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豆科作物与活体营养型病原菌的相互作用:多种防御机制的持续交互作用

Legume Crops and Biotrophic Pathogen Interactions: A Continuous Cross-Talk of a Multilayered Array of Defense Mechanisms.

作者信息

Martins Davide, Araújo Susana de Sousa, Rubiales Diego, Vaz Patto Maria Carlota

机构信息

Instituto de Tecnologia Química e Biologia António Xavier, Universidade Nova de Lisboa, Avenida da República, Estação Agronómica Nacional, 2780-157 Oeiras, Portugal.

Association BLC3-Technology and Innovation Campus, Centre Bio R&D Unit, Rua Nossa Senhora da Conceição, 2, Lagares, 3405-155 Oliveira do Hospital, Portugal.

出版信息

Plants (Basel). 2020 Oct 29;9(11):1460. doi: 10.3390/plants9111460.

Abstract

Legume species are recognized for their nutritional benefits and contribution to the sustainability of agricultural systems. However, their production is threatened by biotic constraints with devastating impacts on crop yield. A deep understanding of the molecular and genetic architecture of resistance sources culminating in immunity is critical to assist new biotechnological approaches for plant protection. In this review, the current knowledge regarding the major plant immune system components of grain and forage legumes challenged with obligate airborne biotrophic fungi will be comprehensively evaluated and discussed while identifying future directions of research. To achieve this, we will address the multi-layered defense strategies deployed by legume crops at the biochemical, molecular, and physiological levels, leading to rapid pathogen recognition and carrying the necessary information to sub-cellular components, on-setting a dynamic and organized defense. Emphasis will be given to recent approaches such as the identification of critical components of host decentralized immune response negatively regulated by pathogens while targeting the loss-of-function of susceptibility genes. We conclude that advances in gene expression analysis in both host and pathogen, protocols for effectoromics pipelines, and high-throughput disease phenomics platforms are rapidly leading to a deeper understanding of the intricate host-pathogen interaction, crucial for efficient disease resistance breeding initiatives.

摘要

豆科植物因其营养价值以及对农业系统可持续性的贡献而受到认可。然而,它们的生产受到生物胁迫的威胁,对作物产量产生毁灭性影响。深入了解抗性来源的分子和遗传结构并最终实现免疫,对于助力植物保护的新生物技术方法至关重要。在本综述中,将全面评估和讨论目前关于谷物和饲料豆科植物主要植物免疫系统成分受到专性气传生物营养真菌挑战的知识,同时确定未来的研究方向。为实现这一目标,我们将探讨豆科作物在生化、分子和生理水平上部署的多层次防御策略,这些策略可实现对病原体的快速识别,并将必要信息传递至亚细胞成分,从而启动动态且有序的防御。重点将放在近期的方法上,例如识别受病原体负调控的宿主分散免疫反应的关键成分,同时针对感病基因的功能丧失。我们得出结论,宿主和病原体基因表达分析、效应子组学流程方案以及高通量病害表型组学平台方面的进展正在迅速推动对复杂宿主 - 病原体相互作用的更深入理解,这对于高效抗病育种计划至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6168/7692723/612a0b533ea4/plants-09-01460-g001.jpg

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