首页|百香果(Passiflora edulis)R2R3-MYB基因家族的结构和功能分析

百香果(Passiflora edulis)R2R3-MYB基因家族的结构和功能分析

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[目的]探究R2R3-MYB转录因子在代谢、发育等多种生物学过程中发挥的调控作用.对百香果R2R3-MYB基因家族进行表达分析并探究其在花果发育过程中的调控机制,对深入研究R2R3-MYB转录因子在百香果中的生物学作用中具有重要意义.[方法]基于百香果全基因组数据,通过HMM搜索对R2R3-MYB家族成员进行筛选鉴定,并利用实时荧光定量PCR分析其在百香果花不同组织中的表达模式.[结果]从百香果基因组中鉴定出99个R2R3-MYB基因,根据系统进化分析将其分为36个亚组.99个R2R3-PeMYB基因随机分布在9条百香果染色体上.基序和基因结构分析表明,R2R3-PeMYB在同一亚组中具有相对保守的结构特征.共线性分析表明,片段复制事件促进了百香果R2R3-MYB家族的扩张.基于转录组数据和qRT-PCR分析,发现R2R3-PeMYB基因在百香果花的不同组织的不同发育阶段中表现出差异的表达模式,说明R2R3-PeMYB基因在花不同组织和果实的发育过程中发挥重要作用,尤其是PeMYB62和PeMYB63在百香果果皮转色期的高表达,说明其可能参与百香果花青素的合成.同时8个R2R3-PeMYB基因在非生物胁迫(冷、热、盐和渗透压)下也表现出不同的反应,说明R2R3-PeMYB基因还受到非生物胁迫的诱导.[结论]鉴定了99个R2R3-PeMYB基因家族成员,发现其在百香果花果发育和胁迫诱导方面发挥重要作用,为今后研究百香果R2R3-MYB基因在花果发育中的功能和进化提供了有价值的线索.
Structure and function analysis of R2R3-MYB gene family from passion fruit(Passiflora edulis)
[Objective]The R2R3-MYB transcription factors(TFs)are widely involved in the regula-tion of various biological processes in plants,including primary and secondary metabolism,growth and development,and response to environmental factors and plant hormones.In this study,the expression of R2R3-MYB gene family in passion fruit was systematically analyzed and its regulatory mechanism dur-ing flower and fruit development was explored.[Methods]In this study,the hidden Markov Model pro-file(HMM)of the MYB binding domain(PF00249)was obtained from the Pfam database,which was used as the seed model for the HMMER search of candidate PeMYB genes from the passion fruit ge-nome in TBtools.The redundant sequences were removed manually.The SMART and the NCBI-CDD database were used to cross-check the presence of the MYB domain in candidate sequences.The physi-cochemical features of the potential MYB protein sequences,including molecular weight,theoretical isoelectric point(pI),and the number of amino acids were further analyzed using ExPASy.The MYB protein sequences of Arabidopsis were downloaded from the Plant Transcription Factor Database.Based on the alignment of the R2R3-MYB protein sequence of passion fruit and Arabidopsis thaliana,a neighbor-joining phylogenetic tree was constructed by MEGA.The conserved motifs,gene structure and chromosome location were analyzed with TBtools.We also predicted the putative miRNA target sites of PeMYB genes by the online psRNATarget Server.Eight PeMYB genes clustered with Arabidop-sis R2R3-MYB gene members from the above subgroups of phylogenetic trees were selected for qRT-PCR analysis under cold,heat,osmotic,and salt stress.In addition,the candidate PeMYB genes were an-alyzed by qRT-PCR analysis in the peel of passion fruit at different developmental stages after the polli-nation.[Results]A total of 99 R2R3-MYB genes were identified from passion fruit genome.The lengths of the protein sequences of PeMYB ranged from 113(PeMYB78)to 1013(PeMYB39)amino acids,and molecular weight(MWs)varied from 12.89 ku(PeMYB78)to 113.94 ku(PeMYB39).More-over,the theoretical pI of PeMYBs was from 4.73(PeMYB16)to 10.15(PeMYB76).According to the topological structure of the phylogenetic tree and the classification of AtMYBs,the 99 R2R3-PeMYBs were divided into 36 groups(P1-P36).Most subgroups contained the R2R3-MYB members from both passion fruit and Arabidopsis,suggesting that they might be derived from a common ancestor.The struc-tural analysis,including motifs and gene structure,illustrates that the R2R3-PeMYBs in the same sub-group have relative conserved structural features.The result showed