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新西兰贝壳杉猝死病菌 RXLR 效应因子的功能分析。

Functional analysis of RXLR effectors from the New Zealand kauri dieback pathogen Phytophthora agathidicida.

机构信息

Bio-Protection Research Centre, School of Fundamental Sciences, Massey University, Palmerston North, New Zealand.

Institute of Environmental Science and Research, Christchurch, New Zealand.

出版信息

Mol Plant Pathol. 2020 Sep;21(9):1131-1148. doi: 10.1111/mpp.12967. Epub 2020 Jul 8.

Abstract

New Zealand kauri is an ancient, iconic, gymnosperm tree species that is under threat from a lethal dieback disease caused by the oomycete Phytophthora agathidicida. To gain insight into this pathogen, we determined whether proteinaceous effectors of P. agathidicida interact with the immune system of a model angiosperm, Nicotiana, as previously shown for Phytophthora pathogens of angiosperms. From the P. agathidicida genome, we defined and analysed a set of RXLR effectors, a class of proteins that typically have important roles in suppressing or activating the plant immune system. RXLRs were screened for their ability to activate or suppress the Nicotiana plant immune system using Agrobacterium tumefaciens transient transformation assays. Nine P. agathidicida RXLRs triggered cell death or suppressed plant immunity in Nicotiana, of which three were expressed in kauri. For the most highly expressed, P. agathidicida (Pa) RXLR24, candidate cognate immune receptors associated with cell death were identified in Nicotiana benthamiana using RNA silencing-based approaches. Our results show that RXLRs of a pathogen of gymnosperms can interact with the immune system of an angiosperm species. This study provides an important foundation for studying the molecular basis of plant-pathogen interactions in gymnosperm forest trees, including kauri.

摘要

新西兰贝壳杉是一种古老的标志性裸子植物树种,正受到由卵菌 Phytophthora agathidicida 引起的致命衰退疾病的威胁。为了深入了解这种病原体,我们确定了 P. agathidicida 的蛋白质效应物是否与模式被子植物烟草原生质体相互作用,如先前对 P. 病原体的研究所示。在 P. agathidicida 基因组中,我们定义并分析了一组 RXLR 效应物,这是一类通常在抑制或激活植物免疫系统方面具有重要作用的蛋白质。使用根癌农杆菌瞬时转化测定法,筛选了 RXLRs 激活或抑制烟草原生质体免疫系统的能力。有 9 种 P. agathidicida RXLRs 在烟草原生质体中触发细胞死亡或抑制植物免疫,其中 3 种在贝壳杉中表达。对于表达量最高的 P. agathidicida (Pa) RXLR24,使用基于 RNA 沉默的方法在 Nicotiana benthamiana 中鉴定了与细胞死亡相关的候选同源免疫受体。我们的研究结果表明,裸子植物病原体的 RXLRs 可以与被子植物物种的免疫系统相互作用。这项研究为研究包括贝壳杉在内的针叶树森林树木的植物-病原体相互作用的分子基础提供了重要基础。

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