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Identification and expression analysis of the SQUAMOSA promoter-binding protein (SBP)-box gene family in Prunus mume

机译:梅花中SQUAMOSA启动子结合蛋白(SBP)-box基因家族的鉴定与表达分析

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SQUAMOSA promoter-binding protein (SBP)-box family genes encode plant-specific transcription factors that play crucial roles in plant development, especially flower and fruit development. However, little information on this gene family is available for Prunus mume, an ornamental and fruit tree widely cultivated in East Asia. To explore the evolution of SBP-box genes in Prunus and explore their functions in flower and fruit development, we performed a genome-wide analysis of the SBP-box gene family in P. mume. Fifteen SBP-box genes were identified, and 11 of them contained an miR156 target site. Phylogenetic and comprehensive bioinformatics analyses revealed that different groups of SBP-box genes have undergone different evolutionary processes and varied in their length, structure, and motif composition. Purifying selection has been the main selective constraint on both paralogous and orthologous SBP-box genes. In addition, the sequences of orthologous SBP-box genes did not diverge widely after the split of P. mume and Prunus persica. Expression analysis of P. mume SBP-box genes revealed their diverse spatiotemporal expression patterns. Three duplicated SBP-box genes may have undergone subfunctionalization in Prunus. Most of the SBP-box genes showed high transcript levels in flower buds and young fruit. The four miR156-nontargeted genes were upregulated during fruit ripening. Together, these results provide information about the evolution of SBP-box genes in Prunus. The expression analysis lays the foundation for further research on the functions of SBP-box genes in P. mume and other Prunus species, especially during flower and fruit development.
机译:SQUAMOSA启动子结合蛋白(SBP)盒家族基因编码植物特异性转录因子,这些因子在植物发育(尤其是花朵和果实发育)中起关键作用。但是,有关该基因家族的信息很少,可用于梅花,这是一种在东亚广泛种植的观赏和果树。为了探索李属植物中SBP-box基因的进化,并探讨它们在花和果实发育中的功能,我们对美洲狮中的SBP-box基因家族进行了全基因组分析。鉴定出15个SBP-box基因,其中11个包含miR156目标位点。系统发育和全面的生物信息学分析表明,不同组的SBP-box基因经历了不同的进化过程,其长度,结构和基序组成也发生了变化。纯化选择一直是对同源和直系SBP-box基因的主要选择约束。此外,直立同源SBP-box基因的序列在P. mume和Prunus persica分裂后没有广泛地差异。枯草假单胞菌SBP-box基因的表达分析揭示了它们多样的时空表达模式。三个重复的SBP-box基因可能在李属中经历了亚功能化。大多数SBP-box基因在花蕾和幼果中表现出较高的转录水平。四个miR156非靶向基因在果实成熟过程中被上调。总之,这些结果提供了有关李属植物中SBP-box基因进化的信息。表达分析为进一步研究SBP-box基因在梅花和其他李属物种中的功能奠定了基础,尤其是在花朵和果实发育过程中。

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