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The Elaboration of miRNA Regulation and Gene Regulatory Networks in Plant–Microbe Interactions

机译:植物与微生物相互作用中miRNA调控和基因调控网络的阐述

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摘要

Plants are exposed to diverse abiotic and biotic stimuli. These require fast and specific integrated responses. Such responses are coordinated at the protein and transcript levels and are incorporated into larger regulatory networks. Here, we focus on the evolution of transcriptional regulatory networks involved in plant–pathogen interactions. We discuss the evolution of regulatory networks and their role in fine-tuning plant defense responses. Based on the observation that many of the cornerstones of immune signaling in angiosperms are also present in streptophyte algae, it is likely that some regulatory components also predate the origin of land plants. The degree of functional conservation of many of these ancient components has not been elucidated. However, ongoing functional analyses in bryophytes show that some components are conserved. Hence, some of these regulatory components and how they are wired may also trace back to the last common ancestor of land plants or earlier. Of course, an understanding of the similarities and differences during the evolution of plant defense networks cannot ignore the lineage-specific coevolution between plants and their pathogens. In this review, we specifically focus on the small RNA regulatory networks involved in fine-tuning of the strength and timing of defense responses and highlight examples of pathogen exploitation of the host RNA silencing system. These examples illustrate well how pathogens frequently target gene regulation and thereby alter immune responses on a larger scale. That this is effective is demonstrated by the diversity of pathogens from distinct kingdoms capable of manipulating the same gene regulatory networks, such as the RNA silencing machinery.
机译:植物受到各种非生物和生物刺激。这些需要快速而具体的综合响应。此类反应在蛋白质和转录本水平上得到协调,并被整合到更大的调节网络中。在这里,我们专注于涉及植物与病原体相互作用的转录调控网络的进化。我们讨论了监管网络的演变及其在微调植物防御反应中的作用。基于观察发现被子植物藻类中也存在许多被子植物免疫信号转导的基石,很可能某些调节成分也早于陆地植物的起源。许多这些古老成分的功能保护程度尚未阐明。但是,正在进行的苔藓植物功能分析表明某些成分是保守的。因此,其中一些监管组件及其接线方式也可以追溯到陆地植物的最后共同祖先或更早的祖先。当然,对植物防御网络进化过程中异同的理解不能忽略植物及其病原体之间特定于谱系的共同进化。在这篇综述中,我们特别关注与微调防御反应强度和时机有关的小RNA调控网络,并重点介绍宿主RNA沉默系统对病原体的利用实例。这些例子很好地说明了病原体如何频繁地靶向基因调控,从而大规模地改变免疫反应。能够操纵相同基因调节网络(例如RNA沉默机制)的不同王国的病原体多样性证明了这种方法的有效性。

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