Institute of Pomology, Jiangsu Academy of Agricultural Sciences/Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Nanjing, Jiangsu, China.
PLoS One. 2018 Jun 21;13(6):e0199192. doi: 10.1371/journal.pone.0199192. eCollection 2018.
The MYB transcription factor superfamily is one of the largest superfamilies modulating various biological processes in plants. Over the past few decades, many MYB superfamily genes have been identified and characterized in some plant species. However, genes belonging to the MYB superfamily in peach (Prunus persica) have not been comprehensively identified and characterized although the genome sequences of peach were released several years ago. In total, this study yielded a set of 256 MYB superfamily genes that was divided into five subfamilies: the R2R3-MYB (2R-MYB), R1R2R3-MYB (3R-MYB), MYB-related (1R-MYB), 4R-MYB, and Atypical-MYB subfamilies. These subfamilies contained 128, 4, 109, 1, and 14 members, respectively. The 128 R2R3-MYB subfamily genes in peach were further clustered into 35 groups, and the 109 MYB-related subfamily genes were further clustered into 6 groups: the CCA1-like, CPC-like, TBP-like, I-box-binding-like, R-R-type, and Peach-specific groups. The motif compositions and exon/intron structures within each group within the R2R3-MYB or MYB-related subfamily in peach were highly conserved. The logo sequences of the R2 and R3 repeats of R2R3-MYB subfamily members were highly conserved with those in these repeats of several other plant species. Except for 48 novel peach-specific MYB genes, the remaining 208 out of 256 MYB genes in peach were conserved with the corresponding 198 MYB genes in A. thaliana. Additionally, the 256 MYB genes unevenly distributed on chromosomes 1 to 8 of the peach genome. Eighty-one orthologous pairs of peach/A. thaliana MYB genes were identified among 256 MYB genes in peach and 198 MYB genes in A. thaliana in this study. In addition, 146 pairs of paralogous MYB genes were identified on the eight chromosomes of peach. The expression levels of some of the 51 MYB genes selected for qRT-PCR analysis decreased or increased with red-fleshed fruit development, while the expression patterns of some genes followed no clear rules over the five developmental stages of fruits. This study laid the foundation for further functional analysis of MYB superfamily genes in peach and enriched the knowledge of MYB superfamily genes in plant species.
MYB 转录因子超家族是调节植物各种生物学过程的最大超家族之一。在过去的几十年中,已经在一些植物物种中鉴定和描述了许多 MYB 超家族基因。然而,尽管桃(Prunus persica)的基因组序列已经发布了几年,但属于桃的 MYB 超家族的基因尚未得到全面鉴定和描述。本研究共获得了一组 256 个 MYB 超家族基因,分为五个亚家族:R2R3-MYB(2R-MYB)、R1R2R3-MYB(3R-MYB)、MYB 相关(1R-MYB)、4R-MYB 和非典型-MYB 亚家族。这些亚家族分别包含 128、4、109、1 和 14 个成员。桃中的 128 个 R2R3-MYB 亚家族基因进一步聚类为 35 个组,109 个 MYB 相关亚家族基因进一步聚类为 6 个组:CCA1 样、CPC 样、TBP 样、I-box 结合样、R-R 型和桃特异组。桃的 R2R3-MYB 或 MYB 相关亚家族内每个组内的基序组成和外显子/内含子结构高度保守。R2R3-MYB 亚家族成员的 R2 和 R3 重复的徽标序列与其他几种植物物种的这些重复序列高度保守。除了 48 个新的桃特异 MYB 基因外,桃的 256 个 MYB 基因中有 208 个与拟南芥的相应 198 个 MYB 基因保守。此外,256 个 MYB 基因不均匀地分布在桃基因组的 1 号到 8 号染色体上。在这项研究中,在桃的 256 个 MYB 基因和拟南芥的 198 个 MYB 基因中,鉴定了 81 对桃/拟南芥 MYB 基因的直系同源对。此外,在桃的 8 条染色体上还鉴定了 146 对旁系同源 MYB 基因。选择用于 qRT-PCR 分析的 51 个 MYB 基因中的一些基因的表达水平随着红肉果实的发育而降低或升高,而一些基因的表达模式在果实的五个发育阶段没有遵循明显的规律。本研究为进一步研究桃的 MYB 超家族基因的功能分析奠定了基础,并丰富了植物物种中 MYB 超家族基因的知识。