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Transcriptome-Wide Identification, Evolutionary Analysis, and GA Stress Response of the GRAS Gene Family in Panax ginseng C. A. Meyer

机译:Panax Gineeng C. A. Meyer的GRAS基因家族的转录组型鉴定,进化分析和GA应激响应

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摘要

GRAS transcription factors are a kind of plant-specific transcription factor that have been found in a variety of plants. According to previous studies, GRAS proteins are widely involved in the physiological processes of plant signal transduction, stress, growth and development. The Jilin ginseng (Panax ginseng C.A. Meyer) is a heterogeneous tetraploid perennial herb of the Araliaceae family, ginseng genus. Important information regarding the GRAS transcription factors has not been reported in ginseng. In this study, 59 Panax ginseng GRAS (PgGRAS) genes were obtained from the Jilin ginseng transcriptome data and divided into 13 sub-families according to the classification of Arabidopsis thaliana. Through systematic evolution, structural variation, function and gene expression analysis, we further reveal GRAS’s potential function in plant growth processes and its stress response. The expression of PgGRAS genes responding to gibberellin acids (GAs) suggests that these genes could be activated after application concentration of GA. The qPCR analysis result shows that four PgGRAS genes belonging to the DELLA sub-family potentially have important roles in the GA stress response of ginseng hairy roots. This study provides not only a preliminary exploration of the potential functions of the GRAS genes in ginseng, but also valuable data for further exploration of the candidate PgGRAS genes of GA signaling in Jilin ginseng, especially their roles in ginseng hairy root development and GA stress response.
机译:GRAS转录因子是一种在各种植物中被发现的植物特异性转录因子。根据先前的研究,GRAS蛋白广泛参与植物信号转导,应激,生长和发育的生理过程。吉林人参(Panax人参C.A. Meyer)是甘育神经科家族,人参属的异质四倍体常等药草。人参尚未报告有关GRAS转录因子的重要信息。在本研究中,59个Panax人参GRAS(PGGRAS)基因是根据吉林人参转录组数据获得的,并根据拟南芥的分类分成13个子家族。通过系统演化,结构变异,功能和基因表达分析,我们进一步揭示了GRAS在植物生长过程中的潜在功能及其应力反应。响应嗜酸甘油蛋白酸(气体)的PGGRAS基因的表达表明这些基因可以在施用孔的施用后激活。 QPCR分析结果表明,属于Della子家族的四个PGGRAS基因可能在人参毛根的GA应力响应中具有重要作用。本研究不仅提供了对人参的GRAS基因潜在功能的初步探索,而且还提供了有价值的数据,以进一步探索吉林人参的遗传率PGGRAS基因,尤其是它们在人参毛根部发育和GA压力反应中的作用。

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