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首页> 外文期刊>Perspectives in plant ecology, evolution and systematics >Plasticity of functional traits of forb species in response to biodiversity
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Plasticity of functional traits of forb species in response to biodiversity

机译:Forb物种功能性特征对生物多样性的响应

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In spite of increasing recognition that intraspecific variation may play an important role for niche differentiation, which is regarded as a promoter of species coexistence, the extent and structure of functional trait variation in response to plant neighbor diversity is poorly understood. We studied the plasticity of functional traits in vegetative and reproductive shoots of 27 non-legume forb species with different growth forms (reptant, rosulate, semirosulate) in experimental grasslands (Jena Experiment) of varying species richness and functional group composition (with and without legumes). Traits related to whole-shoot structure differed strongly among forb species with different growth forms, while leaf traits associated with light acquisition (specific leaf area, foliar delta C-13 values) and traits associated with nitrogen nutrition (shoot biomass:N ratios, leaf nitrogen concentrations, foliar delta N-15 values) were highly plastic within forb species. Plant height generally increased with increasing species richness. Plasticities to increased species richness in leaf traits (leaf length, SLA, foliar delta C-13) varied among growth forms and depended on developmental stage. The presence of legumes generally increased plastic responses in light-acquisition traits in the same direction as increasing species richness. Greater tissue nitrogen concentrations and unchanged foliar delta N-15 values of forb species in the presence of legumes suggested that the fertilizing effect of nitrogen-fixing legumes was due to the supply of unconsumed mineral nitrogen. Stronger correlations between trait means and trait plasticities in size-related traits suggested a functional convergence in response to light competition. A more variable spectrum in the plasticities of traits not associated with plant size indicated a greater functional separation among species. Our results suggest that both interspecific differences and intraspecific trait plasticity affect niche partitioning among forb species and are important for their coexistence in multi-species assemblages. (C) 2014 Geobotanisches Institut ETH, Stiftung Ruebel. Published by Elsevier GmbH. All rights reserved.
机译:尽管人们日益认识到种内变异可能在生态位分化中起着重要作用,而生态位分化被认为是物种共存的促进因素,但人们对响应植物邻居多样性的功能性状变异的程度和结构却知之甚少。我们研究了不同物种丰富度和功能组组成(有或没有豆科植物)的实验草地(耶拿实验)中27种具有不同生长形式(rep生,玫瑰花状,半玫瑰花状)的非豆类forb物种的营养和生殖芽中功能性状的可塑性。 )。在具有不同生长形式的福布斯物种中,与全苗结构相关的性状差异很大,而与光获取相关的叶片性状(特定叶面积,叶面δ-13值)和与氮营养相关的性状(苗生物量:N比,叶)氮浓度,叶面δN-15值)在福布树种中具有很高的可塑性。株高通常随着物种丰富度的增加而增加。叶片性状(叶长,SLA,叶面三角洲C-13)对物种丰富度增加的可塑性随生长形式的不同而不同,并取决于发育阶段。豆科植物的存在通常以与增加物种丰富度相同的方向增加光获取性状中的塑性响应。在豆类植物的存在下,较高的组织氮浓度和forb种类的叶面δN-15值保持不变,这表明固氮豆类的施肥效果是由于提供了未消耗的矿质氮。在与大小相关的性状中,性状均值与性状可塑性之间更强的相关性表明,对光竞争的反应是功能收敛的。与植物大小无关的性状的可塑性变化范围更大,表明物种之间的功能分离更大。我们的结果表明,种间差异和种内性状可塑性都影响福布斯物种之间的生态位分配,并且对于它们在多物种组合中的共存至关重要。 (C)2014年,GeorgeBanisches Institut ETH,Stiftung Ruebel。由Elsevier GmbH发布。版权所有。

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