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菊花假定HD-Zip I和II基因的全转录组范围调查及表达谱分析

Transcriptome-Wide Survey and Expression Profile Analysis of Putative Chrysanthemum HD-Zip I and II Genes.

作者信息

Song Aiping, Li Peiling, Xin Jingjing, Chen Sumei, Zhao Kunkun, Wu Dan, Fan Qingqing, Gao Tianwei, Chen Fadi, Guan Zhiyong

机构信息

College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Genes (Basel). 2016 May 17;7(5):19. doi: 10.3390/genes7050019.

Abstract

The homeodomain-leucine zipper (HD-Zip) transcription factor family is a key transcription factor family and unique to the plant kingdom. It consists of a homeodomain and a leucine zipper that serve in combination as a dimerization motif. The family can be classified into four subfamilies, and these subfamilies participate in the development of hormones and mediation of hormone action and are involved in plant responses to environmental conditions. However, limited information on this gene family is available for the important chrysanthemum ornamental species (Chrysanthemum morifolium). Here, we characterized 17 chrysanthemum HD-Zip genes based on transcriptome sequences. Phylogenetic analyses revealed that 17 CmHB genes were distributed in the HD-Zip subfamilies I and II and identified two pairs of putative orthologous proteins in Arabidopsis and chrysanthemum and four pairs of paralogous proteins in chrysanthemum. The software MEME was used to identify 7 putative motifs with E values less than 1e-3 in the chrysanthemum HD-Zip factors, and they can be clearly classified into two groups based on the composition of the motifs. A bioinformatics analysis predicted that 8 CmHB genes could be targeted by 10 miRNA families, and the expression of these 17 genes in response to phytohormone treatments and abiotic stresses was characterized. The results presented here will promote research on the various functions of the HD-Zip gene family members in plant hormones and stress responses.

摘要

同源异型域-亮氨酸拉链(HD-Zip)转录因子家族是植物界特有的关键转录因子家族。它由一个同源异型域和一个亮氨酸拉链组成,二者共同作为二聚化基序。该家族可分为四个亚家族,这些亚家族参与激素的合成及激素作用的调控,并涉及植物对环境条件的响应。然而,对于重要的观赏菊花品种(菊花),关于这个基因家族的信息有限。在此,我们基于转录组序列鉴定了17个菊花HD-Zip基因。系统发育分析表明,17个CmHB基因分布在HD-Zip亚家族I和II中,并在拟南芥和菊花中鉴定出两对假定的直系同源蛋白,在菊花中鉴定出四对旁系同源蛋白。使用MEME软件在菊花HD-Zip因子中鉴定出7个E值小于1e-3的假定基序,根据基序组成可将它们明确分为两组。生物信息学分析预测,8个CmHB基因可能被10个miRNA家族靶向,并对这17个基因在植物激素处理和非生物胁迫下的表达进行了表征。本文的研究结果将推动HD-Zip基因家族成员在植物激素和胁迫响应中各种功能的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41af/4880839/04c02427a783/genes-07-00019-g001.jpg

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