及人工林的经营管理提供科学依据。具体研究结果如下: 在叶片形态和物质分配特征方面:在林窗光生境中,11种林下植物叶片比叶重(LMA)显著高于林下光生境的同种植物。同时,林窗下生长的植物叶片叶片厚度及栅栏细胞长度显著增加,这是影响叶片比叶重变化的直接原因。而多数植物叶重比在两种生境中无明显变化。说明在长期适应自然生境之后,植物可能更多地采取调节叶片组织细胞水平(即叶片功能细胞形态)及叶片器官水平(即单个叶片形态)特征的策略来适应各类生境,而非整株水平上的叶片总比重的增减。 在叶片解剖结构特征方面:多数阔叶物种栅栏组织厚度(PT)、栅栏组织厚度/海绵组织厚度(PT/ST)、栅栏细胞层数及近半数种的气孔密度(SD)在林窗生境中更大或更多,而叶片表皮细胞厚度(UET、LET)气孔长径(SL)及海绵组织厚度(ST)受两种生境影响不大。喜光特性相似的物种在生境适应策略上具有一定的趋同性。 在光合生理特征方面:在林窗生境中多数种植物的最大光合速率(Amax)、暗呼吸速率(Rd)及喜光植物光补偿点(LCP)显著或极显著高于林内生境同种植物。且在同一生境条件下,多数深度耐荫植物比喜光及轻度喜光植物有稍低的Rd和LCP。各植物在林内低光生境中具有更大的内禀光能转化效率,并在中午12:00~14:00之间光强最大的时刻发生了的最深程度的光抑制。多数种能通过调节自身某种光合素含量或色素之间的比例来适应不同的光生境,即通过增加叶绿素含量或降低Chla/b值来适应林内弱光生境,通过提高类胡萝卜素含量或单位叶绿素的类胡萝卜素含量降低强光带来的伤害。绝大多数物种并不采取调节叶片C、N含量的策略来适应不同的光生境。总之,植物部分光合参数(Amax、Rd、LCP)受生境的影响与其自身喜光特性有关,但另一些参数(Fv/Fm日变化、色素含量及比例、叶氮相对含量)受生境影响与其自身喜光特性无明显关联。 在表型可塑性方面:在叶片各表型参数中,器官水平及细胞水平的形态特征参数平均可塑性大于整株水平形态和物质分配特征参数可塑性;叶片光合组织的可塑性大于非光合组织可塑性;反映植物光合能力的参数可塑性大于叶片色素含量参数可塑性。植物叶片形态和物质分配、解剖学特征参数平均可塑性大小与其自身喜光特性基本吻合,即喜光种及轻度耐荫种各参数可塑性最高,深度耐荫种可塑性最小,而这种规律并未在光合生理参数的可塑性大小上体现出来。但是叶片形态和物质分配参数、光合生理参数的平均可塑性水平却大于叶片解剖学参数。 在植物自然分布特征方面:喜光物种云杉幼苗及歪头菜在林内生境中分布密度明显降低,深度耐荫种疏花槭却恰恰相反,更多数物种(7种植物)在两种生境中密度变化趋势不明显。从分布格局来看,7种植物在两种生境中均为聚集分布,但聚集强度为林窗>林内;少数物种桦叶荚迷、直穗小檗、冰川茶藨、黄背勾儿茶在林窗中为聚集型,在林内生境中的分布型发生改变而成为随机型,说明光生境的差异能影响到植物种群的分布特征。但这种影响程度与植物自身的喜光特性无关,同时与各物种叶片表型平均可塑性的大小也无明显关联。 The subalpine coniferous forest area in eastern Qinghai-Tibet Plateau is important ecology-barrier of upriver Yangtze. In past sixty years, those forests had been cut down and replaced with a lot of spruce plantations. At now, there are many ecology problems presenting to us such as singleness species, simple configuration, lower species diversity and ecological benefit than natural forests at the same belt. How to restore the species diversity and enhance the eco-function of the plantations is a very important issue. The understory plants are important part of plantation community, which improved the bio-diversity and eco-function distinctly of forests. So, it is very significance to study the adaptation of understory plants to different environment in plantation, and this study would helping us to understand how plantations to develop and remain their biodiversity. This study was conducted in a 60a spruce plantation in Miyaluo located in western Sichuan, China, and spruce plantation is major types of subalpine coniferous forest in eastern Qinghai-Tibet Plateau. In this paper, the leaf morphological and biomass-distributed characteristics, the anatomical characteristics, the photosynthetic characteristics and the distribution patterns characteristics of eleven different light-requirement understory species grown in two different environments (forest gaps and underneath close canopy) were studied and compared. The purpose of this study was to analyze the adaptation of this forest understory plants, to show up the commonness of these different light-requirement understory species in light acclimation, and to provide some scientific reference to manage and restore the vegetation of subalpine plantation of southwest China. The results were as follows: The leaf morphological and biomass-distributed characteristics: These eleven species in forest gaps had significantly higher dry weight per leaf area (LMA) than those under close canopy. The palisade parenchyma cells of the broad-leaved species in gaps were significantly longer than those grown under the canopy, which been a directed factor for the change of leaf mass per unit area (LMA) in different environment. But the leaf weight ratio (LWR) of most plants species were not evidently changed by the contrasted environments in our study. It was shown the morphological characteristics changing been adopted as a strategy of light acclimation for plants wasn’t on whole plant level (leaf weight ratio) but cellular level (the function cells morphological characteristics) and organic level (the leaf morphological