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991.
Perkins  Steven R.  Keith Owens  M. 《Plant Ecology》2003,168(1):107-120
Anthropogenic emissions contribute to an annual 0.5% increase in atmospheric CO2. As global CO2 levels increase, regional precipitation patterns will likely be altered. Our primary objective was to determine whether a reduction in summer precipitation or an increase in winter/spring precipitation, predicted by global climate change models, will favor the establishment of C4 grasses or C3 shrubs in southern savannas. Our secondary objective was to determine how defoliation and microsite light availability interact with altered precipitation regimes to influence grass and shrub seedling growth and biomass allocation patterns. Seedlings of 3 shrub species (Prosopis glandulosa var. glandulosa, Acacia berlandieri, and A. greggii var. wrightii) and 3 grass species (Aristida purpurea var. wrightii, Setaria texana, and Stipa leucotricha) were watered based on probable changes in precipitation in a CO2 enriched atmosphere (0.6, 0.8, and 1.0 current ambient summer precipitation and 1.0, 1.15, and 1.30 current winter/spring precipitation). Seedlings were defoliated at 3 levels (non-defoliated, single defoliation, and repeated defoliation) within 2 levels of microsite light availability (100 and 50% ambient). Defoliation significantly reduced total shrub and grass seedling biomass. Reducing light availability decreased shrub seedling root:shoot ratio, but total biomass was not significantly affected. Grass seedling biomass and root:shoot ratio decreased when light availability was reduced. Changing the seasonality of precipitation by reducing summer rainfall or increasing winter/spring rainfall did not significantly influence growth or biomass allocation of grass and shrub seedlings in a semiarid savanna. Microsite variations in defoliation intensity and light availability influence seedling growth and biomass allocation more than changing seasonality of precipitation. Shrub and grass seedling establishment and growth on semiarid rangelands are already limited by summer precipitation, so a further reduction as proposed by climate change models will have a limited impact on seedling dynamics.  相似文献   
992.
研究了 3种来自中国北方林下、草地和碱化草甸匍匐茎型克隆草本植物绢毛匍匐委陵菜 (PotentillareptansL .var.sericophyllaFranch .)、鹅绒委陵菜 (P .anserinaL .)和金戴戴 (Halerpestesruthenica (Jacq .)Qvcz .)对由高光照低养分斑块和低光照高养分斑块组成的资源交互斑块性生境的适应性对策。当生长于高光照低养分条件下分株(HL分株 )与生长于低光照高养分条件下分株 (LH分株 )之间的匍匐茎连接时 ,3种克隆植物HL分株、LH分株以及整个分株对系统 (HL分株 LH分株 )的生物量均得到显著提高。同时 ,LH分株根冠比显著增加 ,而HL分株根冠比显著下降。这表明 ,当互连分株置于由低光照高养分斑块和高光照低养分斑块组成的异质性环境中时 ,3种植物克隆分株均发生了环境诱导的功能特化。克隆内资源共享以及克隆内不同分株的功能特化有利于整个分株系统对局部丰富资源的获取 ,从而能够缓解资源交互斑块性生境对克隆植物的不利影响  相似文献   
993.
不同光强条件下树木释放N2O的研究   总被引:5,自引:0,他引:5  
张秀君  陈冠雄  徐慧 《应用生态学报》2002,13(12):1563-1565
首次采用封闭罩法,对阳生树木(水曲柳,红松和赤杨)及阴生树木(椴树)的连体及离体枝叶在不同光强下的N2O释放进行了野外原位观测。结果表明,阳生树木与阴性树木的N2O释放对光的反应不同,阳生树木的N2O释放受光强的调节规律同以往对农作物等的研究结果一致;而阴生树木椴树的N2O速率在强光下N2O释放较多,弱光下释放减少甚至吸收大气N2O,其N2O释放速率与光强呈显著线性正相关关系。  相似文献   
994.
