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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Identification, Characterization and Expression Analysis of the TCP Gene Family in Prunus mume
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Genome-Wide Identification, Characterization and Expression Analysis of the TCP Gene Family in Prunus mume

机译:梅花 TCP 基因家族的全基因组鉴定,表征和表达分析

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摘要

TCP proteins, belonging to a plant-specific transcription factors family, are known to have great functions in plant development, especially flower and leaf development. However, there is little information about this gene family in Prunus mume , which is widely cultivated in China as an ornamental and fruit tree. Here a genome-wide analysis of TCP genes was performed to explore their evolution in P. mume . Nineteen PmTCPs were identified and three of them contained putative miR319 target sites. Phylogenetic and comprehensive bioinformatics analyses of these genes revealed that different types of TCP genes had undergone different evolutionary processes and the genes in the same clade had similar chromosomal location, gene structure, and conserved domains. Expression analysis of these PmTCPs indicated that there were diverse expression patterns among different clades. Most TCP genes were predominantly expressed in flower, leaf, and stem, and showed high expression levels in the different stages of flower bud differentiation, especially in petal formation stage and gametophyte development. Genes in TCP-P subfamily had main roles in both flower development and gametophyte development. The CIN genes in double petal cultivars might have key roles in the formation of petal, while they were correlated with gametophyte development in the single petal cultivar. The CYC/TB1 type genes were highly detected in the formation of petal and pistil. The less-complex flower types of P. mume might result from the fact that there were only two CYC type genes present in P. mume and a lack of CYC2 genes to control the identity of flower types. These results lay the foundation for further study on the functions of TCP genes during flower development.
机译:已知属于植物特异性转录因子家族的TCP蛋白在植物发育特别是花朵和叶子发育中具有重要功能。然而,关于梅的这个基因家族的信息很少,在中国作为观赏和果树被广泛种植。在这里,对TCP基因进行了全基因组分析,以探索它们在穆美假单胞菌中的进化。鉴定出19个PmTCP,其中三个包含推定的miR319目标位点。对这些基因的系统发生和全面的生物信息学分析表明,不同类型的TCP基因经历了不同的进化过程,并且同一进化枝中的基因具有相似的染色体位置,基因结构和保守域。这些PmTCP的表达分析表明,不同进化枝之间存在多种表达模式。大多数TCP基因主要在花,叶和茎中表达,并在花芽分化的不同阶段,尤其是在花瓣形成阶段和配子体发育中表现出高表达水平。 TCP-P亚家族中的基因在花朵发育和配子体发育中均起主要作用。双瓣品种中的CIN基因可能在花瓣的形成中起关键作用,而它们与单瓣品种中配子体的发育相关。 CYC / TB1型基因在花瓣和雌蕊的形成中被高度检测到。梅花的花朵类型较不复杂,可能是由于以下事实造成的:梅花花朵中只有两个CYC类型基因,而缺少CYC2基因来控制花类型的身份。这些结果为进一步研究TCP基因在花发育过程中的功能奠定了基础。

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