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植物病原体效应子对核仁功能的被忽视的操控

The overlooked manipulation of nucleolar functions by plant pathogen effectors.

作者信息

Ranty-Roby Sarah, Pontvianne Frédéric, Quentin Michaël, Favery Bruno

机构信息

INRAE, Université Côte d'Azur, CNRS, Institut Sophia Agrobiotech (ISA), Sophia Antipolis F-06903, Sophia Antipolis, France.

CNRS, Laboratory of Plant Genome and Development, Perpignan, France.

出版信息

Front Plant Sci. 2024 Aug 7;15:1445097. doi: 10.3389/fpls.2024.1445097. eCollection 2024.

Abstract

Pathogens need to manipulate plant functions to facilitate the invasion of their hosts. They do this by secreting a cocktail of molecules called effectors. Studies of these molecules have mostly focused on the mechanisms underlying their recognition and the subsequent transcriptional reprogramming of cells, particularly in the case of R gene-dependent resistance. However, the roles of these effectors are complex, as they target all cell compartments and their plant targets remain largely uncharacterized. An understanding of the mechanisms involved would be a considerable asset for plant breeding. The nucleolus is the site of many key cellular functions, such as ribosome biogenesis, cellular stress regulation and many other functions that could be targets for pathogenicity. However, little attention has been paid to effectors targeting nucleolar functions. In this review, we aim to fill this gap by providing recent findings on pathogen effectors that target and manipulate nucleolar functions and dynamics to promote infection. In particular, we look at how some effectors hijack ribosome biogenesis, the modulation of transcription or alternative splicing, all key functions occurring at least partially in the nucleolus. By shedding light on the role of the plant nucleolus in pathogen interactions, this review highlights the importance of understanding nucleolar biology in the context of plant immunity and the mechanisms manipulated by plant pathogens.

摘要

病原体需要操纵植物的功能以促进对宿主的侵染。它们通过分泌一种名为效应子的分子混合物来实现这一点。对这些分子的研究大多集中在其识别机制以及随后细胞的转录重编程,特别是在依赖R基因的抗性情况下。然而,这些效应子的作用很复杂,因为它们作用于所有细胞区室,而其植物靶点在很大程度上仍未得到表征。了解其中涉及的机制对植物育种将是一项重要资产。核仁是许多关键细胞功能的场所,如核糖体生物合成、细胞应激调节以及许多其他可能成为致病性靶点的功能。然而,针对核仁功能的效应子很少受到关注。在本综述中,我们旨在通过提供关于靶向并操纵核仁功能和动态以促进感染的病原体效应子的最新研究结果来填补这一空白。特别是,我们研究了一些效应子如何劫持核糖体生物合成、转录调控或可变剪接,这些都是至少部分在核仁中发生的关键功能。通过揭示植物核仁在病原体相互作用中的作用,本综述强调了在植物免疫背景下理解核仁生物学以及植物病原体所操纵机制的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df3c/11339880/eb8431ffc9f6/fpls-15-1445097-g001.jpg

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