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Transcriptome-wide analysis of the AP2/ERF transcription factor gene family involved in the regulation of gypenoside biosynthesis in Gynostemma pentaphyllum

机译:转录的AP2 / ERF转录因子基因系列参与在颅北膜血糖素生物合成调节中的AP2 / ERF转录因子基因系列

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摘要

Gynostemma pentaphyllum is a traditional Chinese medicinal herb, serving as natural source of gypenosides (triterpene saponins). The APETALA2/ethylene response factor (AP2/ERF) transcription factors, playing essential regulation roles in plant biotic and abiotic stress responses and secondary metabolism biosynthesis. However, the regulation roles of AP2/ERF transcription factors in gypenosides biosynthesis in G. pentaphyllum remains little understood. In the present study, 125 AP2/ERF genes were identified from G. pentaphyllum transcriptome datasets. Phylogenetic, conserved motifs and expression pattern were employed to comprehensively analyze the 125 GpAP2/ERF genes. Based on the sequence similarity and phylogeny tree, the 125 GpAP2/ERF genes can be classified into 10 groups. Moreover, the distribution of conserved motifs among GpAP2/ERF proteins in phylogenetic trees was consistent with previous studies, thus supporting the classification. Expression profiling indicated that the 125 GpAP2/ERF genes exhibited distinct tissue-specific expression patterns. As confirmed by qRT-PCR, the four candidate GpAP2/ERF genes and gypenoside biosynthetic genes were highly expressed in leaves and/or flowers, and show similar expression patterns in response to MeJA. Base on the expression patterns and phylogenetic relationships, two GpAP2/ERF genes were considered as potential regulatory genes for gypenoside biosynthesis. Our study enhances understanding roles of GpAP2/ERF genes in regulation of gypenosides biosynthesis.
机译:吉诺斯蒙媒体媒体是一种传统的中药草药,用作石烯糖苷的天然来源(三萜皂苷)。 Apetala2 /乙烯响应因子(AP2 / ERF)转录因子,在植物生物和非生物应激反应和次生代谢生物合成中发挥基本调控作用。然而,AP2 / ERF转录因子在G.Pentaphyllum中的血糖生物合成中的AP2 / ERF转录因子的调节作用仍然没有理解。在本研究中,从G. pentaphyllum转录组数据集中鉴定了125个AP2 / ERF基因。使用系统发育,保守的基序和表达模式来综合分析125GPAP2 / ERF基因。基于序列相似性和系统发育树,125GPAP2 / ERF基因可以分为10组。此外,在系统发育树中GPAP2 / ERF蛋白中的保守基序的分布与先前的研究一致,从而支撑分类。表达分析表明,125 GPAP2 / ERF基因表现出不同的组织特异性表达模式。如QRT-PCR的确认,四种候选GPAP2 / ERF基因和葡萄皂甙生物合成基因在叶片和/或花中高度表达,并呈现出类似的表达模式响应MEJA。基于表达模式和系统发育关系,认为两个GPAP2 / ERF基因被认为是基因钠生物合成的潜在调节基因。我们的研究提高了GPAP2 / ERF基因在糖皂苷的调节中的理解作用。

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