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Genome-Wide Identification and Characterization of SQUAMOSA—Promoter-Binding Protein (SBP) Genes Involved in the Flowering Development of Citrus Clementina

机译:SQUAMOSA-启动子结合蛋白(SBP)基因参与柑桔柑桔开花发育的全基因组鉴定和表征

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SQUAMOSA-promoter binding protein (SBP)-box genes encode a family of plant-specific transcription factors that play vital roles in plant growth and development. In this study, 15 SBP-box genes were identified and isolated from Citrus clementina ( CclSBPs ), where 10 of these genes were predicted to be putative targets of Citrus clementina microRNA156 (CclmiR156). The 15 CclSBP genes could be classified into six groups based on phylogenetic analysis, diverse intron–exon structure, and motif prediction, similar to the SQUAMOSA promoter binding protein-like (SPL) gene family of Populus trichocarpa and Arabidopsis thaliana . Furthermore, CclSBPs classified into a group/subgroup have similar gene structures and conserved motifs, implying their functional redundancy. Tissue-specific expression analysis of CclSBPs demonstrated their diversified expression patterns. To further explore the potential role of CclSBPs during floral inductive water deficits, the dynamic changes of the 15 CclSBPs were investigated during floral inductive water deficits, and the results showed that some CclSBPs were associated with floral induction. Among these genes, CclSBP6 was not homologous to the Arabidopsis SBP-box gene family, and CclSBP7 was regulated by being alternatively spliced. Therefore, CclSBP6 and CclSBP7 were genetically transformed in Arabidopsis . Overexpression of the two genes changed the flowering time of Arabidopsis .
机译:SQUAMOSA启动子结合蛋白(SBP)盒基因编码一系列植物特异性转录因子,这些因子在植物生长和发育中起着至关重要的作用。在这项研究中,从柑橘柑桔(CclSBPs)中鉴定并分离了15个SBP-box基因,其中10个基因被预测为柑橘柑桔微RNA156(CclmiR156)的假定靶标。根据系统发育分析,多样化的内含子-外显子结构和基序预测,可将15个CclSBP基因分为六类,类似于毛果杨和拟南芥的SQUAMOSA启动子结合蛋白样(SPL)基因家族。此外,分类为组/亚组的CclSBP具有相似的基因结构和保守的基序,这意味着它们的功能冗余。 CclSBPs的组织特异性表达分析表明其多样化的表达模式。为了进一步探讨CclSBPs在花诱导缺水中的潜在作用,研究了15个CclSBPs在花诱导缺水期间的动态变化,结果表明一些CclSBPs与花诱导有关。在这些基因中,CclSBP6与拟南芥SBP-box基因家族同源,CclSBP7通过选择性剪接来调控。因此,在拟南芥中对CclSBP6和CclSBP7进行了遗传转化。这两个基因的过表达改变了拟南芥的开花时间。

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