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从基因对基因到抗病小体:弗洛尔的不朽遗产。

From Gene-for-Gene to Resistosomes: Flor's Enduring Legacy.

作者信息

Dodds Peter N

机构信息

CSIRO Agriculture and Food, GPO Box 1700, Clunies Ross Street, Canberra 2601, Australia.

出版信息

Mol Plant Microbe Interact. 2023 Aug;36(8):461-467. doi: 10.1094/MPMI-06-23-0081-HH. Epub 2023 Sep 11.

Abstract

The gene-for-gene model proposed by H. H. Flor has been one of the fundamental precepts of plant-pathogen interactions that has underpinned decades of research towards our current concepts of plant immunity. The broad validity of this model as an elegant and accurate genetic description of specific recognition events between the products of plant resistance () and pathogen avirulence () genes has been demonstrated many times over in a wide variety of plant disease systems. In recent years detailed molecular and structural analyses have provided a deep understanding of the principles by which plant immune receptors recognize pathogen effectors, including providing molecular descriptions of many of the genetic loci in flax and flax rust characterized by Flor. Recent advances in molecular and structural understanding of immune receptor recognition and activation mechanisms have brought the field to a new level, where rational design of novel receptors through engineering approaches is becoming a realizable goal. [Formula: see text] Copyright © 2023 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.

摘要

H. H. 弗洛尔提出的基因对基因模型一直是植物 - 病原体相互作用的基本准则之一,它支撑了数十年来我们对植物免疫当前概念的研究。该模型作为对植物抗性(R)和病原体无毒(Avr)基因产物之间特异性识别事件的一种简洁而准确的遗传描述,其广泛的有效性已在多种植物病害系统中得到多次证明。近年来,详细的分子和结构分析让人们深入理解了植物免疫受体识别病原体效应子的原理,包括对弗洛尔所描述的亚麻和亚麻锈菌中许多基因位点进行分子层面的阐释。免疫受体识别与激活机制在分子和结构理解方面的最新进展将该领域提升到了一个新水平,通过工程方法合理设计新型受体正成为一个可实现的目标。[公式:见正文] 版权所有 © 2023 作者。本文是一篇根据知识共享署名 - 非商业性使用 - 禁止演绎4.0国际许可协议分发的开放获取文章。

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