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The ecological and evolutionary significance of heterophylly in aquatic plants: A case study in Proserpinaca (Haloragaceae).

机译:水生植物中异质植物的生态学和进化意义:以Proserpinaca(晕草科)为例。

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摘要

Plants of freshwater wetland habitats display a wide variety of putatively adaptive physiological, morphological, and phenological responses to seasonal and local fluctuations in their environment. The considerable plasticity exhibited by aquatic and amphibious plant species suggests myriad ways in which these plants may have adapted to the aquatic environment, and provide ideal circumstances in which to further our understanding of phenotypic plasticity and its role in ecological niche breadth. In this dissertation, I review one of the most well-characterized patterns of phenotypic plasticity exhibited by semi-aquatic plant species---variation in leaf form, or heterophylly---and examine what is currently known about the environmental mediation of this trait in aquatic plant taxa. I also present a comparison of patterns of seasonal variation in leaf morphology among species of the amphibious (semi-emergent) plant genus Proserpinaca (Haloragaceae) under field conditions, in an explicit test of the hypothesis that plasticity in leaf morphology is adaptive. In this study I found that plants with greater plasticity in leaf morphology (i.e., more heterophyllous) exhibited higher relative biomass and greater relative flower and fruit production across two consecutive field seasons, indicating that this pattern of plasticity is adaptive and is currently being maintained by natural selection. I also compared patterns of plasticity in traits commonly associated with flooding tolerance among these Proserpinaca species in a greenhouse experiment. I investigated if patterns of plasticity in response to contrasting flooding regimes differed among species, whether these patterns of plasticity were adaptive, and if genetic variation for plasticity was detectable for any of these traits. I found that selection in favor of heterophylly was stronger under consistently flooded conditions. Species that exhibited greater morphological plasticity in leaf shape also exhibited the greatest plasticity in stomate density across submerged, transitional and aerial leaves. These results are discussed in the context of the hypothesis that phenotypic plasticity may play a key role in the adaptation of organisms to changing environmental conditions.
机译:淡水湿地生境的植物对环境的季节性和局部波动表现出各种可能的适应性生理,形态和物候响应。水生和两栖植物物种表现出可观的可塑性,表明这些植物可能以多种方式适应水生环境,并为进一步理解表型可塑性及其在生态位宽度中的作用提供了理想的环境。在这篇论文中,我回顾了半水生植物物种表现出的最典型的表型可塑性模式之一-叶形或杂种的变异-并研究了目前对这种性状的环境介导的了解。在水生植物类群中。我还提出了田间条件下两栖(半紧急)植物属Proserpinaca(Haloragaceae)物种之间叶片形态的季节性变化模式的比较,这是对叶形态可塑性具有适应性的假说的明确检验。在这项研究中,我发现,在两个连续田间季节中,叶片形态具有较大可塑性的植物(即,更多的杂叶植物)表现出较高的相对生物量以及较高的相对花和果实产量,这表明这种可塑性模式具有适应性,目前正由自然选择。我还比较了这些Proserpinaca物种在温室实验中通常与耐洪性相关的性状的可塑性模式。我调查了物种之间因应不同的洪水机制而产生的可塑性模式是否不同,这些可塑性模式是否具有适应性,以及是否可检测到其中任何这些性状的可塑性遗传变异。我发现在持续淹没的条件下,选择杂种的能力更强。在浸没叶片,过渡叶片和气生叶片中,在叶片形状上表现出较大形态可塑性的物种在茎密度上也表现出最大的可塑性。在表型可塑性可能在有机体适应不断变化的环境条件中起关键作用的假设的背景下讨论了这些结果。

著录项

  • 作者

    Wells, Carolyn Leigh.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Biology Ecology.; Biology Botany.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);植物学;
  • 关键词

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