and biomass-distributed characteristics) mostly. The leaf anatomical characteristics: Most broad-leaved plants in gaps increased palisade parenchyma thickness (PT), the palisade parenchyma cell layers and the ratio of palisade to spongy parenchyma (PT/ST). So did as almost about half species in this study in stomatal density (SD). No significant differences in thickness of leaf epidermal cells (UET, LET), stomatal length (SL) and spongy parenchyma (ST) between two environments of most species were observed. The results suggested that species with light-requirement approximately had convergent evolution on adaptation to light condition. The leaf photosynthetic characteristics: The dark respiration rate (Rd) of most plants species, the light compensation point (LCP) of light-demanding plants species in gaps were significantly increased than under close canopy in this study. In a same habitat, most deep-shade-tolerant plants had lower Rd and LCP than those light-demanding plants and slight-shade-tolerant plants. Each species has bigger inherent electron transport rate under close canopy than in gaps, and the greatest photoinhibition happened during 12 to 14 in the daytime. Most species could adapt different light environment by the way of changing their photosynthetic pigments content or the ratio of pigments content. For example, some plants under close canopy increased chlorophyll (Chl) or reduced the values of the ratio Chla/b to adapted the low light condition, some plants in gaps increased carotenoid (Car) or reduced the weight ratio CarChl to avoid been hurt in high light. For most plants, changing the content of C and N in leaf wasn’t a strategy of light acclimation. In conclusion, the variation of some leaf photosynthetic parameters in different light environment such as Fv/Fm, pigments, C and N in leaf related with the light-requirmnet of species, but the others such as Amax, Rd, LCP did not. The leaf plasticity indexes: Among those leaf plasticity indexes, the leaf morphological and biomass-distributed parameters on cellular and organic level were greater than on whole plant level for same species, and the photosynthetic parenchyma parameters were greater than non-photosynthetic parenchyma parameters in same leaf, and photosynthetic capability parameters were greater than photosynthetic pigments content parameters for same species. The average plasticity indexes of leaf morphological and biomass-distributed and anatomical parameters were accordant with plants’ light-requirement approximately: those light-demanding plants and slight-shade-tolerant plants had bigger plasticity indexes than deep-shade-tolerant plants. But this regular wasn’t observed in physiological plasticity indexes for most plants, though the average leaf plasticity indexes of leaf morphological and biomass-distributed, photosynthetic characteristics parameters was greater than the anatomical characteristics parameters. The distribution patterns characteristics: Oppositely to the deep-shade-tolerant specie Acer laxiflorum Pax., the density of light-demanding species Picea asperata Mast. and Vicia unijuga A. Br. in gaps was bigger than under close canopy. Each of the other species has the approximately density in two different environment. The spatial patterns of seven species were aggregated distribution in two environments, but the trend of aggregation of population under close canopy was decrease from in gaps. A few species such as Viburnum betulifoium Batal., Berberis dasystachya Maxim., Ribes glaciale Wall. and Berchemia flavescens Brongn. were aggregated distribution in gaps while random distribution under close canopy. It was shown that the difference between two light environments could affect the distribution pattern of plant population, and the effect didn’t relate with the light-requirement or plasticity indexes of species.