that the number of exons varied from 1 to 13 in PeMYB genes.Most R2R3-PeMYB genes(53.3%)had similar distributions of three ex-ons and two introns and a few R2R3-PeMYBs(PeMYB58,PeMYB60,PeMYB82)contained 12 or more exons.Motif 1,motif 2,and motif 3 were located in the N-terminal of almost all R2R3-PeMYB protein sequences,which contain conserved tryptophan residues and are related to R2 and R3 domains.The R2R3-PeMYB genes were randomly distributed on 9 passion fruit chromosomes.Most genes were locat-ed at the distal ends of the chromosomes.Chromosome 1 had the maximum number of R2R3-MYB genes(28 genes,28.3%),followed by chromosome 6,which had 15(15.2%)genes.The gene duplica-tion event analysis revealed 37 pairs of segmentally duplicated genes and 7 pairs of tandemly duplicat-ed genes were identified in R2R3-PeMYBs.The six tandem duplication events were on chromosomes 1,2,4,5,and 6 and most segmental duplication events occurred on chromosome 1.Of the 99 genes,54(54.5%)produced 37 segmental duplication gene pairs suggesting that segmental duplication events contributed to the expansion of the R2R3-MYB family of passion fruit.Based on transcriptome data and qRT-PCR analysis,it was found that R2R3-PeMYB genes showed different expression patterns in different floral tissues at different developmental stages.Most of the R2R3-MYB genes(eg:PeMYB79 and PeMYB80)were expressed in the early development stage of floral tissues and showed a decreasing trend in the late development stages.A few genes showed high expression patterns throughout the devel-opment of different floral tissues.At all stages of ovule development,some R2R3-PeMYB genes,like PeMYB34 and PeMYB39,were highly expressed.In addition,the high expression of PeMYB62 and PeMYB63 in the peel color transformation period of passion fruit indicated that they may be involved in the anthocyanin synthesis pathway of passion fruit.Moreover,PeMYB62 and PeMYB63 genes were the targeted genes of Ped-miR828 family,and miR828 has been reported to be involved in the anthocyanin synthesis pathway.This further indicates that the two genes are likely to play an important role in the an-thocyanin synthesis pathway.These results indicated that R2R3-PeMYB genes play an important role in the development of different floral tissues and fruit.At the same time,eight R2R3-PeMYB genes also showed different responses to abiotic stress(cold,heat,salt and osmotic stresses),these R2R3-PeMYB genes can be significantly regulated by at least two stress treatments.The result indicates that R2R3-PeMYB genes were also induced by various abiotic stress.[Conclusion]In this study,99 R2R3-PeMYB gene family members were identified and found to play an important role in flower and fruit develop-ment and stress induction of passion fruit,which provided valuable clues for future research on the func-tion and evolution of R2R3-MYBgenes in flower and fruit development.

Passion fruitR2R3-MYB transcription factorsPhylogenetic analysisFlower and fruit de-velopment

张丹、郑平、邓彪、柴改凤、安昌、邓考、张文斌、陆宇明、卢翔宇、王小媚、秦源

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福建农林大学生命科学学院,福州 350002

广西壮族自治区农业科学院园艺研究所,南宁 530007

福建农林大学海峡联合研究院,福州 350000

龙岩市新罗区良种繁育场,福建龙岩 364000

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百香果 R2R3-MYB转录因子 系统发育分析 花果发育

广西自然科学基金面上项目广西农业科学院基本科研业务专项中国博士后科学基金平潭科技研究院科技创新项目平潭科技研究院科技创新项目

2022GXNSFAA035535桂农科2021YT0462022MD713731PT2021007PT2021003

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(1)
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