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Characterization of a gene from a tomato pathogen determining hypersensitive resistance in non-host species and genetic analysis of this resistance in bean

机译:番茄病原体基因决定非宿主物种超敏抗性的基因表征及该抗性的遗传分析

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摘要

Xanthomonas campestris pv. vesicatoria is the causal agent of leaf spot disease on pepper and tomato. On non-host plants, such as bean, soybean, cowpea, alfalfa, and cotton, X. campestris pv. vesicatoria is unable to cause disease, inducing instead a hypersensitive resistance response (HR). Since avirulence genes from X. campestris pv. vesicatoria specifically induce HR in several pepper cultivars, we investigated whether there were avirulence genes governing induction of resistance in non-host species. We report on the molecular cloning and characterization of a non-host avirulence gene from X. campestris pv. vesicatoria. A cosmid clone isolated from a library of DNA from X. campestris pv. vesicatoria tomato race 1 converted X. campestris pv. phaseoli to avirulence by inducing HR on the bean cultivar Sprite, but not on Bush Blue Lake. The HR-inducing activity was localized to a 2.1-kilobase Pst I fragment of DNA, designated avrRxv. In addition, we demonstrate that avrRxv inhibited disease production by several X. campestris pathovars on their normally susceptible hosts: glycines on soybean, vignicola on cowpea, alfalfae on alfalfa, holcicola on corn, and malvacearum on cotton. The HR resistance in bean induced by avrRxv segregated as a single incompletely dominant gene, designated Rxv. These results indicate that the avirulence gene avrRxv and the resistance gene Rxv partially control the outcome of the interaction between X. campestris pv. vesicatoria and the non-host bean.
机译:Xanthomonas campestris PV。 vesicatoria是辣椒和番茄上的叶斑病的病因。在非寄主植物上,例如豆,大豆,cow豆,苜蓿和棉花,X。campestris pv。 vesicatoria不能引起疾病,而是引起过敏反应(HR)。由于无毒基因来自X. campestris pv。 vesicatoria在几种辣椒品种中特异性诱导HR,我们调查了在非寄主物种中是否存在控制诱导抗性的毒力基因。我们报告了来自X. campestris pv的非宿主无毒力基因的分子克隆和鉴定。 vesicatoria。从粘液单胞菌PV的DNA文库分离的粘粒克隆。 vesicatoria番茄竞赛1转换为X. campestris pv。通过在豆品种Sprite上诱导HR,但在Bush Blue Lake上诱导HR,使菜豆无毒。 HR诱导活性被定位在2.1碱基碱基的Pst I DNA片段上,命名为avrRxv。此外,我们证明了avrRxv抑制了几种通常在其易感病原体上的弯曲杆菌的致病性:大豆上的甘氨酸,cow豆上的 vignicola ,苜蓿苜蓿苜蓿上的em>,玉米上的 holcicola 和棉花上的 malvacearum avrRxv 诱导的豆的HR抗性分离为一个单一的不完全显性基因,称为 Rxv 。这些结果表明无毒力基因 avrRxv 和抗性基因 Rxv 部分控制了 X相互作用的结果。 Campestris pv。 vesicatoria 和非宿主bean。

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