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《的分离与表达模式分析:作为干旱和耐盐性的正调控因子》 (注:原标题英文表述不完整,推测补充完整后的翻译,具体需结合完整原文确定准确标题)

Isolation and Expression Pattern Analysis of : Acts as a Positive Regulator of Drought and Salt Tolerance.

作者信息

Cao Qing, Du Junjie, Yin Mengxu, Wang Chen, Zhang Tiantian, Zhao Qingrong, Liu Lu, Zhang Hanguo, Zhang Lei

机构信息

State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin 150040, China.

出版信息

Plants (Basel). 2025 May 19;14(10):1527. doi: 10.3390/plants14101527.

Abstract

NAC transcription factors are a kind of plant specific transcription factor widely distributed in plants, and they play an important role in the process of plant growth and development. According to the transcriptome data, a transcription factor with typical NAC characteristics was isolated from (common name "Dahurian larch"), that we named . The length of the coding sequence (CDS) was 1164 bp, encoding 387 amino acids. The LoNAC5 protein harbors a NAM (NAC family) domain at the 14-139 aa region of its N-terminus and an activation domain at the 324-364 aa region of the C-terminus. Phylogenetic tree analysis revealed that belonged to the ATNAC3 subgroup. Cis-acting element analysis showed that there were multiple plant stress-resistance-related elements on the promoter of , including hormone and light responsiveness elements. was localized in the nucleus by injection transformation of tobacco leaves. Results suggested that the LoNAC5 protein is active as a homodimer and that it binds to the GATGTG motif. The results of RT-qPCR showed that is a highly expressed gene in , and the expression level is highest in 180-day needles. responded to various hormone treatments and was induced by drought and salt stress. The yeast phenotype test showed that overexpression of could make yeast grow better under drought and salt stress. It was speculated that might act in as a positive regulator of drought and salt tolerance.

摘要

NAC转录因子是一类广泛分布于植物中的植物特异性转录因子,它们在植物生长发育过程中发挥着重要作用。根据转录组数据,从兴安落叶松(俗名)中分离出一个具有典型NAC特征的转录因子,我们将其命名为。编码序列(CDS)长度为1164 bp,编码387个氨基酸。LoNAC5蛋白在其N端的14 - 139氨基酸区域含有一个NAM(NAC家族)结构域,在C端的324 - 364氨基酸区域含有一个激活结构域。系统发育树分析表明属于ATNAC3亚组。顺式作用元件分析表明,的启动子上有多个与植物抗逆相关的元件,包括激素和光响应元件。通过烟草叶片注射转化将定位在细胞核中。结果表明,LoNAC5蛋白作为同源二聚体具有活性,并且它与GATGTG基序结合。RT-qPCR结果表明,在兴安落叶松中是一个高表达基因,在180天龄的针叶中表达水平最高。对各种激素处理有响应,并受干旱和盐胁迫诱导。酵母表型试验表明,的过表达能使酵母在干旱和盐胁迫下生长得更好。推测在兴安落叶松中可能作为干旱和耐盐性的正调控因子发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71af/12114694/b36da866f6d4/plants-14-01527-g001.jpg

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