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Phenological interactions across life stages in Arabidopsis thaliana---natural variation and natural selection.

机译:拟南芥生命周期中的物候相互作用-自然变异和自然选择

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摘要

The seasonal timing of developmental transitions (phenology) constitutes the life history of individuals and is under intense natural selection. In the annual plant Arabidopsis thaliana, naturally variable environmental-sensing genes involved in dormancy and flowering pathways are hypothesized to determine life history variation. These pathways interact with each other and with the seasonal environment to produce life-history variation. This dissertation examined genes in these pathways, and the manner in which their function is contingent upon seasonal environmental factors and the genetic context. I examined natural allelic variation in these genes, context-dependent gene expression and phenotypic expression, and natural selection.;I first revealed a novel function for the well characterized flowering time gene, FLC by showing that FLC regulates seed germination under low temperature and that it does so through components of the flowering time pathway. The FLC effect on germination is maternally mediated, and FLC expression regulates hormonal pathways prior to germination.;Natural variation in gene expression of the major dormancy gene DOG1 exhibited a geographic pattern that reflects geographic variation in germination. DOG1 expression level also changed with seed-maturation temperature in a manner that predicts maternal effects on germination.;Field experiments examining the effects of allelic variation in dormancy and flowering time genes showed that DOG1 influenced germination timing and fitness in the field, but its effect depended on simulated flowering time. Surprisingly, flowering-time genes had no effect on flowering time, but DOG1 had strong effects on flowering through its effects on germination.;The results suggest that the genes in germination and flowering time pathways interact both at the molecular and organismal levels. Moreover, natural selection on genes in either flowering or germination pathways likely will affect the evolution of both life-history transitions.
机译:发育过渡(物候学)的季节性时间构成了个体的生活史,并且处于强烈的自然选择之下。在一年生植物拟南芥中,推测了与休眠和开花途径有关的自然可变的环境敏感基因,以确定生活史的变异。这些途径相互影响,并与季节环境相互作用,从而产生生活史变化。本文研究了这些途径中的基因,以及它们的功能取决于季节环境因素和遗传背景的方式。我检查了这些基因中的自然等位基因变异,背景相关基因表达和表型表达以及自然选择。;我首先揭示了特征明确的开花时间基因FLC的新功能,方法是证明FLC在低温下调节种子萌发,并且它是通过开花时间途径的组成部分来实现的。 FLC对发芽的影响是由母体介导的,并且FLC表达在发芽前调节激素途径。主要休眠基因DOG1基因表达的自然变化表现出反映发芽地理变化的地理格局。 DOG1的表达水平也随着种子成熟温度的变化而变化,从而预测母体对发芽的影响。田间实验研究了等位基因休眠和开花时间基因的变异影响,结果表明DOG1影响了田间的发芽时间和适应性,但其影响取决于模拟的开花时间。出人意料的是,开花时间基因对开花时间没有影响,但DOG1通过其对发芽的影响而对开花有很强的影响。;结果表明,发芽和开花时间途径中的基因在分子和生物水平上都相互作用。此外,在开花或发芽途径中对基因的自然选择可能会影响两种生命历史转变的进化。

著录项

  • 作者

    Chiang, George Chih-Kuo.;

  • 作者单位

    Harvard University.;

  • 授予单位 Harvard University.;
  • 学科 Biology Ecology.;Biology Genetics.;Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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