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Investigating the context-dependent effects of plant mutualists on plant and herbivore performance in an agricultural legume.

机译:调查植物互惠者对农用豆类中植物和草食动物性能的背景依赖性影响。

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摘要

Nutritional symbioses between plants and plant-root mutualists are not only important players in nutrient acquisition by plants but contribute to nutrient cycling, biological community composition and even plant defense elicitation. Furthermore, several studies have purported that anthropogenic nutrient loading may disrupt these symbioses by effectively removing plant dependence on symbionts for nutrient acquisition, while some have evidenced that the presence of another symbiont may ameliorate the negative effects of nutrient loading on said first symbiont. In addition, less is known on how nutrient loading effects may influence higher trophic levels, such as insect herbivores. This study investigated how arbuscular mycorrhizal fungi (AMF) and rhizobacteria interact under nitrogen or phosphorus amendment to influence each other's abundance, plant growth and defense traits, and herbivore performance using a factorial greenhouse experiment and herbivory assay. Results illustrated no support for the negative influence of nutrient loading on symbiont abundance and fitness, nor, as a corollary of that, evidence of ameliorating effects of one symbiont on the other in dual inoculation treatments. In addition, there was evidence of nodulation in the absence of rhizobial inoculation, which calls into question the use of nodule counting as a metric of rhizobial abundance and fitness. In addition, the insignificant response of alfalfa across nutrient and symbiont treatments for several response variables may illustrate that the domestication of alfalfa has reduced its dependence on belowground mutualists for nutrient acquisition, such as the fact that plant phosphorus and protein content were found not to be dependent upon symbiont treatment. There was also no influence of nutrient and symbiont treatments on herbivore performance, despite significant differences in foliar defensive chemistry across symbiont and/or nutrient treatments. These results do not support nutrient loading hypotheses, and thus highlight the need to consider species identities as an influence in interaction outcomes.
机译:植物与植物根系共生者之间的营养共生关系不仅是植物吸收养分的重要参与者,而且还促进了养分循环,生物群落组成乃至植物防御的激发。此外,一些研究声称,通过有效地消除植物对共生体获取养分的依赖性,人为养分负载可以破坏这些共生体,而一些研究表明,另一种共生体的存在可以减轻养分负载对所述第一共生体的负面影响。此外,关于营养物负载效应如何影响较高营养水平(如昆虫食草动物)的了解还很少。这项研究使用因子温室试验和食草测定法研究了氮或磷修正下的丛枝菌根真菌(AMF)和根瘤菌如何相互作用,以相互影响彼此的丰度,植物生长和防御性状以及食草动物的性能。结果表明,没有证据支持养分负荷对共生体丰度和适应性的负面影响,因此,推论也没有证据表明双重接种治疗中一种共生体对另一种共生体有改善作用。此外,有证据表明在没有根瘤菌接种的情况下有根瘤形成,这使人们对根瘤计数作为根瘤菌丰度和适应性的度量标准提出了质疑。此外,紫花苜蓿对几种响应变量的营养和共生处理之间的响应不明显,这可能表明紫花苜蓿的驯化降低了其对地下互惠生获取养分的依赖性,例如发现植物磷和蛋白质含量不高。取决于共生治疗。尽管共生和/或养分处理之间的叶片防御化学有显着差异,但营养和共生处理对草食动物的性能也没有影响。这些结果不支持养分负荷假说,因此强调需要考虑物种身份作为相互作用结果的影响。

著录项

  • 作者

    Ausland, Catherine Ann.;

  • 作者单位

    Northern Illinois University.;

  • 授予单位 Northern Illinois University.;
  • 学科 Ecology.;Botany.;Plant sciences.
  • 学位 M.S.
  • 年度 2016
  • 页码 51 p.
  • 总页数 51
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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