首页|基于全长转录组测序的掌叶大黄bZIP基因家族鉴定分析

基于全长转录组测序的掌叶大黄bZIP基因家族鉴定分析

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bZIP转录因子在调控植物生长发育、次生代谢产物合成以及胁迫响应中发挥着重要作用。本研究基于全长转录组测序分析,系统筛选掌叶大黄(Rheum palmatum)bZIP基因家族,分析其编码蛋白的理化性质、保守基序及系统进化等特性,利用RNA-seq进行基因组织表达分析和茉莉酸甲酯(MeJA)处理基因表达分析。结果表明,掌叶大黄bZIP基因家族有63个成员(RpbZIP1~RpbZIP63);根据其与拟南芥(Arabidopsis thaliana)bZIP系统发育关系被分为A~I和K、S等11个亚族;RpbZIPs基因主要编码不稳定的亲水蛋白,均定位于细胞核;RpbZIPs蛋白二级结构主要为α螺旋和无规卷曲。基于RNA-seq数据,筛选出掌叶大黄根及根茎中高表达且响应MeJA的RbZIP16、RpbZIP17、RpbZIP61等6个基因,qPCR验证了其中4个与转录组测序表达结果一致。本研究系统分析掌叶大黄bZIP基因家族,为后续进一步研究基因功能及大黄次生代谢转录调控机制提供了科学依据。
Identification and analysis of the bZIP gene family in Rheum palmatum based on full-length transcriptome sequencing
bZIP transcription factors play crucial roles in the regulation of plant growth and development, biosynthesis of secondary metabolites, and responses to various stresses. In this study, the bZIP gene family was systematically identified from Rheum palmatum using full-length transcriptome sequencing data. Bioinformatic tools were used to analyze the physicochemical properties, motif compositions, and evolutionary relationships of the bZIPs. RNA-seq was used for tissue expression analysis and to evaluate responses to MeJA (methyl jasmonate) treatment. Overall, we found that R. palmatum had 63 bZIP gene family members, namely RpbZIP1~RpbZIP63, which could be divided into 11 subfamilies, i.e., A~I, K and S, according to their phylogenetic relationship with Arabidopsis. The RpbZIPs gene mainly encodes unstable hydrophilic proteins, all of which were predicted to localize in the nucleus. The protein secondary structure was mainly α helix and random curling. RNA-Seq revealed that six genes, including RbZIP16, RpbZIP17, and RpbZIP61, etc. were highly expressed in the roots and rhizomes of R. palmatum, as well as being responsive to MeJA treatment. qPCR verified that four of them were consistent with the expression level of RNA-Seq results. This study systematically analyzed the bZIP gene family of R. palmatum, providing a scientific basis for further studies on gene function and the transcriptional regulation mechanisms of secondary metabolism of rhubarb.

gene expressionmethyl jasmonatephylogenetic analysisrhubarbtranscription factors

唐璟、杜桥、胡晓晨、李依民、高静、彭亮、张岗

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陕西中医药大学药学院/陕西省秦岭中草药应用开发工程技术研究中心, 陕西西安 712046

陕西中医药大学省部共建特色秦药资源研究开发国家重点实验室(培育), 陕西咸阳 712083

陕西中医药大学陕西省中医药管理局"秦药"研发重点实验室, 陕西西安 712046

基因表达 茉莉酸甲酯 系统进化分析 大黄 转录因子

国家自然科学基金陕西中医药大学新进博士启动经费项目陕西中医药大学学科创新团队项目

82104334202209102019-QN01

2024

草业科学
中国草原学会 兰州大学草地农业科技学院

草业科学

CSTPCD北大核心
影响因子:0.854
ISSN:1001-0629
年,卷(期):2024.41(3)
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