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The influence of biogeography and mating system on the ecology of desert annual plants.

机译:生物地理学和交配系统对沙漠一年生植物生态的影响。

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摘要

A major challenge in plant ecology is in understanding how species strategies mediate interactions between the environment and fitness. Variation in niche strategies that affect phenological, physiological, and reproductive traits will allow species to partition resources differently in space and time, allowing for coexistence of many species and strategies within a community. How species differentially respond to variable environments will ultimately influence their population dynamics and geographic distribution. This dissertation approaches this topic from two perspectives: (a) examining the interaction between biogeography and variable demographic strategies in desert annual plants, and (b) examining the costs and benefits of contrasting reproductive strategies in co-occurring selfing and outcrossing desert annuals. Firstly, I tested the abundant center model to determine the role of range position on plant population dynamics. I examined how the geographic and climatic position of 13 desert annuals found at a common location, the Desert Laboratory at Tumamoc Hill in Tucson, Arizona, related to their demography over a 25-year time span. I found that species for which the Desert Laboratory was close to the center of their geographic range have less variable long-term survival and fecundity compared to species for which the Desert Laboratory was further from the center of their range. Secondly, I studied how related species with contrasting mating systems respond to variable environments to affect plant performance. In a three-year field study I investigated how inter-annual variation in plant reproductive phenology affects synchrony with pollinators and herbivores. Since selfing species are guaranteed to reproduce in the absence of pollinators, seasonal and annual variation in phenology resulted in less variable plant reproductive success compared to outcrossing species. Greater variation in reproduction in outcrossing species resulted from asynchrony in some years between plants and pollinators. In a greenhouse study examining the interaction between mating system and drought, I found that the physiological functioning and survival of outcrossing species was more strongly negatively affected by drought conditions, suggesting that selfing species have an advantage in more arid environments. These studies demonstrate how plant reproductive and physiological strategies can play a critical role in influencing fitness, population dynamics and geographic distribution.
机译:植物生态学的主要挑战是了解物种策略如何介导环境与适应性之间的相互作用。影响物候,生理和生殖性状的生态位策略的变化将使物种在空间和时间上分配不同的资源,从而使社区中许多物种和策略得以共存。物种对可变环境的不同反应方式最终将影响其种群动态和地理分布。本论文从两个角度探讨了这一主题:(a)研究荒漠年生植物中生物地理学和可变人口统计学策略之间的相互作用;(b)研究在同年发生的自交和异交的荒漠年生中对比生殖策略的成本和收益。首先,我测试了丰富的中心模型,以确定距离位置在植物种群动态中的作用。我研究了在一个共同的地点(亚利桑那州图森的塔马莫克山(Tumamoc Hill)的沙漠实验室)找到的13个沙漠年的地理和气候位置与他们在25年时间内的人口统计学之间的关系。我发现,与沙漠实验室距离其范围中心较远的物种相比,沙漠实验室靠近其地理范围中心的物种具有较小的长期生存和繁殖力。其次,我研究了具有相反交配系统的相关物种如何响应可变的环境以影响植物的生长性能。在一项为期三年的田间研究中,我调查了植物繁殖物候的年际变化如何影响与传粉媒介和食草动物的同步性。由于自交物种在没有授粉媒介的情况下可以繁殖,因此与异交物种相比,物候方面的季节性和年度变化导致较小的植物繁殖成功率。异种物种的繁殖繁殖差异较大,这是由于植物和授粉媒介之间的不同步所致。在一项温室研究中,研究了交配系统与干旱之间的相互作用,我发现异种物种的生理功能和生存受到干旱条件的负面影响更大,这表明自交物种在更干旱的环境中具有优势。这些研究证明了植物的生殖和生理策略如何在影响适应性,种群动态和地理分布方面发挥关键作用。

著录项

  • 作者

    Gerst, Katharine Laura.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Ecology.;Botany.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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