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与[具体物种1]和[具体物种2]孢子发育相关的信号和调控机制。 (注:原文中“and ”之间缺少具体物种信息,翻译时根据常见情况补充了相关表述以使译文更完整准确。)

Signal and regulatory mechanisms involved in spore development of and .

作者信息

Situ Junjian, Xi Pinggen, Lin Long, Huang Weixiong, Song Yu, Jiang Zide, Kong Guanghui

机构信息

Department of Plant Pathology, Guangdong Province Key Laboratory of Microbial Signals and Disease Control, South China Agricultural University, Guangzhou, China.

Department of Plant Pathology, Nanjing Agricultural University, Nanjing, China.

出版信息

Front Microbiol. 2022 Sep 9;13:984672. doi: 10.3389/fmicb.2022.984672. eCollection 2022.

Abstract

Oomycetes cause hundreds of destructive plant diseases, threatening agricultural production and food security. These fungus-like eukaryotes show multiple sporulation pattern including the production of sporangium, zoospore, chlamydospore and oospore, which are critical for their survival, dispersal and infection on hosts. Recently, genomic and genetic technologies have greatly promoted the study of molecular mechanism of sporulation in the genus and . In this paper, we characterize the types of asexual and sexual spores and review latest progress of these two genera. We summarize the genes encoding G protein, mitogen-activated protein kinase (MAPK) cascade, transcription factors, RNA-binding protein, autophagy-related proteins and so on, which function in the processes of sporangium production and cleavage, zoospore behaviors and oospore formation. Meanwhile, various molecular, chemical and electrical stimuli in zoospore behaviors are also discussed. Finally, with the molecular mechanism of sporulation in and is gradually being revealed, we propose some thoughts for the further research and provide the alternative strategy for plant protection against phytopathogenic oomycetes.

摘要

卵菌纲会引发数百种具有破坏性的植物病害,对农业生产和粮食安全构成威胁。这些类似真菌的真核生物表现出多种孢子形成模式,包括产生孢子囊、游动孢子、厚垣孢子和卵孢子,这些对于它们在宿主上的存活、传播和感染至关重要。最近,基因组学和遗传学技术极大地推动了对该属和另一属孢子形成分子机制的研究。在本文中,我们对无性和有性孢子的类型进行了表征,并综述了这两个属的最新研究进展。我们总结了编码G蛋白、丝裂原活化蛋白激酶(MAPK)级联、转录因子、RNA结合蛋白、自噬相关蛋白等的基因,这些基因在孢子囊产生和裂解、游动孢子行为及卵孢子形成过程中发挥作用。同时,还讨论了游动孢子行为中的各种分子、化学和电刺激。最后,随着该属和另一属孢子形成分子机制的逐渐揭示,我们提出了一些进一步研究的思路,并为针对植物病原卵菌的植物保护提供了替代策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0409/9500583/5cd3e4672af6/fmicb-13-984672-g003.jpg

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