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首页> 外文期刊>Planta: An International Journal of Plant Biology >Identification, expression, and putative target gene analysis of nuclear factor-Y (NF-Y) transcription factors in tea plant (Camellia sinensis)
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Identification, expression, and putative target gene analysis of nuclear factor-Y (NF-Y) transcription factors in tea plant (Camellia sinensis)

机译:茶叶核因子-Y(NF-Y)转录因子的鉴定,表达和推定靶基因分析(山茶花Sinensis)

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Main conclusionGenome-wide identification and characterization of nuclear factor-Y family in tea plants, and their expression profiles and putative targets provide the basis for further elucidation of their biological functions.AbstractThe nuclear factor-Y (NF-Y) transcription factors (TFs) are crucial regulators of plant growth and physiology. However, the NF-Y TFs in tea plant (Camellia sinensis) have not yet been elucidated, and its biological functions, especially the putative target genes within the genome range, are still unclear. In this study, we identified 35 CsNF-Y encoding genes in the tea plant genome, including 10 CsNF-YAs, 15 CsNF-YBs and 10 CsNF-YCs. Their conserved domains and motifs, phylogeny, duplication event, gene structure, and promoter were subsequently analyzed. Tissue expression analysis revealed that CsNF-Ys exhibited three distinct expression patterns in eight tea tree tissues, among which CsNF-YAs were moderately expressed. Drought and abscisic acid (ABA) treatment indicated that CsNF-YAs may have a greater impact than other subunit members. Furthermore, through the genome-wide investigation of the presence of the CCAAT box, we found that CsNF-Ys may participate in the development of tea plants by regulating target genes of multiple physiological pathways, including photosynthesis, chlorophyll metabolism, fatty acid biosynthesis, and amino acid metabolism pathways. Our findings will contribute to the functional analysis of NF-Y genes in woody plants and the cultivation of high-quality tea plant cultivars.
机译:主要结论茶叶植物中核因子-y家族的全面鉴定及表征,以及它们的表达谱和推定靶标的进一步阐明其生物学功能的基础。抽象核因子-Y(NF-Y)转录因子(TFS)是植物生长和生理学的关键调节因素。然而,茶厂(山茶花Sinensis)的NF-Y TFS尚未阐明,其生物学功能,特别是基因组范围内的推定靶基因尚不清楚。在该研究中,我们鉴定了茶植物基因组中的35个CSNF-Y编码基因,包括10个CSNF-YAS,15个CSNF-YBS和10个CSNF-YCs。随后分析了它们的保守结构域和基序,系统发育,重复事件,基因结构和启动子。组织表达分析显示,CSNF-ys在八个茶树组织中表现出三种不同的表达模式,其中CSNF-YAs中等表达。干旱和脱钙酸(ABA)治疗表明CSNF-Yas的影响比其他亚基成员更大。此外,通过对CCAAT盒的存在的基因组调查,我们发现CSNF-YS可以通过调节多种生理途径的靶基因,包括光合作用,叶绿素代谢,脂肪酸生物合成,以及氨基酸代谢途径。我们的研究结果将有助于木质植物中NF-Y基因的功能分析以及高品质茶植物品种的培养。

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