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植物非生物和生物胁迫响应中的交叉耐受和自身免疫作为缺失环节:对次生代谢工程的展望。

Cross-Tolerance and Autoimmunity as Missing Links in Abiotic and Biotic Stress Responses in Plants: A Perspective toward Secondary Metabolic Engineering.

机构信息

Department of Plant-Pathogen Interaction, Institute of Plant Genetics, Polish Academy of Sciences, Strzeszyńska 34, 60-479 Poznań, Poland.

Department of Transdisciplinary Biology, Rajiv Gandhi Centre for Biotechnology, Thycaud, Thiruvananthapuram 695014, Kerala, India.

出版信息

Int J Mol Sci. 2021 Nov 4;22(21):11945. doi: 10.3390/ijms222111945.

Abstract

Plants employ a diversified array of defense activities when they encounter stress. Continuous activation of defense pathways that were induced by mutation or altered expression of disease resistance genes and mRNA surveillance mechanisms develop abnormal phenotypes. These plants show continuous defense genes' expression, reduced growth, and also manifest tissue damage by apoptosis. These macroscopic abrasions appear even in the absence of the pathogen and can be attributed to a condition known as autoimmunity. The question is whether it is possible to develop an autoimmune mutant that does not fetch yield and growth penalty and provides enhanced protection against various biotic and abiotic stresses via secondary metabolic pathways' engineering. This review is a discussion about the common stress-fighting mechanisms, how the concept of cross-tolerance instigates propitious or protective autoimmunity, and how it can be achieved by engineering secondary metabolic pathways.

摘要

当植物遭遇胁迫时,会采用多种防御活动。防御途径的持续激活,这些防御途径是由突变或抗病基因表达的改变以及 mRNA 监测机制诱导的,会导致异常表型的出现。这些植物表现出持续的防御基因表达、生长减缓,以及通过细胞凋亡导致的组织损伤。即使没有病原体的存在,这些宏观损伤也会出现,这可以归因于一种自身免疫的情况。问题是,是否有可能通过次生代谢途径的工程来开发一种自身免疫突变体,这种突变体既不会带来产量和生长的损失,又能提供对各种生物和非生物胁迫的增强保护。本文综述了常见的应激防御机制,讨论了交叉耐受概念如何引发有利或保护性的自身免疫,以及如何通过工程次生代谢途径来实现这一目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e46/8584326/662af6bfa2a1/ijms-22-11945-g001.jpg

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