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首页> 外文期刊>International Journal of Molecular Sciences >Alternative Splicing in Plant Immunity
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Alternative Splicing in Plant Immunity

机译:植物免疫中的替代剪接

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摘要

Alternative splicing (AS) occurs widely in plants and can provide the main source of transcriptome and proteome diversity in an organism. AS functions in a range of physiological processes, including plant disease resistance, but its biological roles and functional mechanisms remain poorly understood. Many plant disease resistance (R) genes undergo AS, and several R genes require alternatively spliced transcripts to produce R proteins that can specifically recognize pathogen invasion. In the finely-tuned process of R protein activation, the truncated isoforms generated by AS may participate in plant disease resistance either by suppressing the negative regulation of initiation of immunity, or by directly engaging in effector-triggered signaling. Although emerging research has shown the functional significance of AS in plant biotic stress responses, many aspects of this topic remain to be understood. Several interesting issues surrounding the AS of R genes, especially regarding its functional roles and regulation, will require innovative techniques and additional research to unravel.
机译:选择性剪接(AS)广泛存在于植物中,可以提供生物体中转录组和蛋白质组多样性的主要来源。 AS在包括植物抗病性在内的一系列生理过程中起作用,但是其生物学作用和功能机制仍知之甚少。许多植物抗病(R)基因都经过AS,并且一些R基因需要选择性剪接的转录本才能产生可​​以特异性识别病原体入侵的R蛋白。在精细调节的R蛋白激活过程中,AS产生的截短同工型可能通过抑制免疫启动的负调控或直接参与效应子触发的信号传导而参与植物抗病性。尽管新兴研究表明AS在植物生物逆境响应中的功能意义,但该主题的许多方面仍有待了解。围绕R基因的AS的几个有趣的问题,尤其是有关其功能角色和调控的问题,将需要创新的技术和进一步的研究来阐明。

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