Institute of Pomology, Jiangsu Academy of Agricultural Sciences/Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Nanjing, Jiangsu, China.
PLoS One. 2018 Apr 16;13(4):e0195974. doi: 10.1371/journal.pone.0195974. eCollection 2018.
The basic helix-loop-helix (bHLH) transcription factor family is a superfamily found in all eukaryotes that plays important roles in regulating growth and development. Over the past several decades, many bHLH superfamily genes have been identified and characterized in herbaceous and woody plants. However, the genes belonging to the bHLH superfamily in peach (Prunus persica) have not yet been comprehensively identified and characterized. Here, we identified 95 members of the bHLH superfamily in the peach genome, and these genes were classified into 19 subfamilies based on a phylogenetic comparison with bHLH proteins from Arabidopsis. The members within each subfamily were highly conserved according to the analysis of motif compositions and exon/intron organizations. The 95 bHLH genes were unevenly distributed on chromosomes 1 to 8 of the peach genome. We identified 57 pairs of bHLH members that were orthologous between peach and Arabidopsis. Additionally, 48 pairs of paralogous bHLH genes were identified on the eight chromosomes of the peach genome. Coupled with relative expression analysis of bHLH genes in red-fleshed peach fruit at five developmental stages, we identified several bHLH genes that might be involved in fruit development and anthocyanin biosynthesis. This study provides insight into the molecular mechanisms through which these genes are involved in the regulation of biological and biochemical processes in peach and lays the foundation for further studies on these genes.
该基本螺旋-环-螺旋 (bHLH) 转录因子家族是一个在所有真核生物中发现的超家族,在调节生长和发育方面发挥着重要作用。在过去的几十年中,已经在草本和木本植物中鉴定和描述了许多 bHLH 超家族基因。然而,桃 (Prunus persica) 中的 bHLH 超家族基因尚未得到全面鉴定和描述。在这里,我们在桃基因组中鉴定了 95 个 bHLH 超家族成员,并根据与拟南芥 bHLH 蛋白的系统发育比较将这些基因分为 19 个亚家族。根据基序组成和外显子/内含子组织分析,每个亚家族内的成员高度保守。95 个 bHLH 基因在桃基因组的 1 号至 8 号染色体上不均匀分布。我们鉴定了桃和拟南芥之间的 57 对同源 bHLH 成员。此外,在桃基因组的 8 条染色体上还鉴定了 48 对旁系同源 bHLH 基因。结合在五个发育阶段的红肉桃果实中 bHLH 基因的相对表达分析,我们鉴定了一些可能参与果实发育和花青素生物合成的 bHLH 基因。这项研究深入了解了这些基因参与桃生物和生化过程调节的分子机制,并为进一步研究这些基因奠定了基础。