山东百部种群的空间分布格局   总被引:1,自引:0,他引:1  
采用扩散系数的t检验、Poisson分布的x^2拟合检验及Morisita指数的F检验研究了山东百部(Stemona shandongensis)种群的空间分布类型;用负二项参数(K)、Cassie指标(1/K)、Green指数(GI)和Lloyd的平均拥挤度(m^*)与聚块性指标(PAI)研究其聚集强度。同时利用上述指数研究了取样面积、苗龄对山东百部种群分布格局和聚集强度的影响,分析了分布格局形成的原因。结果表明,总体上山东百部种群的分布格局类型为集群分布,种群聚集尺度多为8m^2;当年生植株种群聚集强度高于多年生种群;整个种群分布格局的演化趋向于高聚集强度的集群分布。  相似文献   
995.
The focus of this study was to empirically estimate the specific cake resistance (SCR) by the variation in shear intensity (G) in four laboratory-scale MBRs. The control reactor (MBR0) was operated with aeration only while other MBRs (MBR150, MBR300 and MBR450) were operated with aeration and mechanical mixing intensities of 150, 300 and 450 rpm, respectively. It was found that the SCR was strongly correlated (R2 = 0.99) with the fouling rates in the MBRs. Moreover, the contribution of cake resistance (Rc) to the total hydraulic resistance (Rt) was predominant compared to the irreversible fouling resistance (Rf). On this basis, the cake filtration model was selected as a predictive tool for membrane fouling. This model was modified by replacing the SCR with its empirical shear intensity relationship. The modified model can predict the fouling rate for a given shear intensity (G) within 80 and 250 s−1 in a MBR system.  相似文献   
996.
What factors limit ecosystem evolution? Like human economies, ecosystems are arenas where agents compete for locally limiting resources. Like economies, but unlike genes, ecosystems are not units of selection. In both economies and ecosystems, productivity, diversity of occupations or species and intensity of competition presuppose interdependence among many different agents. In both, competitive dominants need abundant, varied resources, and many agents’ products or services, to support the activity and responsiveness needed to maintain dominance. Comparing different‐sized land masses suggests that productivity is lower on islands whose area is too small to maintain some of the interdependences that maintain diversity, productivity and competitiveness in mainland ecosystems. Islands lacking the rare, metabolically active dominants that make competition so intense in mainland ecosystems are more easily invaded by introduced exotics. Studies of islets in reservoirs identify mechanisms generating these phenomena. These phenomena suggest how continued fragmentation will affect future ‘natural’ ecosystems.  相似文献   
997.
The in vivo and in vitro nitrate effects on pea (Pisum sativum L.) sucrose synthase (SS) were studied. At the period of plant transition from heterotrophic to autotrophic nutrition, exogenous nitrate (14.2 mM) absorbed in the form of KNO3 and Ca(NO3)2 during 10–20 days activated SS in the roots by 22–100% as compared with plants grown on nitrogen-free medium. Such effect was observed only at plant growing under high light (natural illumination up to 25 klx) and thus their sufficient supplement with sucrose. Under low light (climate-controlled chamber, 2.5 klx), nitrate could not activate SS. In the in vitro experiments, nitrate activated SS exponentially by a dose-dependent mode with the plateau at 3–5 mM, where its activity was increased by 50%. It is supposed that there is a second constituent in SS activation by nitrate, and it carries information about plant carbohydrate status. Possible mechanisms of nitrate-induced SS activation are discussed.  相似文献   
998.
We compared growth and the content of sugar, protein, and photosynthetic pigments, as well as chlorophyll fluorescence parameters in 15- and 27-day-old Chinese cabbage (Brassica chinensis L.) plants grown under a high-pressure sodium (HPS) lamps or a light source built on the basis of red (650 nm) and blue (470 nm) light-emitting diodes (LEDs) with a red to blue photon ratio of 7: 1. One group of plants was grown at a photosynthetic photon flux (PPF) level of 391 ± 24 μ mol/(m2 s) (normal level); the other, at a PPF level of 107 ± 9 μ mol/(m2 s) (low light). Plants of the third group were firstly grown at the low light and then (on the 12th day) transferred to the normal level. When grown at the normal PPF level, the plants grown under LEDs didn’t differ from plants grown under HPS lamps in shoot fresh weight, but they showed a lower root fresh and dry weights and the lower content of total sugar and sugar reserves in the leaves. No differences in the pigment content and photosystem II quantum yield were found; however, a higher Chl a/b ratio in plants grown under LEDs indicates a different proportion of functional complexes in thylakoid membranes. The response to low light conditions was mostly the same in plants grown under HPS lamps and LEDs; however, LED plants showed a lower growth rate and a higher nonphotochemical fluorescence quenching. In the case of the altered PPF level during growth, the plant photosynthetic apparatus adapted to new conditions of illumination within three days. Plants grown under HPS lamps at a constant normal PPF level and those transferred to the normal PPF level on the 12th day, on the 27th day didn’t differ in shoot fresh weight, but in plants grown under LEDs, the differences were considerable. Our results show that LED-based light sources can be used for plant growing. At the same time, some specific properties of plant photosynthesis and growth under these conditions of illumination were found.  相似文献   
999.
