首页> 外文期刊>Journal of Experimental Botany >A single gene, AIN, in Medicago truncatula mediates a hypersensitive response to both bluegreen aphid and pea aphid, but confers resistance only to bluegreen aphid.
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A single gene, AIN, in Medicago truncatula mediates a hypersensitive response to both bluegreen aphid and pea aphid, but confers resistance only to bluegreen aphid.

机译:Medi藜苜蓿中的单个基因AIN介导对蓝绿色蚜虫和豌豆蚜虫的超敏反应,但仅赋予对蓝绿色蚜虫的抗性。

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Biotic stress in plants frequently induces a hypersensitive response (HR). This distinctive reaction has been studied intensively in several pathosystems and has shed light on the biology of defence signalling. Compared with microbial pathogens, relatively little is known about the role of the HR in defence against insects. Reference genotype A17 of Medicago truncatula Gaertn., a model legume, responds to aphids of the genus Acyrthosiphon with necrotic lesions resembling a HR. In this study, the biochemical nature of this response, its mode of inheritance, and its relationship with defence against aphids were investigated. The necrotic lesion phenotype and resistance to the bluegreen aphid (BGA, Acyrthosiphon kondoi Shinji) and the pea aphid (PA, Acyrthosiphon pisum (Harris)) were analysed using reference genotypes A17 and A20, their F progeny and recombinant inbred lines. BGA-induced necrotic lesions co-localized with the production of HO, consistent with an oxidative burst widely associated with hypersensitivity. This HR correlated with stronger resistance to BGA in A17 than in A20; these phenotypes cosegregated as a semi-dominant gene, AIN (Acyrthosiphon-induced necrosis). In contrast to BGA, stronger resistance to PA in A17, compared with A20, did not cosegregate with a PA-induced HR. The AIN locus resides in a cluster of sequences predicted to encode the CC-NBS-LRR subfamily of resistance proteins. AIN-mediated resistance presents a novel opportunity to use a model plant and model aphid to study the role of the HR in defence responses to phloem-feeding insects.
机译:植物中的生物胁迫经常引起超敏反应(HR)。这种独特的反应已在几种病理系统中进行了深入研究,并为防御信号的生物学提供了启示。与微生物病原体相比,关于HR在防御昆虫中的作用的了解相对较少。苜蓿模型的参考基因A17型豆科植物对Acyrthosiphon属的蚜虫有类似HR的坏死病灶的反应。在这项研究中,研究了这种反应的生化性质,其遗传模式以及与蚜虫防御的关系。使用参考基因​​型A17和A20,它们的F后代和重组近交系分析了坏死病害表型和对蓝绿色蚜虫(BGA,Acyrthosiphon kondoi Shinji)和豌豆蚜虫(PA,Acyrthosiphon pisum(Harris))的抵抗力。 BGA诱导的坏死性病变与HO的产生共定位,这与超敏反应广泛发生的氧化爆发相一致。该HR与A17中对BGA的抵抗力强于A20有关。这些表型作为半显性基因AIN(乙酰丙酮根引起的坏死)共同分离。与BGA相反,与A20相比,A17对PA的更强的抵抗力并未与PA诱导的HR共同分离。 AIN基因座位于预测编码抗性蛋白CC-NBS-LRR亚家族的序列簇中。 AIN介导的抗性提供了一个新的机会,可以使用模型植物和蚜虫模型来研究HR在对食性韧皮部昆虫的防御反应中的作用。

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