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随着全球气候变暖和温室效应加剧,干旱和荒漠化成为威胁人类生存和发展的主要 灾害,许多被子植物对干旱胁迫的生理、生态和生化响应已逐步得以报道,但很少有开 展干旱胁迫对雌雄异株植物的影响方面的研究。由于这类植物在长期进化过程中已经在 生长、性比、生殖格局、空间分布、资源配置和生物量分配等方面形成了明显的性别差 异,因此,干旱胁迫必将对其雌雄植株产生不同的生理生态影响。本研究以青杨为模式 植物,采用植物生态、生理及生物化学等研究方法,系统研究青杨雌雄植株在常温、增 温以及喷施外源脱落酸的条件下对干旱胁迫的响应,揭示其在生长形态、生物量分配、 光合作用、用水效率和生理生化等方面的性别间差异。主要研究结果如下: 1. 青杨雌雄植株对干旱胁迫的综合响应。 与较好水分条件相比,干旱胁迫显著降低了青杨雌雄植株的光合作用和生长发育, 影响了许多生理生化过程,并导致雌雄植株在生长发育、气体交换、用水效率、膜脂抗 氧化和抗氧化系统酶活性方面表现出显著的性别间差异。在较好水分条件下,雌雄植株 之间在株高、基径、生物量、净光合速率、蒸腾速率、用水效率以及丙二醛、脱落酸和 游离脯氨酸等生化物质含量方面均无显著差异。但在干旱胁迫下,雄株在生长发育、气 体交换、水分利用效率、膜脂过氧化保护和抗氧化系统酶活性方面均显著高于雌株,表 现出比雌株更高的株高、基径、叶面积、总叶片数、总生物量、总色素含量、类胡萝卜 素含量、净光合速率、蒸腾速率、羧化效率、光系统II最大光化学效率、内在水分利用 效率、碳同位素组分、过氧化氢酶和过氧化物酶活性等,而在CO2补偿点、比叶面积、 叶绿素a/b、丙二醛、脱落酸和超氧化物歧化酶活性等指标上显著低于雌株。与雌株相比, 雄株表现出更高的干旱胁迫适应能力,而雌株的生长发育和生理生化过程更易遭受干旱 胁迫的影响。 2. 干旱胁迫下的青杨雌雄植株对增温处理的综合响应 与环境温度相比,增温在干旱胁迫前后均显著促进了雌雄植株的生长发育、气体交 换,降低水分利用效率,影响生化物质含量,并促使青杨雌雄植株之间在干旱胁迫下表 现出显著的差异。在较好水分条件下,增温导致雌株的株高、基径、叶面积、总叶片数、 总生物量和超氧化物歧化酶活性显著高于雄株,而用水效率、丙二醛、脱落酸和游离脯 氨酸、抗坏血酸过氧化物酶和过氧化物酶活性低于雄株。在干旱胁迫下,增温将导致雄 株的株高、基径、叶面积、总生物量、净光合速率、蒸腾速率、气孔导度、总色素含量、 相对含水量、过氧化氢酶和抗坏血酸过氧化物酶活性等显著高于雌株,而光系统II 最大 光化学效率、内在水分利用效率、碳同位素组分、丙二醛、脱落酸、游离脯氨酸和超氧 化物歧化酶活性显著低于雌株。与雄株相比,水分较好条件下的增温有利于促进雌株的 生长发育,并在生理生态特征上优于雄株。而干旱胁迫下的增温则加剧了水分胁迫强度, 致使雌株的生长发育遭受比雄株更多的负面影响。 3. 干旱胁迫下的青杨雌雄植株对喷施外源脱落酸处理的综合响应 与对照相比,在干旱胁迫下喷施外源脱落酸可显著增加青杨雌雄植株的生长发育、 气体交换、降低水分利用效率,影响了生化物质含量,并导致青杨雌雄植株之间在干旱 胁迫下表现出显著的生理生态差异。在干旱胁迫下,喷施外源脱落酸致使雌株的株高、 叶面积、叶干重、细根干重、总生物量、净光合速率、蒸腾速率、气孔导度、光系统II 最大光化学效率、非光化学淬灭系数、相对含水量、总光合色素、类胡萝卜素、脱落酸、 超氧化物歧化酶和过氧化物酶活性的增加量显著高于雄株,而根重比、根冠比、细根/ 总根、比叶面积、内在水分利用效率、碳同位素组分、丙二醛、脯氨酸、过氧化氢酶和 抗坏血酸过氧化物酶活性等指标的减少量上显著低于雄株。与对照相比,干旱胁迫下的 喷施外源脱落酸则一定程度能减缓植株遭受胁迫的压力,促进植株生长和气体交换,减 少了植株体内的过剩自由基数量,并促使雌株的生长发育和光合能力显著提高,增强其 抗干旱胁迫能力。 With development of global warming and greenhouse effect, drought and desertification have been became main natural disasteres in resent years. Studies on ecophysiological responses of most angiosperm species to environmental stress have been reported, but little is known about dioecious plant responses to drought stress. Since significant differences on growth, survival, reproductive patterns, spatial distribution, as well as resource allocation between males and females of dioecious plant have been formed during evolutionary process, sexual different ecophysiological responses should be caused by drought stress. In this experiment, Populus cathayana Rehd. was used as model plant to study the sex-related responses to drought by using the ecological, physiological and biochemical methods under normal atmospheric temperature, elevated temperatures and exogenous abscisic acid (ABA) application treatment respectively, and to expose the sexual differences in growth, biomass allocation, photosynthesis, water use efficiency and some biochemical material contents in the males and females of dioecious plant. The results are follows: 1. A large set of parallel responses of males and females of P. cathayana to drought stress Compared with well-watered treatment, drought significantly decreased growth and photosynthesis of P. cathayana individuals, affected some physiological and biochemical processes, and induced males and females to exhibit obvious sexual differences in growth, gas exchange, water use efficiency, lipid peroxidation protection and antioxidant defenses enzyme system. Under well-watered treatment, there were no significant sexual differences in height growth (HG), basal diameter (BD), dry matter accumulation (DMA), net photosynthesis rate (A), transpiration (E), water use efficiency (WUE), and malondialdehyde (MDA), abscisic acid (ABA) and praline (Pro). However, under drought stress, males were found to exhibit higher HG, BD, leaf area (LA), total leaf number (TLA), DMA, total chlorophyll contents (TC), carotenoids content (Caro), A, E, carboxylation efficiency (CE), the maximum efficiency of PSII (Fv/Fm), intrinsic water use efficiency (WUE ), carbon isotope composition (δ13C), catalase (CAT), peroxidase (POD) and lower CO2 compensation point (Γ), specific leaf area (SLA), chlorophyll a/b ratio (Chla/Chlb), MDA, ABA and superoxide dismutase (SOD) than females. The results suggest that males possess greater drought resistance than do females and females suffer more negative effect on growth and development, physiological and biochemical processes than males under drought stress. 2. A large set of parallel responses of drought-stressed males and females of P. cathayana to elevated temperatures Compared with environmental temperature, elevated temperature treatment significant increased growth and gas exchange, decreased water use efficiency, changed some biochemical material contents of P. cathayana individuals, and induced males and females to exhibit obvious differences under drought stress. Under good water condition, elevated temperature treatment caused females to show significant higher HG, BD, LA, TLN, DMA, SOD activity, and great lower WUE, MDA, ABA, Pro, ascorbate peroxidase (APX) and POD than do males. On contrary, under drought condition, elevated temperature treatment induced males to exhibit higher HG, BD, LA, DMA, A, E, stomatal conductance (gs), relative water content (RWC), CAT, APX activity but lower Fv/Fm, WUE, δ13C, MDA, ABA, Pro, SOD activity than do females. The results suggest that females will benefit from elevating temperature under good water condition by possessing better ecophysiological processes than that of males, but will suffer from greater negative effects than do males when grown under drought stress with elevated temperature treatment. 3. A large set of parallel responses of drought-stressed males and females of P. cathayana to exogenous ABA application Compared with controls, exogenous ABA application under drought greatly increased growth and gas exchange, decreased water use efficiency, changed some biochemical material contents in P. cathayana individuals, and induced males and females to exhibit obvious sexual differences under drought. Under drought stress, exogenous ABA application induced females to exhibit more increases in HG, LA, leaf weight (LW), fine root weight (FRW), DMA, A, E, g, Fv/Fm, non-photochemical quenching coefficient (qN), RWC, TC, Caro, ABA, SOD, POD s activity than males, but to show lower decreases in root/weight ratio (RWR), root mass/foliage area ratio (RF), fine root/total root ratio (FT), SLA, WUE, δ13C, MDA, Pro, CAT, APX than males. The results suggest that exogenous ABA application under drought stress will eliminate negative damages caused by drought stress at a certain extent,promote the growth and gas exchange of plant and decrease the number of superfluous 1O2 in plant cells of males and females of P. cathayana. Furthermore, exogenous ABA application promoted more drought resistance in females than in males by increasing more growth and photosynthetic capacity in females under drought stress.

