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Moving toward an optimum: The adaptation genetics of Arabidopsis thaliana.

机译:走向最佳:拟南芥的适应遗传学。

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摘要

Adaptation accounts for many of the interesting characteristics of biodiversity. Despite this, the genetic mechanisms underlying the process of adaptation in nature are largely unknown. While general principles are emerging, important questions remain. Although experimental evidence has corroborated theoretical predictions, very few studies have tested macroorganisms in nature, where adaptation is most relevant.;My dissertation addresses several important questions in adaptation genetics in the context of fitness landscapes, primarily using the model plant Arabidopsis thaliana. Fitness landscapes are used to visualize the relationship between genetics and fitness (evolutionary success of an individual). Although fitness landscapes have been considered metaphorical, recent work (and this dissertation) suggests they may approximate reality, providing testable predictions. I first assess pleiotropy (when one gene has multiple effects), an important component of fitness landscape models. I examine this concept in historical context and suggest future directions for research. Next I evaluate how well genetic relatedness corresponds to climate adaptation across the native range of A. thaliana and find support for parallel evolution (identical but independent genetic changes), suggesting that fitness landscapes are complex. In my next chapter, using a combination of natural and artificial conditions, I examine how induced mutations impact traits that are fitness indicators as compared to general traits. I find that new mutations tend to reduce fitness, whereas their effect on general traits is bidirectional. This result is more pronounced under stressful field conditions. Finally, I evaluate a mathematical model of adaptation in the field using induced mutations in A. thaliana. I find support for a previous result from laboratory studies - that lineages that are less well adapted to an environment are more likely to benefit from new mutations whereas lineages that are well adapted are more likely to be disrupted by new mutations - and extend that to the wild.;Throughout I explore the importance of contingency in evolution, sometimes underscoring how it leads to unpredictable adaptation (chapters one and two), yet also demonstrating that the actions of mutations can be fit to simplifying assumptions (chapters three and four). These studies therefore significantly contribute to the emerging scholarship on adaptation genetics.
机译:适应是生物多样性的许多有趣特征。尽管如此,在自然界中适应过程的遗传机制还是未知之数。尽管出现了一般性原则,但仍然存在重要的问题。尽管实验证据证实了理论上的预测,但很少有研究测试了适应性最强的自然界中的大微生物。我的论文主要针对模式植物拟南芥研究了适应性景观背景下适应遗传学中的几个重要问题。适应度景观用于可视化遗传与适应性(个体的进化成功)之间的关系。尽管健身景观被认为是隐喻性的,但最近的工作(以及本论文)表明它们可能近似于现实,提供了可检验的预测。我首先评估多效性(当一个基因具有多种作用时),这是适应性景观模型的重要组成部分。我在历史背景下研究了这个概念,并提出了未来的研究方向。接下来,我评估遗传相关性与拟南芥自然范围内的气候适应性之间的对应关系,并为平行进化(相同但独立的遗传变化)提供支持,这表明适应性景观十分复杂。在我的下一章中,结合自然条件和人工条件,我将检查诱导的突变与一般性状相比如何影响作为适应性指标的性状。我发现新的突变会降低适应性,而它们对一般性状的影响是双向的。在有压力的野外条件下,这一结果更为明显。最后,我使用拟南芥中的诱导突变评估了田间适应的数学模型。我发现对实验室研究的先前结果表示支持-不太适应环境的谱系更可能受益于新突变,而适应性很强的谱系更可能被新突变破坏-并将其扩展到贯穿全文,我探索了偶然性在进化中的重要性,有时强调了偶然性如何导致不可预测的适应(第一和第二章),但同时也证明了突变的作用可以简化假设(第三和第四章)。因此,这些研究为适应遗传学的新兴学术做出了重要贡献。

著录项

  • 作者

    Stearns, Frank Warren, Jr.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Evolution development.;Genetics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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