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Seedling performance in heterogeneous light environments: A multiscale approach.

机译:异构光照环境中的幼苗性能:一种多尺度方法。

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摘要

I examined light-dependent growth, biomass allocation and survivorship of Dipteryx panamensis, Virola koschynii, and Brosimum alicastrum across a wide range of light conditions in NE Costa Rica. Furthermore, I explored the mechanistic bases of seedling performance in heterogeneous light environments by scaling leaf-level photosynthetic physiology to whole-plant carbon gain in closed-canopy understory microsites. Seedlings of Dipteryx panamensis, Virola koschnyii, and Brosimum alicastrum , three species of shade-tolerant canopy trees, were transplanted across a forest-pasture edge, in second-growth forests, and in tree plantations at La Selva Biological Station. Survivorship of Dipteryx and Brosimum was positively related to light availability within low light environments (1--7% diffuse transmittance), whilst Virola showed no relationship between survivorship and light. Species differed in light-dependent growth, biomass allocation and photosynthetic physiology. Although all species increased biomass growth with increasing light availability, increase in total biomass was accomplished through different allocation patterns. Dipteryx and Virola allocated carbon evenly among leaf, stem and root biomass across light environments. In contrast, Brosimum showed little aboveground growth, allocating carbon almost exclusively to root biomass. These among-species differences in growth and biomass allocation illustrate that shade tolerance can occur through diverse functional pathways.; Examining photosynthetic physiology and growth across a wider gradient of light (1--80% diffuse transmittance) revealed strong relationships between measures of physiology at the whole-plant level and growth. Although, maximum assimilation rates increased asymptotically with light in all species, estimates of daily whole-plant assimilation rates increased linearly. The translation of leaf- to whole-plant assimilation was mediated by efficient light interception as well as the frequency distribution of light in seedling micosites. Specifically, seedlings located in higher light microsites spent more time operating at photosynthetic capacity and thereby fixed more carbon on a daily basis. Whereas leaf-level assimilation rates were positively related to seedling growth, estimates of whole-plant carbon gain provided the strongest predictors of seedling growth in all species. This thesis represents a pioneering effort to quantitatively examine the relationships between leaf-level physiology, whole-plant physiology and growth. My results draw attention to the importance of whole-plant characters for understanding photosynthetic physiology and its relationship to plant growth.
机译:我在哥斯达黎加东北部的各种光照条件下检查了Dipteryx panamensis,Virola koschynii和Brosimum alicastrum的光依赖性生长,生物量分配和存活。此外,我通过将叶片水平的光合生理缩放到密闭冠层地下微地点的全株碳吸收中,探索了在异质光照环境下幼苗性能的机制基础。三种耐荫性冠层树种Dipteryx panamensis,Virola koschnyii和Brosimum alicastrum的幼苗被移过森林草丛边缘,第二生长林和La Selva生物站的人工林。 Dipteryx和Brosimum的存活率与弱光环境下的光利用率呈正相关(漫射透射率<1-7%),而Virola的存活率与光没有关系。物种在光依赖性生长,生物量分配和光合生理方面有所不同。尽管所有物种随着光利用率的提高而增加了生物量的增长,但总生物量的增加是通过不同的分配方式来实现的。 Dipteryx和Virola在明亮的环境中在叶片,茎和根生物量中平均分配碳。相反,Brosimum几乎没有地上生长,几乎完全将碳分配给根生物量。这些种间在生长和生物量分配上的差异表明,耐荫性可以通过多种功能途径发生。在更宽的光梯度(<1-80%的漫透射率)下检查光合生理和生长情况,发现在整个植物水平上的生理措施与生长之间存在密切关系。尽管所有物种的最大同化率随光照渐近增加,但每日全植物同化率的估计值却呈线性增加。叶到全植物同化的转化是通过有效的光拦截以及幼苗粘膜中光的频率分布介导的。具体而言,位于高光微站点的幼苗花费更多的时间以光合作用的方式运转,从而每天固定更多的碳。叶水平同化率与幼苗生长呈正相关,而对整个植物碳吸收的估计提供了所有物种中幼苗生长的最强预测因子。本论文代表了一项定量研究叶水平生理,全株生理与生长之间关系的开创性工作。我的结果提请注意整株植物特性对于理解光合生理及其与植物生长关系的重要性。

著录项

  • 作者

    Montgomery, Rebecca Anne.;

  • 作者单位

    University of Connecticut.;

  • 授予单位 University of Connecticut.;
  • 学科 Biology Ecology.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);
  • 关键词

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