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利用开顶式气室,研究了CO2浓度升高条件下城市森林主要树种油松(Pinus tabulaefomis)和银杏(Ginkgo biloba)主要光合特性的变化。结果表明,整个生长季,CO2浓度升高(700μmol.mol-1)条件下2树种叶片的净光合速率、可溶性糖、淀粉和可溶性蛋白含量均接近或高于相应对照(自然CO2浓度)值,但不同树种增加的幅度不同;而2树种的叶绿素含量和Chla/Chlb值对CO2浓度升高反应不一,表现为CO2浓度升高条件下油松的叶绿素含量较对照值高,Chla/Chlb值降低,银杏的叶绿素含量为前期升高,后期降低,Chla/Chlb值变化与之正好相反,说明城市森林组成树种对CO2浓度升高的响应具有复杂性。CO2浓度升高条件下,两树种均未发生光合适应现象。

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采用开顶箱(OTC)设施试验方法,研究分析了O3浓度升高处理对沈阳市主要绿化树种油松光合生理特性的影响。结果表明,与对照相比,高浓度O3处理下油松叶片净光合速率随着处理时间的延长显著降低(P<0.01);类胡萝卜素含量变化复杂,处理初期显著降低(P<0.05),随后迅速升高,随着处理时间延长与对照无显著差异。chla与chl(a+b)含量变化相似,表现为先升高后降低的趋势,而chlb含量则显著低于对照(P<0.05);可溶性糖含量无显著变化,淀粉积累在处理初期受到明显的抑制作用,随着处理时间的延长无显著变化;可溶性蛋白含量均低于对照,并随着处理时间的延长下降幅度增大。叶片中MDA含量显著增加,并且随着处理时间的延长差异变大;类胡萝卜素含量的变化与MDA含量的显著增加引起了光合作用的下降,导致了可溶性蛋白和淀粉含量的下降。

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通过分析长白山国家级自然保护区内不同海拔(A1:1700 m,A2:1800 m,A3:1900 m,A4:2000 m,A5:2050 m)梯度岳桦叶片中各种生理指标含量的变化,探讨了林线树木适应高山环境的生理机制。结果表明:随着海拔的升高,比叶面积(SLA)显著减小,A5与A1相比下降了35.90%,差异达到显著水平;叶绿素含量随海拔梯度升高而降低,但叶绿素a/b比值(Chla/Chlb)和Car的相对含量(Car/Chl)随海拔梯度升高而增加;在海拔1900 m左右,MDA含量和MP均处于最低水平,各种酶的活性均为最低;当海拔超过2000 m,接近森林分布的界限时,MDA含量和MP升高,并达到最大值,各种酶的活性都出现了一定程度的下降。综合本次研究表明,在海拔1900 m比较适合岳桦的生长;海拔超过2000 m,岳桦体内生理抗性下降,不利于岳桦的生长发育,因此高海拔限制了岳桦的分布。

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近年来大气CO2体积分数不断升高,虽然CO2体积分数升高对植物影响的研究已取得一定进展,但目前针对城市森林树种的相关研究甚少。利用开顶式气室研究了大气CO2体积分数升高对沈阳市城市森林主要树种油松(PinustabulaefomisCarr.)光合生理特性的影响。结果表明,整个生长季内,与对照相比,在大气CO2体积分数为700×10-6条件下,油松叶片的Chla、Chlb及Chl(a+b)质量分数提高,Chla/Chlb值降低,而类胡萝卜素质量分数则呈现出降低—升高—降低的趋势;整个处理期间,净光合速率显著提高,提高幅度为23.68%~133.18%(P<0.05或P<0.01);可溶性蛋白质量分数增加,并随着处理时间延长增加幅度增大,在通气40d时就达到差异极显著水平(P<0.01);大气CO2体积分数升高促进了油松叶片中可溶性糖、淀粉的积累;实验中并未观察到光合下调现象。

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将ESR自旋捕俘技术应用于氧的瞬时自由基测定,为叶绿素a Chα光诱导化学行为的研究,提供了更为有力的手段。Harbour和Bolton用自旋捕俘剂DMPO(5,5-Dimethyl-1-pyrroline-N-oxide)首次证明,在光照下叶绿体可产生O_2。他们又用DMPO证明,Chla于光照下有少量OH自由基产生。继而Van Ginkel于1980年报导用分离出来的

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20世纪90年代以来,为了确保日益增长的人口对蛋白质的需求,海洋鱼类养殖在全球范围内日趋发展。然而,许多养殖鱼类的品质如抗病力、口味等与野生种类相比大为降低。饵料对于鱼类品质的好坏起着至关重要的作用。在海洋的自然环境中,浮游动物,特别是数量庞大、种类繁多的桡足类是野生鱼类的天然活饵料。哪些桡足类适于作养殖饵料,如何获得、从何处获得桡足类,人工培养是否可行,能否通过加入桡足类来改善养殖鱼类的品质是长期以来业内人士一直关注的问题,需要大量的基础性探索研究工作。 开展有潜在开发价值种的生物学特性及室内培养的基础研究,进而开展大量生产技术的研究与应用,不仅是开发利用桡足类的一个重要途径,而且可以获得一些重要的生态学参数。 本论文自2003年10月-2004年9月之间,在胶州湾采集不同的桡足类种类,通过室内比较培养实验,选定双刺纺锤水蚤作为具有开发潜力的研究培养对象,对其展开一系列培养条件及生物学特性研究,在此基础上进行了小水体增殖培养,结合现场调查资料对与其生活策略相关的生态学问题进行了初步研究探索。结果如下: 筛选:2003年10月-2004年9月全年不同季节共采集11 种桡足类,在室内自然温度、自然海水(盐度30-32)下长时间培养,粗略筛选出能够经受实验室人工养殖水体生活的种类有:强额拟哲水蚤(Paracalanus. crassirostris)、汤氏长足水蚤(Calanopia thompson)、太平洋真宽水蚤(Eurytemora pacifica)、双刺纺锤水蚤(Acartia bifilosa)。对上述种类的成体和子代幼体分别测定其对不同盐度、温度的耐受能力。