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Genome-wide identification and expression analysis of GRAS family transcription factors in tea plant ( Camellia sinensis )

机译:茶树GRAS家族转录因子的全基因组鉴定和表达分析

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GRAS proteins are important transcription factors that play multifarious roles in regulating the growth and development as well as stress responses of plants. Tea plant is an economically important leaf -type beverage crop. Information concerning GRAS family transcription factors in tea plant is insufficient. In this study, 52 CsGRAS genes encoding GRAS proteins were identified from tea plant genome database. Phylogenetic analysis of the identified GRAS proteins from tea plant, Arabidopsis, and rice divided these proteins into at least 13 subgroups. Conserved motif analysis revealed that the gene structure and motif compositions of the proteins were considerably conserved among the same subgroup. Functional divergence analysis indicated that the shifted evolutionary rate might act as a major evolutionary force driving subfamily-specific functional diversification. Transcriptome analysis showed that the transcriptional levels of CsGRAS genes under non-stress conditions varied among different tea plant cultivars. qRT-PCR analysis revealed tissue and development stage-specific expression patterns of CsGRAS genes in tea plant. The expression patterns of CsGRAS genes in response to abiotic stresses and gibberellin treatment suggested the possible multiple functions of these genes. This study provides insights into the potential functions of GRAS genes.
机译:GRAS蛋白是重要的转录因子,在调节植物的生长和发育以及胁迫反应中起着多种作用。茶树是经济上重要的叶型饮料作物。关于茶树中GRAS家族转录因子的信息不足。在这项研究中,从茶树基因组数据库中鉴定出编码GRAS蛋白的52个CsGRAS基因。从茶树,拟南芥和水稻中鉴定出的GRAS蛋白的系统发育分析将这些蛋白至少分为13个亚组。保守的基序分析表明,在同一亚组中,蛋白质的基因结构和基序组成相当保守。功能差异分析表明,进化速率的变化可能是推动特定亚科功能多样化的主要进化力量。转录组分析表明,在非胁迫条件下,不同茶树品种CsGRAS基因的转录水平存在差异。 qRT-PCR分析揭示了茶树中CsGRAS基因的组织和发育阶段特异性表达模式。 CsGRAS基因响应非生物胁迫和赤霉素处理的表达模式表明这些基因可能具有多种功能。这项研究提供了对GRAS基因潜在功能的见解。

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