首页> 外文期刊>Environmental Entomology >Hypervirulent Diuraphis noxia (Hemiptera: Aphididae) Biotype SAM Avoids Triggering Defenses in Its Host (Triticum aestivum) (Poales: Poaceae) During Feeding
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Hypervirulent Diuraphis noxia (Hemiptera: Aphididae) Biotype SAM Avoids Triggering Defenses in Its Host (Triticum aestivum) (Poales: Poaceae) During Feeding

机译:SAM避免在喂养期间高毒的Diuraphis noxia(Hemiptera:Aphididae)生物型SAM避免触发其宿主(Triticum aestivum)(Poales:Poaceae)的防御。

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摘要

In the molecular arms race between aphids and plants, both organisms rely on adaptive strategies to outcompete their evolutionary rival. In the current study, we investigated the difference in elicited defense responses of wheat ( Triticum aestivum L.) near-isogenic lines with different Dn resistance genes, upon feeding by an avirulent and hypervirulent Diuraphis noxia Kurdjumov biotype. After measuring the activity of a suite of enzymes associated with plant defense, it became apparent that the host does not recognize the invasion by the hypervirulent aphid because none of these were induced, while feeding by the avirulent biotype did result in induction of enzyme activity. Genomic plasticity in D. noxia may be a likely explanation for the observed differences in virulence between D. noxia biotype SA1 and SAM, as demonstrated in the current study
机译:在蚜虫和植物之间的分子军备竞赛中,两种生物都依靠适应性策略来胜过它们的进化对手。在当前的研究中,我们调查了通过无毒和高毒的Diuraphis noxia Kurdjumov生物型饲喂的具有不同Dn抗性基因的小麦(Triticum aestivum L.)近等基因系引起的防御反应的差异。在测量与植物防御相关的一组酶的活性后,很明显,宿主没有识别出高毒蚜虫的入侵,因为这些都没有被诱导,而以无毒生物型喂养确实导致了酶活性的诱导。如当前研究所示,D。noxia基因组可塑性可能是观察到的D. noxia生物型SA1和SAM毒力差异的可能解释。

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