培养结果表明:18℃室温下,强额拟哲水蚤幼体在盐度20以上的环境中,存活时间不超过11天;汤氏长足水蚤雌体在培养温度低于20℃时,只能存活10天;25℃室温下,当盐度低于20时,汤氏长足水蚤雌体存活时间不超过9天,子代的存活时间不超过7天;太平洋真宽水蚤不适宜在温度较高的夏秋季培养,幼体在不同盐度的实验条件下存活时间不超过5天,不适宜长期培养;双刺纺锤水蚤在全年8-24℃的室内培养温度范围内保持了24-85%的存活率,雌体和子代在盐度10-35的范围内都能存活,最终结果表明双刺纺锤水蚤是其中最适宜进行人工培养的种类。 繁殖:对双刺纺锤水蚤雌体的培养条件和繁殖生物学的研究结果表明:在本实验所使用的6种微藻饵料:微绿球藻(Nannochloropsis oculata)、小球藻(Chlorella.sp)、等鞭金藻(Isochrysis galbana)、三角褐指藻(Phaeodactylum tricornutum)、亚心型扁藻(Platymonas subordiformis)、中肋骨条藻(Skeletonema costatum)中,亚心型扁藻和中肋骨条藻适宜成体培养,亚心型扁藻对雌体存活有利,排粪率也要比中肋骨条藻低得多,亚心型扁藻在高温条件下的饵料利用效率要高于中肋骨条藻,中肋骨条藻对产卵有利,二者混合优势互补;预饥饿处理的双刺纺锤水蚤恢复到最高产卵率需要较长的时间,并且一直保持较低的产卵率;该种繁殖的最适温度范围15-20℃;在10-25℃温度范围内的平均产卵率差异并不显著。 生长及发育:对双刺纺锤水蚤幼体培养条件及发育生物学研究结果表明:在本实验所使用的6种微藻饵料中,微绿球藻是比较理想的开口饵料;粒径小( 4 m)的微藻——微绿球藻和小球藻不能保证双刺纺锤水蚤后期无节幼体发育至桡足阶段,22℃以下采用微绿球藻 + 亚心型扁藻 + 中肋骨条藻的食物搭配,22℃以上需加入粒径在4m左右的等鞭金藻。 世代时间:通过一系列的温度梯度实验,证明在相同饵料的情况下,温度对双刺纺锤水蚤的发育具有显著的影响,在15-25℃的范围内,随着温度的升高,生长速度加快、世代周期缩短;在温度条件为15、18、20、22、25℃下的世代时间分别为25.5, 18.5, 13, 11.5, 9.5天。 群体培养:研究了适宜的微藻饵料种类搭配比例以及总饵料浓度对种群日均增值率的影响。结果表明:20℃下培养宜采用亚心型扁藻:中肋骨条藻:微绿球藻按含碳量2:1:1的比例组成混合饵料,达到最高增殖率的混合饵料浓度范围在1.0-4.0 μg C ml-1之间;25℃下培养宜采用亚心型扁藻:中肋骨条藻:微绿球藻:等鞭金藻按含碳量2:1:1:2的比例组成混合饵料,日均增殖率在混合饵料总浓度为1.0 μg C ml-1 时最高,低于和高于此浓度都会降低日增值率。 度夏机制:针对野外大面调查发现双刺纺锤水蚤在高温季节的胶州湾内仍然存在的事实(传统观点认为该种在夏季从水体中消失,通过休眠卵度夏),本论文从基础生态学研究出发,根据胶州湾夏季的温度和叶绿素浓度资料,设计实验研究了高温和饵料浓度对成体繁殖和幼体生长发育的影响。实验发现,饵料浓度对高温下雌体的繁殖有着明显的影响,15g Chla l-1浓度下的雌体在28℃都可以保持产卵状态,而且卵的孵化率也在50%以上;各处理中的卵都很快孵化,并保持了60%以上的孵化率;高浓度组15 g Chla l-1和10 g Chla l-1,无节幼体都能发育至成体,低浓度5 g Chla l-1处理组中,28℃下,不能发育至桡足阶段,而25℃下也只能发育至C4期。在本实验中没有发现双刺纺锤水蚤产生休眠卵。在胶州湾自然环境中发现该种全年存在。胶州湾中的双刺纺锤水蚤在夏季能够在不产生休眠卵的情况下安全度夏。

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The late stage of the North East Atlantic (NEA) spring bloom was investigated during June 2005 along a transect section from 45 to 66 degrees N between 15 and 20 degrees W in order to characterize the contribution of siliceous and calcareous phytoplankton groups and describe their distribution in relation to environmental factors. We measured several biogeochemical parameters such as nutrients, surface trace metals, algal pigments, biogenic silica (BSi), particulate inorganic carbon (PIC) or calcium carbonate, particulate organic carbon, nitrogen and phosphorus (POC, PON and POP, respectively), as well as transparent exopolymer particles (TEP). Results were compared with other studies undertaken in this area since the JGOFS NABE program. Characteristics of the spring bloom generally agreed well with the accepted scenario for the development of the autotrophic community. The NEA seasonal diatom bloom was in the late stages when we sampled the area and diatoms were constrained to the northern part of our transect, over the Icelandic Basin (IB) and Icelandic Shelf (IS). Coccolithophores dominated the phytoplankton community, with a large distribution over the Rockall-Hatton Plateau (RHP) and IB. The Porcupine Abyssal Plain (PAP) region at the southern end