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拟南芥中对霜霉病(寄生霜霉)发育调控抗性的遗传分析。

Genetic analysis of developmentally regulated resistance to downy mildew (Hyaloperonospora parasitica) in Arabidopsis thaliana.

作者信息

McDowell John M, Williams Scott G, Funderburg Nicholas T, Eulgem Thomas, Dangl Jeffery L

机构信息

Department of Plant Pathology, Physiology, and Weed Science, and Fralin Biotechnology Center, Virginia Polytechnic Institute and State University, Blacksburg 24061-0346, USA.

出版信息

Mol Plant Microbe Interact. 2005 Nov;18(11):1226-34. doi: 10.1094/MPMI-18-1226.

Abstract

Although developmentally regulated disease resistance has been observed in a variety of plant-pathogen interactions, the molecular basis of this phenomenon is not well understood. Arabidopsis thaliana ecotype Columbia-0 (Col-0) expresses a developmentally regulated resistance to Hyaloperonospora parasitica isolate Emco5. Col-0 seedlings support profuse mycelial growth and asexual spore formation in the cotyledons. In contrast, Emco5 growth and reproduction is dramatically (but not completely) restricted in the first set of true leaves. Subsequent leaves exhibit progresssively increased resistance. This adult resistance is strongly suppressed by expression of the salicylic acid-degrading transgene NahG and by loss-of-function mutations in the defense-response regulators PAD4, NDR1, RAR1, PBS3, and NPR1. In contrast to Col-0, the Wassilewskija-0 (Ws-0) ecotype supports profuse growth of Emco5 at all stages of development. Gene-dosage experiments and segregation patterns indicate that adult susceptibility in Ws-0 is incomepletely dominant to adult resistance in Col-0. Genetic mapping in a Col x Ws F2 population revealed a major locus on the bottom arm of chromosome 5, which we named RPP31. Analysis of T-DNA insertion lines indicated that the Columbia allele of RPP8, though tightly linked to RPP31, is not necessary for adult resistance.

摘要

尽管在多种植物与病原体的相互作用中都观察到了发育调控的抗病性,但这种现象的分子基础尚未得到充分理解。拟南芥生态型哥伦比亚-0(Col-0)对寄生霜霉分离株Emco5表现出发育调控的抗性。Col-0幼苗在子叶中支持大量菌丝生长和无性孢子形成。相比之下,Emco5在第一组真叶中的生长和繁殖受到显著(但不完全)限制。随后的叶片表现出逐渐增强的抗性。这种成年期抗性受到水杨酸降解转基因NahG的表达以及防御反应调节因子PAD4、NDR1、RAR1、PBS3和NPR1功能缺失突变的强烈抑制。与Col-0不同,瓦西列夫斯基-0(Ws-0)生态型在发育的所有阶段都支持Emco5的大量生长。基因剂量实验和分离模式表明,Ws-0中的成年期易感性对Col-0中的成年期抗性不完全显性。在Col×Ws F2群体中的遗传定位揭示了位于5号染色体短臂上的一个主要位点,我们将其命名为RPP31。对T-DNA插入系的分析表明,RPP8的哥伦比亚等位基因虽然与RPP31紧密连锁,但对于成年期抗性并非必需。

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