Xie Xin, Yue Shaokang, Shi Baosheng, Li Hongxue, Cui Yuhai, Wang Jingying, Yang Pengjie, Li Shuchun, Li Xuyan, Bian Shaomin
College of Plant Science, Jilin University, Changchun, China.
College of Landscape Architecture and Tourism, Hebei Agricultural University, Baoding, China.
Front Plant Sci. 2021 Jul 1;12:703994. doi: 10.3389/fpls.2021.703994. eCollection 2021.
SQUAMOSA Promoter Binding Protein (SBP) family genes act as central players to regulate plant growth and development with functional redundancy and specificity. Addressing the diversity of the SBP family in crops is of great significance to precisely utilize them to improve agronomic traits. Blueberry is an important economic berry crop. However, the SBP family has not been described in blueberry. In the present study, twenty genes were identified through data mining against blueberry transcriptome databases. These VcSBPs could be clustered into eight groups, and the gene structures and motif compositions are divergent among the groups and similar within each group. The VcSBPs were differentially expressed in various tissues. Intriguingly, 10 VcSBPs were highly expressed at green fruit stages and dramatically decreased at the onset of fruit ripening, implying that they are important regulators during early fruit development. Computational analysis showed that 10 s were targeted by miR156, and four of them were further verified by degradome sequencing. Moreover, their functional diversity was studied in Arabidopsis. Noticeably, three VcSBPs significantly increased chlorophyll accumulation, and qRT-PCR analysis indicated that VcSBP13a in Arabidopsis enhanced the expression of chlorophyll biosynthetic genes such as AtDVR, AtPORA, AtPORB, AtPORC, and AtCAO. Finally, the targets of VcSBPs were computationally identified in blueberry, and the Y1H assay showed that VcSBP13a could physically bind to the promoter region of the chlorophyll-associated gene . Our findings provided an overall framework for individually understanding the characteristics and functions of the SBP family in blueberry.
SQUAMOSA启动子结合蛋白(SBP)家族基因作为调控植物生长发育的核心因子,具有功能冗余性和特异性。研究作物中SBP家族的多样性对于精准利用它们来改良农艺性状具有重要意义。蓝莓是一种重要的经济浆果作物。然而,蓝莓中的SBP家族尚未见报道。在本研究中,通过对蓝莓转录组数据库进行数据挖掘,鉴定出了20个基因。这些VcSBP基因可分为8组,各基因结构和基序组成在组间存在差异,而组内相似。VcSBP基因在不同组织中差异表达。有趣的是,10个VcSBP基因在绿色果实阶段高表达,在果实成熟开始时显著下降,这表明它们是果实早期发育过程中的重要调节因子。计算分析表明,10个基因是miR156的靶标,其中4个通过降解组测序得到进一步验证。此外,还在拟南芥中研究了它们的功能多样性。值得注意的是,3个VcSBP基因显著增加了叶绿素积累,qRT-PCR分析表明,拟南芥中的VcSBP13a增强了AtDVR、AtPORA、AtPORB、AtPORC和AtCAO等叶绿素生物合成基因的表达。最后,通过计算鉴定了蓝莓中VcSBP基因的靶标,酵母单杂交试验表明,VcSBP13a能够与叶绿素相关基因的启动子区域发生物理结合。我们的研究结果为单独了解蓝莓中SBP家族的特征和功能提供了一个总体框架。