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Resistance and phenology in Brassica rapa: Multiple factors influence damage and its fitness impacts.

机译:甘蓝型油菜的抗性和物候学:多种因素影响伤害及其适应性影响。

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摘要

Genetically based resistance traits are well established for Brassica rapa (Brassicaceae). This work builds on the existing understanding of resistance and examines interactions between phenology and resistance, fitness impacts of simultaneous above- and below-ground damage, and frequency dependent selection on resistance.; Chapter 1 reports work examining two populations in Orange County, California. Plants from a moister, higher herbivory site flowered earlier in the field and greenhouse due to genetic differences between populations in flowering time. When plants from these populations were infected with clubroot fungus (Plasmodiophora brassicae), dose-response curves for infection and death rates showed that plants from the early flowering population were more resistant and more tolerant to infection (Chapter 2). Flowering time may underlie these differences. Another experiment found additive fitness effects when clipping was added to infection.; Chapter 3 reports findings of a field experiment using phenotypically manipulated plants (resistant = undamaged, susceptible = clipped) that detected frequency dependent selection on cost-free resistance. Resistance was favored at all frequencies, and a compounding benefit to resistance was seen in an increase in selection favoring resistance as frequency of resistance increased.; Correlations between resistance (to aphids (Brevicoryne brassicae ), snails, and seed weevils) and phenology (leaf number, days to flowering, and flowering duration) and fitness impacts of resistance and phenology were examined in a quantitative genetics field experiment using paternal half-sib families (Chapter 4). Aphid and weevil resistance were genetically based and positively correlated. Snail resistance was not genetically based. Aphid damage correlated positively with leaf number; possibly aphids choose larger plants. Weevil damage correlated negatively with days to flowering; earlier flowering exposes pods to more of the weevil's attack period. Interactions between phenology and one herbivore's attack did not affect subsequent herbivores. Seed mass (fitness) was affected by aphids, days to flowering, and leaf number, but not by their interactions. Correlations between phenological variables and resistance suggest that selection on phenology could affect evolution of resistance. Here, selection deriving from aphid damage, leaf number, or days to flowering would favor joint evolution of high leaf number, early flowering, and high aphid resistance due to aphid resistance-leaf number and leaf number-days to flowering correlations.
机译:基于遗传的抗性状对于甘蓝型油菜(Brassicaceae)已经确立。这项工作建立在对抗性的现有理解的基础上,研究了物候与抗性之间的相互作用,同时发生的地上和地下损害的适应性影响以及频率对抗性的选择。第1章报告了研究加利福尼亚州奥兰治县的两个人口的工作。来自潮湿的较高草食场所的植物在田间和温室中较早地开花,这是由于群体之间在开花时间上的遗传差异所致。当这些种群的植物被根瘤菌(Plasmodiophora brasicae)感染时,感染和死亡率的剂量-响应曲线表明,早开花种群的植物对感染的抵抗力和耐受性更高(第2章)。开花时间可能是这些差异的基础。另一项实验发现,在感染中添加削波后,会产生附加的适应性效应。第3章报告了使用表型操纵植物(抗性=未损坏,易感性=修剪)的田间试验的发现,该植物检测了无成本抗性的频率依赖性选择。在所有频率下都有利于抗性,并且随着抗性频率的增加,有利于抗性的选择的增加体现出对抗性的复合益处。抗性(对蚜虫(Brevicoryne Brasicae),蜗牛和种子象鼻虫)与物候(叶数,开花天数和开花持续时间)之间的相关性以及抗性和物候对适应性的影响,通过使用父本半亲本的定量遗传学实地试验进行了研究。同胞家庭(第4章)。蚜虫和象鼻虫的抗性是基于遗传的并且正相关。蜗牛抗性不是基于遗传的。蚜虫危害与叶片数呈正相关。蚜虫可能选择较大的植物。象鼻虫危害与开花天数呈负相关;较早开花会使豆荚处于象鼻虫的更多发作期。物候与一种草食动物的攻击之间的相互作用并不影响随后的草食动物。种子质量(适宜性)受蚜虫,开花天数和叶数的影响,但不受其相互作用的影响。物候变量与抗性之间的相关性表明,物候选择可能会影响抗性的演变。在此,由于蚜虫的抗性叶数和叶数-天数与开花的相关性,从蚜虫的危害,叶数或开花天数的选择将有利于高叶数,早花和高抗性的联合进化。

著录项

  • 作者

    Franke, Denise Marie.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Biology Ecology.; Biology Genetics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 166 p.
  • 总页数 166
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生态学(生物生态学);遗传学;
  • 关键词

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