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首页> 外文期刊>Plant and cell physiology >Tobacco Ankyrin Protein NEIP2 Interacts with Ethylene Receptor NTHK1 and Regulates Plant Growth and Stress Responses
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Tobacco Ankyrin Protein NEIP2 Interacts with Ethylene Receptor NTHK1 and Regulates Plant Growth and Stress Responses

机译:烟草锚蛋白NEIP2与乙烯受体NTHK1相互作用并调节植物的生长和胁迫响应

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摘要

Ethylene is a gaseous hormone that regulates many processes involved in plant growth, development and stress responses. Previously, we found that the tobacco ethylene receptor NTHK1 (Nicotiana tabacum histidine kinase 1) promotes seedling growth and affects plant salt stress responses. In this study, NTHK1 ethylene receptor- interacting protein 2 (NEIP2) was identified and further characterized in relation to these processes. NEIP2 contains three ankyrin repeats that mediate an interaction with NTHK1 as demonstrated by yeast two- hybrid, glutathione S- transferase (GST) pull- down and co- immunoprecipitation assays. NTHK1 phosphorylates NEIP2 in vitro. Salt stress and ethylene treatment induce NEIP2 accumulation in the first few hours and then the NEIP2 can be phosphorylated in planta. The overexpression of NTHK1 enhances NEIP2 accumulation in the presence of ethylene and salt stress. NEIP2 overexpression promotes plant growth but reduces ethylene responses, which is consistent with the functions of NTHK1. Additionally, NEIP2 improves plant performance under salt and oxidative stress. These results suggest that ethylene- induced NEIP2 probably acts as a brake to reduce ethylene response but resumes growth through interaction with NTHK1. Manipulation of NEIP2 may be beneficial for crop improvement.
机译:乙烯是一种气态激素,可调节植物生长,发育和胁迫响应中涉及的许多过程。以前,我们发现烟草乙烯受体NTHK1(烟草组氨酸激酶1)促进幼苗生长并影响植物盐胁迫响应。在这项研究中,NTHK1乙烯受体相互作用蛋白2(NEIP2)已被鉴定并与这些过程有关。 NEIP2包含三个锚蛋白重复序列​​,可介导与NTHK1的相互作用,如酵母二杂交,谷胱甘肽S-转移酶(GST)下拉和共免疫沉淀试验所示。 NTHK1在体外使NEIP2磷酸化。盐胁迫和乙烯处理在最初的几个小时内诱导NEIP2积累,然后NEIP2可以在植物体内被磷酸化。在乙烯和盐胁迫下,NTHK1的过表达增强了NEIP2的积累。 NEIP2过表达促进植物生长,但降低乙烯反应,这与NTHK1的功能一致。此外,NEIP2改善了盐和氧化胁迫下的植物性能。这些结果表明,乙烯诱导的NEIP2可能起到降低乙烯反应的作用,但会通过与NTHK1相互作用而恢复生长。操纵NEIP2可能有益于作物改良。

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