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热胁迫下转基因烟草植株中基因的天然形式和组成型活性形式对油菜素类固醇和乙烯信号系统的差异调节

Differential Modulation of Brassinosteroid and Ethylene Signalling Systems by Native and Constitutively Active Forms of the Gene in Transgenic Tobacco Plants Under Heat Stress.

作者信息

Tikhonova Olga A, Grigorchuk Valeria P, Brodovskaya Evgenia V, Veremeichik Galina N

机构信息

Federal Scientific Centre of the East Asia Terrestrial Biodiversity, Far East Branch of the Russian Academy of Sciences, 690022 Vladivostok, Russia.

出版信息

Plants (Basel). 2025 Mar 26;14(7):1032. doi: 10.3390/plants14071032.

Abstract

Among other calcium decoders, Ca-dependent protein kinases (CDPK) stands out for its ability, depending on calcium levels, to activate key components of the defence system. However, calcium dependence prevents the effective use of CDPKs in comprehensive investigations of their functions. Previously, we showed that a modified constitutively active form of AtCPK1 improved heat tolerance in tobacco plants. At present, the role of calcium ions and their decoders in the regulation of heat tolerance is not fully understood. The response of plant cells to excessive temperature increases is regulated by complex interactions of hormonal signalling systems, among which the least studied is BR signalling. In the present work, we investigated the role of CDPK in the interactions of BR and ET signalling during heat stress. The use of a modified calcium-independent form of AtCPK1 in this work allowed us to answer a number of questions. We showed that dependence on heat-induced calcium ion currents determines the priority of the activation of ABA signalling. Thus, CPK-dependent activation of ABA signalling may not lead to an insufficient response from BR and ET signalling. Modified CPK1 activates BR signalling, which has a positive effect on the tolerance of transgenic plants to increased temperature. The obtained data shed light on heat-associated molecular processes and can draw attention to the possibility of using intradomain modifications of CDPK both for a comprehensive study of its functional features and as a bioengineering tool.

摘要

在其他钙解码蛋白中,钙依赖性蛋白激酶(CDPK)因其能够根据钙水平激活防御系统的关键成分而脱颖而出。然而,对钙的依赖性阻碍了在全面研究其功能时有效利用CDPK。此前,我们表明AtCPK1的一种修饰的组成型活性形式提高了烟草植株的耐热性。目前,钙离子及其解码蛋白在耐热性调节中的作用尚未完全了解。植物细胞对温度过度升高的反应受激素信号系统复杂相互作用的调节,其中研究最少的是油菜素内酯(BR)信号。在本研究中,我们研究了CDPK在热胁迫期间BR和乙烯(ET)信号相互作用中的作用。在这项工作中使用修饰的非钙依赖性形式的AtCPK1使我们能够回答一些问题。我们表明,对热诱导的钙离子电流的依赖性决定了脱落酸(ABA)信号激活的优先级。因此,CPK依赖性的ABA信号激活可能不会导致BR和ET信号的反应不足。修饰的CPK1激活BR信号,这对转基因植物的耐热性有积极影响。所获得的数据揭示了与热相关的分子过程,并可能引起人们对利用CDPK的结构域内修饰进行其功能特征全面研究以及作为生物工程工具的可能性的关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7baf/11990407/d9c0d053349d/plants-14-01032-g001.jpg

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