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Effect of some external factors on root hair demography in Trifolium repens L. and Lolium perenne L.

机译:三叶草和黑麦草根外的某些因素对根毛人口统计的影响。

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摘要

Light microscopy, low ionic strength solution culture and image analysis methods were used to make detailed measurements on root hair populations of different genotypes of white clover (Trifolium repens L.) and ryegrass (Lolium perenne L.). A model of root hair population structure was developed and validated that will facilitate research on root hairs of these species.; Diagrams were drawn of the root hair length and frequency on entire root systems. The distributions of root hairs on these diagrams often differed from textbook diagrams of root hairs because root hair length and frequency varied considerably along the root axis.; The key issue examined was the response at species, population and genotype levels of root hair populations perturbed by aluminium and phosphate, and the implications of these responses for our understanding of the strategies adopted by plants growing in stressful environments.; Demographic growth analysis gave the best understanding of the mechanisms of root hair population response to genetic variability, resource depletion and environmental perturbation. Root hair length seemed to be controlled by the individual root hair. However the number of root hairs appeared to be controlled by the root. Therefore it is the root that controls the distribution of the hairs on the root, and how this distribution is modified by perturbation.; Root hair populations were shown to have strategies that were similar to their shoot system growth strategies—guerrilla for clover, phalangeal for ryegrass. The root and root hair systems, and shoot systems also demonstrated similar characteristics when the r and K strategy model was applied. At an ecosystem level, clover and ryegrass occupied the same orthogonal in the CSR (competitive-stress-ruderal) model. Therefore at a larger scale, these plants are able to coexist, but they do this by having different strategies at a species level.
机译:利用光学显微镜,低离子强度溶液培养和图像分析方法对白三叶草( Trifolium repens L。)和黑麦草( Lolium perenne < / italic> L.)。已开发并验证了根毛种群结构模型,这将有助于研究这些物种的根毛。绘制了整个根系上根毛长度和频率的图表。这些图上的根毛分布通常与教科书中的根毛图不同,因为根毛的长度和频率沿根轴变化很大。研究的关键问题是铝,磷酸盐对根毛种群的种类,种群和基因型水平的反应,以及这些反应对我们理解在压力环境下生长的植物所采取策略的影响。人口增长分析使人们对根毛种群对遗传变异,资源枯竭和环境扰动的反应机制有了最好的了解。根头发的长度似乎受单个根头发的控制。但是,根毛的数量似乎受根的控制。因此,根是控制根上毛发的分布,以及如何通过扰动来改变这种分布的方法。根毛种群的生长策略与芽系统的生长策略相似,即三叶草为游击草,黑麦草为指骨。当应用r和K策略模型时,根和根毛系统以及芽系统也显示出相似的特征。在生态系统层面,三叶草和黑麦草在CSR(竞争性压力-标杆)模型中占据相同的正交关系。因此,这些植物能够大规模共存,但是它们通过在物种层面采取不同的策略来做到这一点。

著录项

  • 作者

    Care, Debbie Anne.;

  • 作者单位

    University of Auckland (New Zealand).;

  • 授予单位 University of Auckland (New Zealand).;
  • 学科 Biology Botany.; Biology Ecology.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 360 p.
  • 总页数 360
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;生态学(生物生态学);植物学;
  • 关键词

  • 入库时间 2022-08-17 11:48:14

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