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甘蓝型油菜BoBZR1家族基因的全基因组分析及转录组分析

Genome-wide analysis of the BoBZR1 family genes and transcriptome analysis in Brassica oleracea.

作者信息

Ullah Muhammad Asad, Hamza Muhammad, Gull Rozia, Shafiq Muhammad, Wahid Abdul, Ahmad Shahab, Ahmadi Tayebeh, Rahimi Mehdi

机构信息

Department of Plant Breeding and Genetics, Faculty of Agricultural Sciences, University of the Punjab, PO BOX 54590, Lahore, Pakistan.

Department of Plant Breeding and Genetics, Faculty of Sciences, PMAS Arid Agriculture University, PO BOX 46000, Rawalpindi, Pakistan.

出版信息

Sci Rep. 2025 May 3;15(1):15475. doi: 10.1038/s41598-025-99487-7.

Abstract

The BRASSINAZOLE-RESISTANT 1 genes play a crucial role as key regulators in Brassinosteroid (BR) signaling, which affects various plant developmental and stress-responsive aspects. Understanding regulatory mechanisms via BZR1 in modulating target genes has become a main point in research on plant BR signaling networks. Despite this, the BZR1 functioning in B. oleracea is not elucidated. A complete genome-wide analysis identified 12 BZR1 genes in B. oleracea, categorized into three groups based on their gene motif and structural features. These BoBZR1s were found on eight different chromosomes. Synteny analysis between B. oleracea, Arabidopsis, and potato provided perception into their evolutionary characteristics. Promoter regions of BoBZR1 family genes in B. oleracea have shown specific cis-elements associated with hormones, stress, and plant development. The expression analysis toward cuticular wax biosynthesis revealed that BoBZR1-1, BoBZR1-6, BoBZR1-7, and BoBZR1-10 were upregulated in response to cuticular wax biosynthesis. Differential expressions of BoBZR1 genes were observed for all seven different tested tissues. The whole study involved systematic characterization of the BoBZR1 family, and expression patterns, in BR signaling and its extensive involvement in developmental processes in B. oleracea. Results establish a theoretical foundation for deeper investigation of BoBZR1 structure and functions in B. oleracea, specifically toward regulating plant stress.

摘要

抗油菜素唑1基因作为油菜素类固醇(BR)信号传导中的关键调节因子发挥着至关重要的作用,该信号传导影响植物发育和应激反应的各个方面。通过BZR1了解调控靶基因的机制已成为植物BR信号网络研究的重点。尽管如此,BZR1在甘蓝中的功能尚未阐明。一项完整的全基因组分析在甘蓝中鉴定出12个BZR1基因,根据其基因基序和结构特征分为三组。这些BoBZR1基因分布在八条不同的染色体上。甘蓝、拟南芥和马铃薯之间的共线性分析有助于了解它们的进化特征。甘蓝中BoBZR1家族基因的启动子区域已显示出与激素、胁迫和植物发育相关的特定顺式元件。对表皮蜡质生物合成的表达分析表明,BoBZR1-1、BoBZR1-6、BoBZR1-7和BoBZR1-10在表皮蜡质生物合成过程中上调。在所有七个不同的测试组织中均观察到BoBZR1基因的差异表达。整个研究涉及对甘蓝中BoBZR1家族的系统表征、表达模式,以及其在BR信号传导中的作用及其在甘蓝发育过程中的广泛参与。研究结果为深入研究甘蓝中BoBZR1的结构和功能,特别是在调节植物胁迫方面,奠定了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/904e/12049542/fd5d74b0257d/41598_2025_99487_Fig1_HTML.jpg

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