首页|库尔勒香梨HB基因家族鉴定及其在越冬过程中的表达分析

库尔勒香梨HB基因家族鉴定及其在越冬过程中的表达分析

扫码查看
[目的]HB家族转录因子具有调控植物器官发育和响应非生物及生物胁迫的功能。揭示库尔勒香梨HB基因家族成员在越冬过程中的表达模式及其调控机制,为深入研究库尔勒香梨HB家族基因的生物学功能提供理论基础。[方法]基于库尔勒香梨的全基因组数据库,利用生物信息学对HB基因家族成员进行鉴定,并对这些基因的系统发育、染色体定位、基因结构、启动子顺式作用元件及家族内共线性进行分析。同时,利用越冬转录组数据,对这些基因在越冬过程的差异表达模式进行分析。[结果]库尔勒香梨基因组中共鉴定出93个HB基因家族成员,分为8个亚家族。这些基因在17条染色体上不均匀分布,其编码的蛋白质在大小、相对分子质量和等电点等方面表现出显著多样性。顺式作用元件分析表明,大量的HB基因含有响应光(97。85%)、脱落酸(78。49%)、赤霉素(50。54%)、低温(41。94%)和干旱(54。84%)等环境应激的顺式作用元件。越冬适应性分析发现,39个HB基因在越冬过程中表现出显著的差异表达,其中23个基因在12月最冷期的表达量达到最高,暗示HB基因在低温应激下的适应性。[结论]93个PsHBs基因家族成员在越冬过程的不同时期,其表达模式存在差异。为深入理解HB基因在低温应激中的功能及其调控机制提供新见解,并为库尔勒香梨的遗传改良及环境适应性研究奠定基础。
Genome-wide identification and expression of the HB gene family during overwintering in Korla pear(Pyrus sinkiangensis)
[Objective]The HB(Homeobox)family of transcription factors plays a crucial role in regu-lating plant organ development and responding to both abiotic and biotic stresses.This study aims to elucidate the expression patterns and regulatory mechanisms of HB gene family members in Pyrus sinki-angensis during the overwintering process,providing a theoretical foundation for further exploration of the biological functions of the HB gene family in this species.[Methods]Based on the whole-genome database of P.sinkiangensis,bioinformatics tools were utilized to identify members of the HB gene fam-ily.Comprehensive analyses were performed,including phylogenetic relationships,chromosomal local-ization,gene structure,promoter cis-acting elements and family-wide collinearity.In addition,differen-tial expression patterns of these genes during the overwintering process were examined using transcrip-tome data.[Results]A total of 93 HB gene family members were identified in the P.sinkiangensis ge-nome through bioinformatics approaches.Analysis of the physicochemical properties of these HB pro-teins revealed that their lengths ranged from 176 to 1196 amino acids,with isoelectric points(pI)rang-ing from 4.69 to 9.32.More than 75%of these proteins had a pI below 7.0,suggesting that the HB genes in P.sinkiangensis likely encoded acidic proteins.The molecular weight of these proteins ranged from 20.18 ku to 135.08 ku,with PsHB69 being the largest and PsHB74 the smallest.Among all mem-bers,only PsHB5 contained a signal peptide,while the remaining members lacked signal peptides,indi-cating that the majority were not secreted proteins.Subcellular localization analysis showed that six members(PsHB90,PsHB54,PsHB15,PsHB48,PsHB36 and PsHB12)were localized in the chloro-plast,while the others were localized in the nucleus.Chromosomal localization analysis revealed that the 93 HB gene family members were distributed across 17 chromosomes(Chr01-Chr17)in P.sinkian-gensis.On chromosome 15,the highest number of HB members was distributed,totaling 12,while the other chromosomes contained 2 to 9 members each.Additionally,two pairs of closely located members on chromosomes 9(PsHB46 and PsHB47)and 17(PsHB92 and PsHB93)exhibited high sequence simi-larity.All four belonged to the HD-ZIP Ⅳ subfamily,suggesting that these pairs may have resulted from tandem duplication events.Phylogenetic analysis indicated that the HB gene family in P.sinkian-gensis,along with Arabidopsis and Malus domestica,can be divided into eight subfamilies based on the classification of the Arabidopsis HB gene family and the HD-ZIP Ⅰ-Ⅳ gene families in Malus domesti-ca.Among these subfamilies,HD-ZIP Ⅰ and HD-ZIP Ⅳ contained the most members,with a total of 34 genes.In P.sinkiangensis,all HB members contained exons,with the number ranging from 2 to 20.Each HB gene in P.sinkiangensis contained a coding sequence(CDS)region,although 59 members lacked untranslated regions(UTRs).Conserved domain analysis of these proteins revealed that all mem-bers possessed the HD domain,and a total of 25 types of domains were identified among the 93 mem-bers.Besides the HD domain,the Homeodomain-associated Leucine Zipper(HALZ)domain was the most abundant,which was thought to mediate protein-protein interactions.Collinearity analysis of the HB gene family in P.sinkiangensis revealed 70 pairs of collinear genes.Interestingly,PsHB genes on chromosomes 8 and 15 appeared as tandem duplicates but belonged to different subfamilies.Further ex-amination of the Ka/Ks ratio of these duplicated genes revealed values ranging from 0.06 to 0.49.Among the 70 pairs of collinear genes in P.sinkiangensis,67 pairs had a Ka/Ks ratio of less than 1,indi-cating that these genes were under purifying selection and that their sequences were conserved through-out evolution.A cis-acting element analysis of the 2000 bp upstream promoter regions of the P.sinkian-gensis PsHB gene family members identified 12 types of cis-elements related to plant hormone and stress responses.Among these,78.49%of the PsHB genes contained an abscisic acid-responsive ele-ment(ABRE),and 50.54%contained gibberellin-responsive elements(P-box and GARE-motif).This suggested that the HB gene family may play a role in mitigating environmental stress through hormone-mediated pathways.Additionally,41.94%and 54.84%of the PsHB genes contained low-temperature re-sponsive elements(LTR)and drought-responsive elements(MBS),respectively.Transcriptome data analysis during three stages of the overwintering process in P.sinkiangensis revealed that 39 out of the 93 PsHB genes were differentially expressed.Of these differentially expressed genes,more than half(23 genes)showed peak expression during the coldest period in January(TM),11 genes had the highest expression at the end of the overwintering period in March(TF),and the remaining 5 genes exhibited the highest expression at the beginning of overwintering in October.Notably,during the coldest period in December,PsHB 11 and PsHB78 were upregulated by 10.5-fold and 7.0-fold,respectively,indicating that these two genes may play a significant role during bud dormancy.Approximately 42%of the HB genes were significantly and differentially expressed during the overwintering period,with the majority reaching their peak expression in December,the coldest month,suggesting that the PsHB gene family played a critical role in cold stress resistance.[Conclusion]The expression patterns of the 93 PsHB gene family members varied across different stages of the overwintering process.These findings pro-vide new insights into the functional roles and regulatory mechanisms of HB genes in response to cold stress,laying a foundation for genetic improvement and environmental adaptability research in P.sinki-angensis.

Pyrus sinkiangensisTranscription FactorHB GeneOverwinteringBioinformatics

刘晓燕、王丽娟、杨生辉、罗光宏、祝建波

展开 >

河西学院·甘肃省微藻工程技术研究中心,甘肃张掖 734000

石河子大学,新疆石河子 832000

库尔勒香梨 转录因子 HB基因 越冬 生物信息学

2025

果树学报
中国农业科学院郑州果树研究所

果树学报

北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2025.42(1)