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Genome-wide identification of the bHLH transcription factor family in Rosa persica and response to low-temperature stress

李子 生物 转录组 遗传学 非生物胁迫 拟南芥 基因 转录因子 拟南芥 基因表达 植物 突变体
作者
Yingping Zhuang,Lei Zhou,Lifang Geng,Lv Jiang,Yi Sui,Le Luo,Huitang Pan,Qixiang Zhang,Chao Yu
出处
期刊:PeerJ [PeerJ]
卷期号:11: e16568-e16568
标识
DOI:10.7717/peerj.16568
摘要

Background Basic helix-loop-helix ( bHLH ) transcription factors are involved in plant growth and development, secondary metabolism, and abiotic stress responses have been studied in a variety of plants. Despite their importance in plant biology, the roles and expression patterns of bHLH family genes in Rosa persica have not been determined. Methods In this study, the RbebHLH family genes were systematically analyzed using bioinformatics methods, and their expression patterns under low-temperature stress were analyzed by transcriptome and related physiological index measurements. Results In total, 142 RbebHLHs were identified in the genome of R. persica , distributed on seven chromosomes. Phylogenetic analysis including orthologous genes in Arabidopsis divided RbebHLHs into 21 subfamilies, with similar structures and motifs within a subfamily. A collinearity analysis revealed seven tandem duplications and 118 segmental duplications in R. persica and 127, 150, 151, 172, and 164 segmental duplications between R. persica and Arabidopsis thaliana , Prunus mume , Fragaria vesca , Rosa chinensis , and Prunus persica , respectively. A number of cis-regulatory elements associated with abiotic stress response and hormone response were identified in RbebHLHs , and 21 RbebHLHs have potential interactions with the CBF family. In addition, the expression results showed that part of bHLH may regulate the tolerance of R. persica to low-temperature stress through the jasmonic acid and pathway. Transcriptomic data showed that the expression levels of different RbebHLHs varied during overwintering, and the expression of some RbebHLHs was significantly correlated with relative conductivity and MDA content, implying that RbebHLHs play important regulatory roles in R. persica response to low-temperature stress. Overall, this study provides valuable insights into the study of RbebHLHs associated with low-temperature stress.
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