首页> 美国卫生研究院文献>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基因座之间的加性和上位性相互作用赋予了蓝花苜蓿蓝绿蚜抗性和超敏性

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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,包括蓝绿色蚜虫(BGA; Acyrthosiphon kondoi),是农业上的重要害虫。在模型豆科植物紫花苜蓿模型中已鉴定出两个BGA抗性基因,即AKR(近邻Acyrthosiphon kondoi抗性)和AIN(无邻苯二酚引起坏死)。在这项研究中,从抗性种质Jester和高度易感性种质A20之间杂交的后代被用于研究AKR和AIN基因座之间在BGA性能和植物对BGA侵染方面的相互作用。这些研究表明,AKR和AIN对BGA耐药表型具有累加作用。然而,AKR在AIN控制的宏观坏死性病变上发挥着显着的抑制上位性。尽管如此,AKR和AIN都限制了BGA进料位处H2O2的产生。电渗透图分析表明,AKR可以阻止韧皮部汁液的摄入,而与AIN无关。同样,茉莉酸防御信号通路由 AKR 募集,而与 AIN 无关。这项研究确定了通过基因堆叠增强的蚜虫抗性,并洞察了不同抗性基因对害虫的相互作用。

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