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首页> 外文期刊>Journal of Experimental Botany >Additive and epistatic interactions between AKR and AIN loci conferring bluegreen aphid resistance and hypersensitivity in Medicago truncatula
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Additive and epistatic interactions between AKR and AIN loci conferring bluegreen aphid resistance and hypersensitivity in Medicago truncatula

机译:AKR和AIN基因座之间的添加剂和认证相互作用在Medicago Truncatula赋予蓝绿色蚜虫抗性和超敏反应

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摘要

Aphids, including the bluegreen aphid (BGA; Acyrthosiphon kondoi), are important pests in agriculture. Two BGA resistance genes have been identified in the model legume Medicago truncatula, namely AKR (Acyrthosiphon kondoi resistance) and AIN (Acyrthosiphon induced necrosis). In this study, progeny derived from a cross between a resistant accession named Jester and a highly susceptible accession named A20 were used to study the interaction between the AKR and AIN loci with respect to BGA performance and plant response to BGA infestation. These studies demonstrated that AKR and AIN have additive effects on the BGA resistance phenotype. However, AKR exerts dominant suppression epistasis on AIN-controlled macroscopic necrotic lesions. Nevertheless, both AKR and AIN condition production of H2O2 at the BGA feeding site. Electrical penetration graph analysis demonstrated that AKR prevents phloem sap ingestion, irrespective of the presence of AIN. Similarly, the jasmonic acid defense signaling pathway is recruited by AKR, irrespective of AIN. This research identifies an enhancement of aphid resistance through gene stacking, and insights into the interaction of distinct resistance genes against insect pests.
机译:蚜虫,包括Bluegreen蚜虫(BGA; acyrthosiphon Kondoi),是农业中的重要害虫。已经在模型豆类Medicago truncatula中鉴定了两个BGA抗性基因,即AKR(亚氨基酚酮kondoi抵抗)和AIN(亚氨基酚氏症诱导坏死)。在本研究中,使用来自名为A20的抗性加入和高易感加入之间的横向的横截面的后代研究AKR和AIN基因座之间的相互作用,相对于BGA性能和对BGA侵扰的植物反应。这些研究表明,AKR和AIN对BGA抗性表型具有添加剂影响。然而,AKR施加占AIN控制的宏观坏死病变上的显性抑制超声。然而,在BGA饲养场位于H2O2的AKR和AIN条件生产。电气渗透图分析证明AKR可防止Phloem SAP摄取,而不管AIN的存在。类似地,茉莉酸防御信号传导途径由AKR募集,无论AIN如何。该研究鉴定了通过基因堆叠的蚜虫抗性的提高,以及洞察不同抗性基因对害虫的相互作用。

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