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苹果β-微管蛋白基因家族鉴定及表达特性分析

黄慧玲 焦健 王苗苗 刘昱 赵玉洁 万然 申亚文 张恒涛 张坤玺 郑先波 王延翔 王悦 宁芹芹 李明 郝鹏博 丛柳 白团辉 史江莉

果树学报2025,Vol.42Issue(4):693-706,14.
果树学报2025,Vol.42Issue(4):693-706,14.DOI:10.13925/j.cnki.gsxb.20240701

苹果β-微管蛋白基因家族鉴定及表达特性分析

Identification and expression characterization of apple β-tubulin gene family in apple

黄慧玲 1焦健 1王苗苗 1刘昱 1赵玉洁 1万然 1申亚文 1张恒涛 2张坤玺 1郑先波 1王延翔 1王悦 1宁芹芹 1李明 1郝鹏博 1丛柳 1白团辉 1史江莉1

作者信息

  • 1. 河南农业大学园艺学院,郑州 450046||河南省苹果种质创新与利用工程研究中心,郑州 450046
  • 2. 中国农业科学院郑州果树研究所,郑州 450009
  • 折叠

摘要

Abstract

[Objective]Microtubule is composed of α-and β-tubulin heterodimers.It is known that α-and β-tubulins are encoded with large family genes and selected expression of α-and β-tubulin family genes plays key roles in regulating various biological processes,including plant growth and develop-ment,stress responses and signaling transduction.However,little is known about apple tubulin family genes and their potential functions.Therefore,the present study was to identify the apple β-tubulin fami-ly genes and to determine the candidate β-tubulin genes involved in regulating apple dwarfing.[Meth-ods]Using Arabidopsis thaliana β-tubulin amino acid sequences as reference,apple β-tubulin family genes were identified from the apple reference genome GDDH13 v1.1.In the following,bioinformatic analysis was conducted to dissect the physicochemical properties,chromosome localization,phylogenet-ic relationships,gene structure,conserved motifs,collinearity,three-dimensional structure prediction and cis-acting elements in their promoter regions of the identified apple β-tubulin family genes.Differ-ent tissues including mature and young leaves,xylem,phloem and stem tips of column apple Runtai No.1 were collected as materials to analyze the tissue expression patterns of apple β-tubulin family genes through quantitative real-time PCR(RT-qPCR).To screen the candidate β-tubulin genes involved in regulating apple dwarfing,the relative expressions of apple β-tubulin family genes in the shoot apex of three apple dwarfing rootstocks(T337,Pamajul and JM7)and three common rootstocks(Malus prunifolia,M.micromalus and M.hupehensis)were compared by RT-qPCR.[Results]A total of 13 ap-ple β-tubulin sequences were identified from the apple genome.The lengths of these 13 apple β-tubu-lins were from 444 aa to 450 aa,and the molecular weights ranged from 49.92 ku to 50.46 ku.The 13 apple β-tubulin genes were randomly distributed on 11 apple chromosomes,and fragment replication events were the main factor attributed to the expansion of apple β-tubulin family genes.Furthermore,phylogenetic tree analysis revealed that apple β-tubulin family can be divided into 5 subfamilies:ClassⅠ had 6 members with nomenclature of MdTUB1 to MdTUB6,and MdTUB10 and MdTUB11 were classified into Class Ⅱ.Except for Class Ⅲ having only one member of MdTUB9,Class Ⅳ and ClassⅤ both had 2 members with nomenclatures of MdTUB7 and MdTUB8,MdTUB12 and MdTUB13 sep-arately.Multiple sequence alignments showed that the amino acid sequences of the apple β-tubulins were highly conserved at the N-terminus,but only displayed slight differences at the C-terminus,which was also corroborated by three-dimensional structure prediction of apple β-tubulin family proteins,sug-gesting that the C-terminus differences might correlate with posttranslational modifications.Gene struc-ture analysis showed that all 13 apple β-tubulin family genes contained 3 exons and 2 introns,and the amino acid sequences contained 10 conserved motifs,indicating that the functions of apple β-tubulin family members were probably highly conserved.The cis-acting element analysis of the promoter re-gion showed that the abscisic acid responsive element,the methyl jasmonate responsive element and the anaerobic induction element were intensively distributed in the promoters of apple β-tubulin family genes.Furthermore,apple β-tubulin family genes displayed certain tissue expression specificities in the column apple Runtai No.1 variety,for instance,MdTUB2,MdTUB6,MdTUB9,MdTUB10 and Md-TUB11 were highly expressed in the phloem and MdTUB3 and MdTUB5 were mainly expressed in the young leaves.The relative expression of MdTUB1,MdTUB4 and MdTUB12 in xylems,young leaves and stem tips were significantly higher than in mature leaves and phloem.MdTUB8 was widely ex-pressed in the detected tissues except for mature leaves,and MdTUB7 was highly expressed in young leaves and stem tips.In addition,the expression of MdTUB13 in stem tips were significantly higher than that in other detected tissues.This suggested that different tissues may selectively express different apple β-tubulin family genes to facilitate their growth and development.Furthermore,we found that the expression of MdTUB4 in the three common rootstocks(M.prunifolia,M.micromalus and M.hupehen-sis)was significantly higher than that in dwarfing rootstocks(T337,Pamajul and JM7),suggesting that MdTUB4 may positively regulate apple dwarfing.However,the expression pattern of MdTUB12 dis-played opposite so that the relative expression of MdTUB12 was significantly higher in dwarfing root-stocks,suggesting MdTUB12 might negatively participate in regulating apple dwarfing.Apart from the MdTUB4 and MdTUB12,similar expression patterns were not observed with other apple β-tubulin fami-ly genes.These results indicated that MdTUB4 and MdTUB12 might be the candidate β-tubulin dwarf-ing genes involved in regulating apple dwarfing.[Conclusion]A total of 13 β-tubulin family genes were identified from the whole apple genome.Different apple tissues may selectively express specific β-tubulin genes to facilitate its growth and development.Furthermore,the selective expression of β-tubu-lin family genes is highly correlated with apple dwarfing and MdTUB4 and MdTUB12 might be the key genes involved in regulating apple dwarfing.The results will provide a theoretical basis for further re-search on the regulatory functions of apple dwarfing by β-tubulin genes.

关键词

苹果/微管蛋白/基因家族/矮生

Key words

Apple/β-tubulins/Gene families/Dwarfing

分类

农业科技

引用本文复制引用

黄慧玲,焦健,王苗苗,刘昱,赵玉洁,万然,申亚文,张恒涛,张坤玺,郑先波,王延翔,王悦,宁芹芹,李明,郝鹏博,丛柳,白团辉,史江莉..苹果β-微管蛋白基因家族鉴定及表达特性分析[J].果树学报,2025,42(4):693-706,14.

基金项目

河南省自然科学基金青年科学基金项目(242300421568) (242300421568)

国家自然科学基金青年科学基金项目(32402496) (32402496)

河南省重大科技专项(221100110400) (221100110400)

河南省大宗水果产业技术体系(HARS-22-09-Z2) (HARS-22-09-Z2)

河南省中央引导地方科技发展资金项目(Z20241471014) (Z20241471014)

果树学报

OA北大核心

1009-9980

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