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应激诱导的 ONAC023 核转位通过多种途径提高水稻的抗旱耐热性。

Stress-induced nuclear translocation of ONAC023 improves drought and heat tolerance through multiple processes in rice.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, China.

Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, 430070, China.

出版信息

Nat Commun. 2024 Jul 13;15(1):5877. doi: 10.1038/s41467-024-50229-9.

Abstract

Drought and heat are major abiotic stresses frequently coinciding to threaten rice production. Despite hundreds of stress-related genes being identified, only a few have been confirmed to confer resistance to multiple stresses in crops. Here we report ONAC023, a hub stress regulator that integrates the regulations of both drought and heat tolerance in rice. ONAC023 positively regulates drought and heat tolerance at both seedling and reproductive stages. Notably, the functioning of ONAC023 is obliterated without stress treatment and can be triggered by drought and heat stresses at two layers. The expression of ONAC023 is induced in response to stress stimuli. We show that overexpressed ONAC23 is translocated to the nucleus under stress and evidence from protoplasts suggests that the dephosphorylation of the remorin protein OSREM1.5 can promote this translocation. Under drought or heat stress, the nuclear ONAC023 can target and promote the expression of diverse genes, such as OsPIP2;7, PGL3, OsFKBP20-1b, and OsSF3B1, which are involved in various processes including water transport, reactive oxygen species homeostasis, and alternative splicing. These results manifest that ONAC023 is fine-tuned to positively regulate drought and heat tolerance through the integration of multiple stress-responsive processes. Our findings provide not only an underlying connection between drought and heat responses, but also a promising candidate for engineering multi-stress-resilient rice.

摘要

干旱和高温是经常同时发生的主要非生物胁迫因素,威胁着水稻的生产。尽管已经鉴定出数百个与胁迫相关的基因,但只有少数几个被证实能赋予作物对多种胁迫的抗性。在这里,我们报告了 ONAC023,它是一个整合了水稻干旱和耐热性调节的枢纽应激调节剂。ONAC023 正向调节幼苗期和生殖期的干旱和耐热性。值得注意的是,ONAC023 的功能在没有胁迫处理的情况下被消除,但可以在两层由干旱和热胁迫触发。ONAC023 的表达是对胁迫刺激的响应。我们表明,过表达的 ONAC23 在胁迫下被转运到核内,并且来自原生质体的证据表明,remorin 蛋白 OSREM1.5 的去磷酸化可以促进这种转运。在干旱或热胁迫下,核内的 ONAC023 可以靶向并促进多种基因的表达,如 OsPIP2;7、PGL3、OsFKBP20-1b 和 OsSF3B1,这些基因参与包括水运输、活性氧平衡和可变剪接在内的各种过程。这些结果表明,ONAC023 通过整合多个应激响应过程,被精细调节来正向调节干旱和耐热性。我们的发现不仅提供了干旱和热响应之间的潜在联系,而且还为工程多应激耐受水稻提供了一个有前途的候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06ff/11245485/8a51c364d0cc/41467_2024_50229_Fig1_HTML.jpg

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