数字农科院2.0

Genome-Wide Identification and Expression Analysis of bHLH-MYC Family Genes from Mustard That May Be Important in Trichome Formation

文献类型: 外文期刊

作者: Jianzhong Li;Guoliang Li;Caishuo Zhu;Shaoxing Wang;Shifan Zhang;Fei Li;Hui Zhang;Rifei Sun;Lingyun Yuan;Guohu Chen;Xiaoyan Tang;Chenggang Wang;Shujiang Zhang

作者机构:

关键词: bHLH;leaf trichome;MBW;mustard;MYC

期刊名称: Plants

ISSN: 2223-7747

年卷期: 2025 年 14 卷 2 期

页码:

收录情况: SCIE(2025版)

摘要: The trichomes of mustard leaves have significance due to their ability to combat unfavorable external conditions and enhance disease resistance. It was demonstrated that the MYB-bHLH-WD40 (MBW) ternary complex consists of MYB, basic Helix-Loop-Helix (bHLH), and WD40-repeat (WD40) family proteins and plays a key role in regulating trichome formation and density. The bHLH gene family, particularly the Myelocytomatosis (MYC) proteins that possess the structural bHLH domain (termed bHLH-MYC), are crucial to the formation and development of leaf trichomes in plants. bHLH constitutes one of the largest families of transcription factors in eukaryotes, of which MYC is a subfamily member. However, studies on bHLH-MYC transcription factors in mustard have yet to be reported. In this study, a total of 45 bHLH-MYC transcription factors were identified within the Brassica juncea genome, and a comprehensive series of bioinformatic analyses were conducted on their structures and properties: an examination of protein physicochemical properties, an exploration of conserved structural domains, an assessment of chromosomal positional distributions, an analysis of the conserved motifs, an evaluation of the gene structures, microsynteny analyses, three-dimensional structure prediction, and an analysis of sequence signatures. Finally, transcriptome analyses and a subcellular localization examination were performed. The results revealed that these transcription factors were unevenly distributed across 18 chromosomes, showing relatively consistent conserved motifs and gene structures and high homology. The final results of the transcriptome analysis and gene annotation showed a high degree of variability in the expression of bHLH-MYC transcription factors. Five genes that may be associated with trichome development (BjuVA09G22490, BjuVA09G13750, BjuVB04G14560, BjuVA05G24810, and BjuVA06G44820) were identified. The subcellular localization results indicated that the transcription and translation products of these five genes were expressed in the same organelle: the nucleus. This finding provides a basis for elucidating the roles of bHLH-MYC family members in plant growth and development, and the molecular mechanisms underlying trichome development in mustard leaves.

分类号:

  • 相关文献

[1]MBW复合体在植物花青素合成途径中的研究进展. 高国应,伍小方,张大为,周定港,张凯旋,严明理. 2020

[2]拟南芥花青素合成途径重要转录因子的研究进展. 洪雪,张少斌,徐江,崔月. 2014

[3]植物bHLH转录因子家族的功能研究进展. 刘晓月,王文生,傅彬英. 2011

[4]甜菜BvBHLH92基因组织表达及亚细胞定位研究. 王宇光,李海英. 2017

[5]一个大豆脱水胁迫响应的bHLH类转录因子的克隆及功能分析. 陈李淼,沙爱华,张婵娟,单志慧,张晓娟,陈水莲,朱晓玲,刘宝红,祁琳. 2013

[6]植物bHLH转录因子研究进展. 刘文文,李文学. 2013

[7]绿豆bHLH转录因子家族的鉴定与生物信息学分析. 陈红霖,胡亮亮,王丽侠,王素华,程须珍. 2017

[8]MBW复合体在植物花青素合成途径中的研究进展. 高国应,伍小方,张大为,周定港,张凯旋,严明理. 2019

[9]玉米转录因子ABP7响应植物激素的表达分析. 宋丹丹,,王银晓,,温洪涛,,赵 军. 2019

[10]玉米bHLH类转录因子ABP7的启动子克隆及其活性分析. 王银晓,赵军. 2015

[11]苦荞bHLH93转录因子响应铝胁迫的功能研究. 刘桐,王志荣,李伟,刘洋,王祥儒,赖弟利,何毓琦,张凯旋,赵振军,周美亮. 2024

[12]New host resistances in Brassica napus and Brassica juncea from Australia, China and India: Key to managing Sclerotinia stem rot (Sclerotinia sclerotiorum) without fungicides. Barbetti, M. J.,Li, C. X.,You, M. P.,Barbetti, M. J.,You, M. P.,Banga, S. S.,Banga, S. K.,Sandhu, P. S.,Singh, D.,Singh, R.,Liu, S. Y..

[13]New host resistances to Pseudocercosporella capsellae and implications for white leaf spot management in Brassicaceae crops. Gunasinghe, Niroshini,You, Ming Pei,Barbetti, Martin J.,Barbetti, Martin J.,Li, Xi Xiang,Banga, Surinder S.,Banga, Shashi K..

[14]Valuable New Resistances Ensure Improved Management of Sclerotinia Stem Rot (Sclerotinia sclerotiorum) in Horticultural and Oilseed Brassica Species. You, Ming Pei,Uloth, Margaret B.,Barbetti, Martin J.,You, Ming Pei,Uloth, Margaret B.,Barbetti, Martin J.,You, Ming Pei,Barbetti, Martin J.,Li, Xi Xiang,Banga, Surinder S.,Banga, Shashi K..

[15]Effect of Microwave Treatment on the Efficacy of Expeller Pressing of Brassica napus Rapeseed and Brassica juncea Mustard Seeds. Niu, Yanxing,Wan, Chuyun,Guo, Mian,Huang, Fenghong,Niu, Yanxing,Rogiewicz, Anna,Slominski, Bogdan A..

[16]Mapping and Gene Mining of the Lobed Leaf Trait in Mustard. Li, Zhijie,Song, Jiangping,Zhang, Xiaohui,Jia, Huixia,Xu, Chu,Xu, Siwen,Li, Jiajia,Wang, Haiping,Yang, Wenlong. 2025

[17]Jasmonate-responsive transcription factors regulating plant secondary metabolism. Zhou, Meiliang,Zhou, Meiliang,Memelink, Johan.

[18]Anthocyanin biosynthesis regulation of DhMYB2 and DhbHLH1 in Dendrobium hybrids petals. Li, Chonghui,Ding, Ling,Huang, Mingzhong,Huang, Surong,Yang, Guangsui,Yin, Junmei,Qiu, Flan,Ding, Ling,Li, Chonghui,Huang, Mingzhong,Huang, Surong,Yang, Guangsui,Yin, Junmei.

[19]MeJA-responsive bHLH transcription factor LjbHLH7 regulates cyanogenic glucoside biosynthesis in Lotus japonicus. Chen, Cheng,Liu, Fu,Zhang, Kaixuan,Niu, Xiaolei,Zhao, Hui,Liu, Qiuxu,Georgiev, Milen, I,Xu, Xiaoheng,Zhang, Xinquan,Zhou, Meiliang. 2022

[20]GhPRE1A promotes cotton fibre elongation by activating the DNA-binding bHLH factor GhPAS1. Wu, Huanhuan,Fan, Liqiang,Guo, Mengzhen,Liu, Le,Liu, Lisen,Hou, Liyong,Zheng, Lei,Qanmber, Ghulam,Lu, Lili,Zhang, Jie,Li, Fuguang,Yang, Zuoren. 2023

作者其他论文 更多>>