干旱胁迫下大苞萱草bHLH转录因子家族鉴定与分析  被引量:5

Identification and analysis of bHLH transcription factor gene family in Hemerocallis middendorffii under drought stress

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作  者:陈丽飞[1] 刘云怡慧 李嘉峻 白云 孟缘 周蕴薇 CHEN Li-fei;LIU Yun-yi-hui;LI Jia-jun;BAI Yun;MENG Yuan;ZHOU Yun-wei(College of Forestry and Grassland Science,Jilin Agricultural University,Changchun 130118,China;College of Horticulture,Jilin Agricultural University,Changchun 130118,China)

机构地区:[1]吉林农业大学林学与草学学院,长春130118 [2]吉林农业大学园艺学院,长春130118

出  处:《西南农业学报》2023年第5期1027-1038,共12页Southwest China Journal of Agricultural Sciences

基  金:长春市科技局项目(21ZGN08);吉林农业大学科研启动基金项目(202023298);吉林省科技厅自然科学基金项目(20200201029JC);吉林省科技厅重点研发项目(20210202081NC)。

摘  要:【目的】为探究大苞萱草bHLH基因家族成员特性,基于对干旱胁迫下大苞萱草叶和根转录组测序结果,鉴定并分析大苞萱草bHLH基因家族成员。【方法】利用生物信息学方法对大苞萱草bHLH转录因子家族基因进行系统发育、理化性质、二级结构、保守结构域及基因表达等分析。【结果】共鉴定出55个大苞萱草bHLH家族基因并分为11个亚族;bHLH蛋白理化性质差异较大,总平均亲水性为负值,均为亲水性蛋白;亚细胞定位预测大苞萱草bHLH蛋白主要分布在细胞核中;基因表达分析表明,叶中有26个上调基因,26个下调基因,根中有32个上调基因,22个下调基因,差异基因HmbHLH50的表达量变化显著,可能与大苞萱草的抗旱能力相关。【结论】本研究为挖掘bHLH转录因子家族基因的功能奠定基础,也为深入解析大苞萱草的抗旱机制提供理论依据。【Objective】In order to investigate the characteristics of the bHLH gene family members of Hemerocallis middendorffii, the study was conducted to identify and analyze the bHLH gene family members in H. middendorffii based on the results of transcriptome sequencing of leaves and roots of H. middendorffii under drought stress. 【Method】 The phylogeny, physicochemical properties, secondary structure, conserved domain and gene expression analysis of bHLH transcription factor family genes in H. middendorffii were analyzed through bioinformatics method. 【Result】A total of 55 bHLH family genes were identified and divided into 11 subfamilies;The physicochemical properties of bHLH protein were different and the total average hydrophilicity was negative, and all of them were hydrophilic protein;The subcellular localization prediction of bHLH protein were mainly distributed in the nucleus;Gene expression analysis showed that there were 26 up-regulated genes and 26 down-regulated genes in leaves, 32 up-regulated genes and 22 down-regulated genes in roots. The expression of differential gene HmbHLH50 changed significantly, which may be related to drought-resistance ability of H. middendorffii. 【Conclusion】All these results provide a reference for excavating functions of bHLH transcription factor family genes and for in-depth understanding of drought resistance mechanism of H. middendorffii.

关 键 词:大苞萱草 干旱胁迫 bHLH基因家族 

分 类 号:S682.1[农业科学—观赏园艺]

 

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