三磷酸腺苷(ATP)不但分布在细胞内部, 而且广泛存在于动物和植物细胞的细胞外基质中。细胞外ATP (eATP)可与细胞膜表面相应的受体结合并激发细胞内的第二信使, 从而调节细胞的多种生理学功能。但目前对于eATP是否也能对植物的光合作用产生影响则研究较少。该文以菜豆(Phaseolus vulgaris)叶片为实验材料, 研究了在不同光强下eATP对菜豆叶片叶绿素荧光特性和光合放氧速率的影响。结果显示, 随着光强的增加, 叶片的光适应下最大光化学效率(Fv′/Fm′)、光系统II (PSII)实际光化学效率(Y(II))、光化学猝灭系数(qP)均呈现下降趋势, 而电子传递速率(ETR)、非光化学猝灭系数(qN)以及调节性能量耗散的量子产量(Y(NPQ))随着光强的增加呈上升趋势。与对照相比, eATP的处理可以显著提高菜豆叶片PSII的潜在最大光化学效率(Fv/Fm)、Y(II)、qP、ETR和光合放氧速率; 但eATP的处理对Fv′/Fm′、qN以及Y(NPQ)没有显著影响。AMP-PCP (β,γ-亚甲基三磷酸腺苷, eATP细胞外受体的抑制剂)的处理显著降低了Fv/FmFv′/Fm′、Y(II)、ETR和光合放氧速率, 同时也显著增加了qN以及Y(NPQ)的水平。以上结果显示, 植物eATP水平的变化对植物光合作用的光化学反应有着重要的影响。  相似文献   
1000.
【目的】探明高强度和低强度紫外辐射不同持续时间处理对麦长管蚜Sitobion avenae (Fabricius)生长发育和繁殖的影响, 以及强度与持续时间之间的交互作用。【方法】不同强度(0.20 mW/cm2, 0.75 mW/cm2)、不同持续时间(3 h, 9 h和15 h)的UV-B处理后, 采用编制特定年龄生命表和测量麦长管蚜体重方法, 统计相对日均体重增长率(mean relative growth rate, MRGR)、生命表种群参数、繁殖参数以及存活率和繁殖率的变化。【结果】生命表数据表明, 在同一辐射持续时间下, 麦长管蚜种群内禀增长率rm、净增殖率R0、繁殖力F随紫外强度增加而显著(P<0.05)下降, 短时间内死亡率升高, 繁殖率降低; 在同一紫外强度下, 麦长管蚜的rm, R0和F也随处理时间延长而显著降低, 存活率下降最快时期提前, 繁殖率降低; 紫外强度和持续时间两因素的影响具有极显著(P<0.01)的交互作用, 但在短时间(3 h)、低强度(0.20 mW/cm2)的处理中, 麦蚜的rm, R0和F却高于无紫外辐射组(对照)。MRGR数据表明, 高强度(0.75 mW/cm2)、长时间(15 h)紫外辐射处理下麦长管蚜MRGR显著降低, 但低强度、相对短时间(3 h和9 h)紫外辐射处理下的MRGR间均无显著性差异。随辐射强度和持续时间增加, 发育为成蚜时有翅蚜所占比例增大。【结论】麦长管蚜的生长发育和繁殖受到紫外UV-B胁迫的影响, 且随着紫外强度和持续时间的不同而产生相应变化, 强度和持续时间影响具有交互效应。  相似文献   
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