of our transect was the region with the lowest biomass, as demonstrated by very low Chla concentrations and a community dominated by picophytoplankton. Early depletion of dissolved silicic acid (DSi) and increased stratification of the surface layer most likely triggered the end of the diatom bloom, leading to coccolithophore dominance. The chronic Si deficiency observed in the NEA could be linked to moderate Fe limitation, which increases the efficiency of the Si pump. TEP closely mirrored the distribution of both biogenic silica at depth and prymnesiophytes in the surface layer suggesting the sedimentation of the diatom bloom in the form of aggregates, but the relative contribution of diatoms and coccolithophores to carbon export in this area still needs to be resolved.

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The Bohai Sea was the site of the Chinese national GLOBEC programme. During the June 1997 cruises of R/V Science No.1, observations and experiments on zooplankton feeding were conducted. At five 48 h time-series stations the following observations and measurements on zooplankton were carried out: (1) diurnal vertical migration, by collecting samples at different layers every 3 h with a closing net; (2) diurnal feeding rhythms, by gut pigment analysis; and (3) ingestion rate, by both gut pigment analysis and the dilution method. A classification by body size was used to deal with the diversity of species and developmental stages of zooplankton assemblages. Samples were separated into three size groups: small (200-500 mu m), medium (500-1000 mu m) and large (> 1000 mu m). The results showed that the copepods (Calanus sinicus, Paracalanus parvus, Acartia bifilosa and Centropages mcmurrichi) performed clear diurnal vertical migrations. However, their behaviour was different at different stations. The variation in gut pigment content over the 24 h cycle showed strong diurnal feeding rhythms, particularly for the large size group. Gut pigment contents reached their daily maximum during the time from dusk to midnight (18:00-24:00). The peak value was about 10 times the minimum observed in the daytime. The in situ daily grazing rate, based on gut pigment contents and evacuation experiments, was 4.00-12.65 ng chla ind(-1) day(-1) for the small size group, 5.99-66.58 ng chla ind(-1) day(-1) for the medium size group and 31.31-237.13 ng chla ind(-1) day(-1) for the large size group. The copepods consumed only a small part (2.90-13.52%) of the phytoplankton biomass hut about 77% of the daily production. The grazing mortality rate of phytoplankton by microzooplankton (<200 mu m) measured by the dilution method ranged from 0.43 to 0.69 day(-1) The calculated daily consumption of phytoplankton biomass was 35-50%, and 85-319% of the potential production.

