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Structural and functional insights into the LBD family involved in abiotic stress and flavonoid synthases in Camellia sinensis

机译:在山茶花中参与非生物胁迫和黄酮类化合物的LBD系列的结构和功能见解

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Lateral organ boundaries domain (LBD) proteins are plant-specific transcription factors that play a crucial role in growth and development, as well as metabolic processes. However, knowledge of the function of LBD proteins in Camellia sinensis is limited, and no systematic investigations of the LBD family have been reported. In this study, we identified 54 LBD genes in Camellia sinensis. The expression patterns of CsLBDs in different tissues and their transcription responses to exogenous hormones and abiotic stress were determined by RNA-seq, which showed that CsLBDs may have diverse functions. Analysis of the structural gene promoters revealed that the promoters of CsC4H, CsDFR and CsUGT84A, the structural genes involved in flavonoid biosynthesis, contained LBD recognition binding sites. The integrative analysis of CsLBD expression levels and metabolite accumulation also suggested that CsLBDs are involved in the regulation of flavonoid synthesis. Among them, CsLOB_3, CsLBD36_2 and CsLBD41_2, localized in the nucleus, were selected for functional characterization. Yeast two-hybrid assays revealed that CsLBD36_2 and CsLBD41_2 have self-activation activities, and CsLOB_3 and CsLBD36_2 can directly bind to the cis-element and significantly increase the activity of the CsC4H, CsDFR and CsUGT84A promoter. Our results present a comprehensive characterization of the 54 CsLBDs in Camellia sinensis and provide new insight into the important role that CsLBDs play in abiotic and flavonoid biosynthesis.
机译:外侧器官边界结构域(LBD)蛋白质是植物特异性转录因子,其在生长和发育中发挥至关重要的作用,以及代谢过程。然而,山茶花中LBD蛋白的功能的了解是有限的,并且已经报道了LBD家族的系统研究。在这项研究中,我们在山茶花中鉴定了54个LBD基因。通过RNA-SEQ测定不同组织中CSLBD的表达模式及其对外源激素和非生物应激的转录反应,结果显示CSLBD可能具有多样的功能。结构基因启动子的分析显示CSC4H,CSDFR和Csugt84a的启动子,类黄酮生物合成所涉及的结构基因,含有LBD识别结合位点。 CSLBD表达水平和代谢物积累的整合分析还表明CSLBDS参与了类黄酮合成的调节。其中,选择在核中局部化的CSLOB_3,CSLBD36_2和CSLBD41_2进行功能表征。酵母双杂化测定显示CSLBD36_2和CSLBD41_2具有自激活活性,CSLOB_3和CSLBD36_2可以直接与顺式元素结合,并显着增加CSC4H,CSDFR和CSUGT84A启动子的活性。我们的结果展示了山茶花中54个CSLBDS的全面表征,并为CSLBDS在非生物和黄酮类生物合成中发挥的重要作用提供了新的洞察力。

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