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DNA甲基转移酶家族基因的全基因组特征表明GhDMT6提高了棉花对盐和干旱的耐受性。

Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton.

作者信息

Yang Xiaomin, Bai Zhigang, He Yunxin, Wang Ning, Sun Liangqing, Li Yongqi, Yin Zujun, Wang Xiaoge, Zhang Binglei, Han Mingge, Lu Xuke, Chen Xiugui, Wang Delong, Wang Junjuan, Wang Shuai, Guo Lixue, Chen Chao, Feng Keyun, Ye Wuwei

机构信息

Institute of Cotton Research of Chinese Academy of Agricultural Sciences / Research Base, State Key Laboratory of Cotton Bio-breeding and Integrated Utilization, School of Agricultural Sciences, Zhengzhou University, Anyang, Henan, 455000, China.

Cash Crop Research Institute of Jiangxi Province, Jiujiang, Jiangxi, 332105, China.

出版信息

BMC Plant Biol. 2024 Apr 23;24(1):312. doi: 10.1186/s12870-024-04985-x.

Abstract

BACKGROUND

DNA methylation is an important epigenetic mode of genomic DNA modification and plays a vital role in maintaining epigenetic content and regulating gene expression. Cytosine-5 DNA methyltransferase (C5-MTase) are the key enzymes in the process of DNA methylation. However, there is no systematic analysis of the C5-MTase in cotton so far, and the function of DNMT2 genes has not been studied.

METHODS

In this study, the whole genome of cotton C5-MTase coding genes was identified and analyzed using a bioinformatics method based on information from the cotton genome, and the function of GhDMT6 was further validated by VIGS experiments and subcellular localization analysis.

RESULTS

33 C5-MTases were identified from three cotton genomes, and were divided into four subfamilies by systematic evolutionary analysis. After the protein domain alignment of C5-MTases in cotton, 6 highly conserved motifs were found in the C-terminus of 33 proteins involved in methylation modification, which indicated that C5-MTases had a basic catalytic methylation function. These proteins were divided into four classes based on the N-terminal difference, of which DNMT2 lacks the N-terminal regulatory domain. The expression of C5-MTases in different parts of cotton was different under different stress treatments, which indicated the functional diversity of cotton C5-MTase gene family. Among the C5-MTases, the GhDMT6 had a obvious up-regulated expression. After silencing GhDMT6 with VIGS, the phenotype of cotton seedlings under different stress treatments showed a significant difference. Compared with cotton seedlings that did not silence GhDMT6, cotton seedlings silencing GhDMT6 showed significant stress resistance.

CONCLUSION

The results show that C5-MTases plays an important role in cotton stress response, which is beneficial to further explore the function of DNMT2 subfamily genes.

摘要

背景

DNA甲基化是基因组DNA修饰的一种重要表观遗传模式,在维持表观遗传内容和调节基因表达中起着至关重要的作用。胞嘧啶-5 DNA甲基转移酶(C5-MTase)是DNA甲基化过程中的关键酶。然而,迄今为止尚未对棉花中的C5-MTase进行系统分析,且DNMT2基因的功能尚未得到研究。

方法

在本研究中,基于棉花基因组信息,采用生物信息学方法对棉花C5-MTase编码基因的全基因组进行了鉴定和分析,并通过VIGS实验和亚细胞定位分析进一步验证了GhDMT6的功能。

结果

从三个棉花基因组中鉴定出33个C5-MTase,并通过系统进化分析将其分为四个亚家族。对棉花中C5-MTase进行蛋白质结构域比对后,在参与甲基化修饰的33种蛋白质的C末端发现了6个高度保守的基序,这表明C5-MTase具有基本的催化甲基化功能。这些蛋白质根据N末端差异分为四类,其中DNMT2缺乏N末端调节结构域。在不同胁迫处理下,棉花不同部位C5-MTase的表达存在差异,这表明棉花C5-MTase基因家族具有功能多样性。在C5-MTase中,GhDMT6的表达明显上调。用VIGS沉默GhDMT6后,不同胁迫处理下棉花幼苗的表型表现出显著差异。与未沉默GhDMT6的棉花幼苗相比,沉默GhDMT6的棉花幼苗表现出显著的抗逆性。

结论

结果表明,C5-MTase在棉花胁迫响应中起重要作用,这有利于进一步探索DNMT2亚家族基因的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e35/11036760/1ee462eb219e/12870_2024_4985_Fig1_HTML.jpg

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