植物免疫力Trichoderma诱导的机制:一个RNA-表观遗传的视角
Yifan Dong1, Golam Jalal Ahammed2
1College of Horticulture and Plant Protection, Henan University of Science and Technology, Luoyang, 471023, PR China.
概括
有益的微生物,如Trichoderma spp. 通过小RNA和表观遗传学获得主要植物免疫力. 这种RNA-表观遗传相互作用建立了持久的,低成本的植物防御,而不需要不断激活.
科学领域:
- 植物病理学 植物病理学
- 分子生物学分子生物学
- 微生物生态学 微生物生态学
背景情况:
- 与根系相关的微生物以成本有效的方式增强了植物的系统性抵抗力.
- 三体与植物的相互作用是持续诱导的耐药性的典范,而没有高的防御成本.
- 小RNAs (miRNAs,siRNAs,lncRNAs) 和表观遗传修饰与植物免疫原始化有关.
研究的目的:
- 审查和整合最近在理解三体诱导的全身免疫力方面的进展.
- 探索RNA介导调节和表观遗传修饰在植物防御中的联合作用.
- 为稳定而又灵活的植物免疫状态提供一种机制性的解释.
主要方法:
- 概念性综述综合了关于植物微生物相互作用的当前研究.
- 分析RNA介导的调节网络 (小RNA, lncRNA).
- 检查植物免疫原始化中的表观遗传机制.
主要成果:
- 小RNAs建立了免疫优先级,并塑造了防御反应.
- 表观遗传修饰稳定了原始免疫状态,确保了可逆性.
- 一个集成的RNA-表观遗传框架解释了持久的,低成本的植物免疫力.
结论:
- 三体诱导的免疫依赖于RNA和表观遗传调节的连续性.
- 这种综合视角阐明了植物如何在没有构成性成本的情况下保持诱导性防御.
- 了解这些分子层对于利用有益的微生物来保护植物至关重要.
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