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西葫芦独立育种谱系中对昆虫食草动物的抗性机制。

Mechanisms of Resistance to Insect Herbivores in Isolated Breeding Lineages of Cucurbita pepo.

作者信息

Brzozowski Lauren J, Mazourek Michael, Agrawal Anurag A

机构信息

Section of Plant Breeding, School of Integrative Plant Science, Cornell University, Ithaca, NY, USA.

Department of Ecology and Evolutionary Biology, and Department of Entomology, Cornell University, Ithaca, NY, USA.

出版信息

J Chem Ecol. 2019 Mar;45(3):313-325. doi: 10.1007/s10886-019-01046-8. Epub 2019 Feb 1.

Abstract

Although crop wild ancestors are often reservoirs of resistance traits lost during domestication, examining diverse cultivated germplasm may also reveal novel resistance traits due to distinct breeding histories. Using ten cultivars from two independent domestication events of Cucurbita pepo (ssp. pepo and texana), we identified divergences in constitutive and induced resistance measured by growth of generalist caterpillars and leaf traits. C. p. texana cultivars were consistently more resistant to Trichoplusia ni and Spodoptera exigua, and this was not due to expected mechanisms including cucurbitacins, nitrogen, sticky phloem sap, or toxicity. Although more susceptible on average, C. p. pepo cultivars showed stronger induced resistance, suggesting a trade-off between constitutive and induced resistance. To test the hypothesis that leaf volatiles accounted for differences in resistance to caterpillars, we devised a novel method to evaluate resistance on artificial diet while larvae are exposed to leaf volatiles. In both subspecies, cultivar-specific induced volatiles that reduced T. ni growth were present in highly inducible cultivars, but absent in those that showed no induction. These results have important agricultural implications as cultivar-specific resistance to caterpillars mirrored that of specialist beetles from field trials. Overall, the eponymous cucurbitacin defenses of the Cucurbitaceae are not the mechanistic basis of differences in constitutive or induced resistance between C. pepo subspecies or cultivars. Instead, deterrent cultivar-specific volatiles appear to provide general resistance to insect herbivores. Divergence during breeding history within and between subspecies revealed this pattern and novel resistance mechanism, defining new targets for plant breeding.

摘要

尽管作物的野生近缘种往往是驯化过程中丧失的抗性性状的储存库,但由于不同的育种历史,研究多样化的栽培种质也可能揭示出新的抗性性状。我们利用来自西葫芦(南瓜属西葫芦亚种和德克萨斯亚种)两个独立驯化事件的10个品种,通过多食性毛虫的生长和叶片性状来测定组成型抗性和诱导抗性,从而确定了其中的差异。德克萨斯西葫芦品种对粉纹夜蛾和甜菜夜蛾一直具有更强的抗性,而这并非归因于预期的机制,包括葫芦素、氮、粘性韧皮部汁液或毒性。虽然南瓜属西葫芦亚种品种平均更易感,但它们表现出更强的诱导抗性,这表明组成型抗性和诱导抗性之间存在权衡。为了验证叶片挥发物是导致对毛虫抗性差异的原因这一假设,我们设计了一种新方法,在幼虫接触叶片挥发物的同时,在人工饲料上评估抗性。在两个亚种中,高度可诱导的品种中存在能降低粉纹夜蛾生长的品种特异性诱导挥发物,而在无诱导作用的品种中则不存在。这些结果具有重要的农业意义,因为对毛虫的品种特异性抗性与田间试验中专门甲虫的抗性情况相似。总体而言,葫芦科特有的葫芦素防御并非南瓜属西葫芦亚种或品种之间组成型抗性或诱导抗性差异的机制基础。相反,具有威慑作用的品种特异性挥发物似乎为昆虫食草动物提供了普遍抗性。亚种内部和之间育种历史中的差异揭示了这种模式和新的抗性机制,为植物育种确定了新的目标。

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