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Objective To study the transfer of paralytic shellfish toxins (PST) using four simulated marine food chains: dinoflagellate Alexandrium tamarense -> Arterriia Artemia salina -> Mysid shrimp Neomysis awatschensis; A. tamarense-N. awatschensis: A. taniarense A. salina -> Perch Lateolabrax japonicus; and A. tamarense -> L. japonicus. Methods The ingestion of A. tamarense, a producer of PST, by L. japonicus, N. awatschensis, and A. salina was first confirmed by microscopic observation of A. tamarense cells in the intestine samples of the three different organisms, and by the analysis of Chl.a levels iii the samples. Toxin accumulation in L. japonicus and N. awatschensis directly from the feeding on A. tamarense or indirectly ibrough the vector of A. salina was then studied. The toxicity of samples was measured using the AOAC mouse bioassay method, and the toxin content and profile of A. tamarense were analyzed by the HPLC method. Results Both A. salina and N. awatschensis could ingest A. tamarense cells. However, the ingestion capability of A. salina exceeded that of N. awatschensis. After the exposure to the culture of A. tamarense (2 000 cells(.)mL(-1)) for 70 minutes, the content of ChLa in A. salina and N. awatschensis reached 0.87 and 0.024 mu g-mg(-1), respectively. Besides, A. tamarense cells existed in the intestines of L. japonicus, N. awatschensis and A. salina by microscopic observation. Therefore, the three organisms could ingest A. tamarense cells directly. A. salina could accumulate high content of PST, and the toxicity of A. salina in samples collected on days 1, 4, and 5 of the experiment was 2.18, 2.6, and 2.1 MU(.)g(-1), respectively. All extracts from the samples could lead to death of tested mice within 7 minutes, and the toxin content in arternia sample collected on the 1st day was estimated to be 1.65x10(-5) pg STX equa Vindividual. Toxin accumulation in L. japonicus and N. awatschensis directly from the feeding on A. tamarense or indirectly froin the vector of A. salina was also studied. The mice injected with extracts from L. japonicus and N. awatschensis samples that accumulated PST either directly or indirectly showed PST intoxication symptoms, indicating that low levels of PST existed in these samples. Conclusion Paralytic shellfish toxins can be transferred to L. japonicus, N. awatschensis, and A. salina from A. taniarense directly or indirectly via the food chains.

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研究了在野外自然条件下,长期增强UV-B辐射对高寒草甸3种典型植物矮嵩草(Kobresia humilis)、垂穗披碱草(Elymus nutans)和钉柱委陵菜(Potentilla saundersiana)光合放氧速率、光合色素和抗氧化系统的影响。结果表明:长期增强UV-B辐射对3种植物的净光合速率没有明显影响。增强UV-B辐射下,3种植物的叶绿素含量变化不同,Chla/b值,类胡萝卜素(Car)含量,Car/Chl值与对照相比都有升高,说明植物叶片的光合能力、吸收紫外线的能力增强以及忍受逆境能力均有增强,从而产生光保护,有利于光合作用正常进行。由于3种植物膜脂过氧化程度的不同及SOD活性的普遍抑制,植物经受了氧化胁迫。垂穗披碱草叶片GSH含量显著七升,矮嵩草的形态矮小及钉柱委陵菜GSH含量与POD活性显著上升,都能减轻它们所经受的氧化胁迫,使光合器官免受损伤。所以,这些保护性色素的积累和抗氧化系统内部的协同作用可能是高寒草甸植物光合作用正常进行的重要原因。

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对生长在青藏高原不同海拔地区的多年生高山植物珠芽蓼(Polygonum viviparum L.)的抗氧化系统进行了测试,以探讨高山植物对于高寒环境的适应机理.结果表明:随着海拔的升高,叶绿素a(chla)、叶绿素b(chlb)含量明显下降,chla/chlb增大,珠芽蓼叶和根细胞的膜脂过氧化均加剧,丙二醛(MDA)含量明显增加.3种抗氧化酶的活性受到明显影响,其中叶片中过氧化物酶(POD)和超氧化物歧化酶(SOD)活性,随海拔升高而活性降低,而均与根中的变化趋势相反.过氧化氢酶(CAT)活性随海拔升高呈增强的趋势,且叶片中活性较根中变化明显.抗坏血酸(ASA)随海拔的升高,含量呈明显增加.膜脂过氧化与抗氧化物酶的变化具有不一致性,这可能表明两种抗氧化系统之间存在一定的协同作用,特别是高含量的抗坏血酸,可能在高山植物适应高寒环境的胁迫方面具有更加重要的作用.图5表1参22

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在植物生长室中,UV-B辐射明显降低黄瓜幼苗的根系活力,抑制程度随辐射时间的延长而增强.黄瓜和大豆幼苗的叶绿素和可溶性蛋白含量减少与UV-B辐射时间长短呈正相关,但是类胡萝卜素减少幅度不大.UV-B对Chlb的破坏较Chla严重,导致Chla b比值增大.UV-B虽增加大豆幼苗的SOD活性,但降低大豆幼苗的NR活性及其对温度变化的敏感性.分析认为,Chlab比值和SOD 活性升高,有助于植物对UV-B的适应。