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杜仲Trihelix基因家族的全基因组鉴定与表达模式分析

[Genome-wide identification and expression pattern analysis of Eucommia ulmoides Trihelix gene family].

作者信息

Liu Jun, Kou Jie-Feng, Lian Cong-Long, Ma Rui, Feng Wei-Meng, Zhang Bao, Lan Jin-Xu, Chen Sui-Qing

机构信息

School of Pharmacy, Henan University of Chinese Medicine Zhengzhou 450046, China Henan Key Laboratory of Chinese Medicine Resources and Chemistry Zhengzhou 450046, China.

Changjiang Basin Ecology and Environment Monitoring and Scientific Research Center, Changjiang Basin Ecology and Environment Administration, Ministry of Ecology and Environment Wuhan 430010, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2024 Nov;49(22):6093-6106. doi: 10.19540/j.cnki.cjcmm.20240815.102.

Abstract

Trihelix transcription factors play important roles in plant light responses, growth and development, and stress responses. However, Trihelix has not yet been reported in Eucommia ulmoides. In this study, bioinformatics methods were used to comprehensively identify and analyze the expression patterns of the Trihelix gene family in E. ulmoides, aiming to provide a basis for further functional studies of EuGTs genes. A total of 9 Trihelix gene family members were identified in E. ulmoides, encoding proteins with 339 to 883 amino acids, with isoelectric points ranging from 5.13 to 9.39 and relative molecular weights between 36 992.06 and 97 871.61. Subcellular localization results showed that only EuGT-2 was localized in chloroplasts, while the others were located in the nucleus. The Trihelix gene family was categorized into six subfamilies: GT-1, GT-2, SH4, SIP1, GTγ, and GTδ. EuGTs were distributed among three subfamilies: SH4, GT-1, and GT-2, containing 1, 6, and 2 Trihelix proteins, respectively, with 2 to 17 exons. The promoters of EuGTs contained various cis-acting elements related to hormones, stress, photoperiod, and growth and development. Collinearity analysis revealed 5 collinear gene pairs between E. ulmoides and Arabidopsis thaliana, and 14 collinear gene pairs between E. ulmoides and Populus. Expression pattern analysis showed that EuGTs exhibited tissue-specific expression: EuGT-1, EuGT-2 had the highest expression levels in leaves, EuGT-4, EuGT-6, EuGT-9 had the highest transcriptional levels in marginal peel, and EuGT-5、EuGT-8 were predominantly expressed in the xylem. As leaves developed, EuGTs showed a trend of asynchronous changes. No significant differences in EuGTs expression were observed between male and female flowers, with high expression levels mainly during the induction stage of flowering. The qRT-PCR analysis indicated that most EuGTs genes were most highly expressed in the leaves of E. ulmoides, while EuGT-5 was highly expressed in the stems. Under 200 mmol·L~(-1) NaCl treatment, most EuGTs genes exhibited an initial increase followed by a decrease in expression, significantly responding to salt stress. This study provides important genetic resources for further exploration of EuGTs gene functions and germplasm innovation in E. ulmoides.

摘要

三螺旋转录因子在植物光反应、生长发育及胁迫反应中发挥着重要作用。然而,杜仲中尚未见三螺旋转录因子的报道。本研究运用生物信息学方法,对杜仲三螺旋基因家族进行全面鉴定及表达模式分析,旨在为杜仲EuGTs基因的进一步功能研究提供依据。共鉴定出9个杜仲三螺旋基因家族成员,编码的蛋白质含339至883个氨基酸,等电点在5.13至9.39之间,相对分子质量在36 992.06至97 871.61之间。亚细胞定位结果显示,仅EuGT - 2定位于叶绿体,其他成员均定位于细胞核。三螺旋基因家族分为6个亚家族:GT - 1、GT - 2、SH4、SIP1、GTγ和GTδ。杜仲EuGTs分布于3个亚家族:SH4、GT - 1和GT - 2,分别含1、6和2个三螺旋蛋白,外显子数量为2至17个。EuGTs的启动子含有多种与激素、胁迫、光周期以及生长发育相关的顺式作用元件。共线性分析表明,杜仲与拟南芥之间有5对共线基因对,与杨树之间有14对共线基因对。表达模式分析显示,EuGTs呈现组织特异性表达:EuGT - 1、EuGT - 2在叶片中表达量最高,EuGT - 4、EuGT - 6、EuGT - 9在边缘皮中转录水平最高,EuGT - 5、EuGT - 8主要在木质部表达。随着叶片发育,EuGTs呈现异步变化趋势。雄花和雌花中EuGTs表达无显著差异,主要在开花诱导期表达量较高。qRT - PCR分析表明,多数EuGTs基因在杜仲叶片中表达量最高,而EuGT - 5在茎中高表达。在200 mmol·L⁻¹ NaCl处理下,多数EuGTs基因表达先升高后降低,对盐胁迫有显著响应。本研究为进一步探究杜仲EuGTs基因功能及种质创新提供了重要的遗传资源。

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