首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Comparative transcriptome analysis reveals a role for anthocyanin biosynthesis genes in the formation of purple peel in Minhou wild banana (Musa itinerans Cheesman)
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Comparative transcriptome analysis reveals a role for anthocyanin biosynthesis genes in the formation of purple peel in Minhou wild banana (Musa itinerans Cheesman)

机译:比较转录组分析揭示了花青素生物合成基因在闽侯野生香蕉紫色剥离中的作用(Musa Itinerans Cheesman)

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摘要

To investigate the purple peel formation mechanism of the Minhou wild banana (Musa itinerans), epidermal cells of the purple and green parts of peel were subjected to RNA sequencing. In total, 3,640 differently expressed unigenes (DEGs) were identified. A KEGG enrichment analysis showed that these DEGs were mainly involved in flavonoid biosynthesis, phenylpropanoid biosynthesis, plant hormone signal transduction, starch and sucrose metabolism, and phenylalanine metabolism pathways, which suggested that the differential accumulation of secondary metabolites leads to the colour difference. Anthocyanin biosynthesis-related and transcription-factor genes with homologues that were crucial for anthocyanin biosynthesis in other plant species were identified as DEGs. We hypothesised that anthocyanin gene expression and subsequently anthocyanin metabolism contributed to the colour difference. The anthocyanin content in the purple peel was significantly higher than in the green peel, which verified the hypothesis. Quantitative real-time PCR on 11 DEGs was largely consistent with the RNA sequencing, indicating that the transcriptome data was reliable. Thus, the differential expression of anthocyanin biosynthesis-related genes correlates with the formation of the purple peel of Minhou wild banana. The generated comprehensive gene expression data provide insights into the molecular mechanisms underlying anthocyanin biosynthesis in banana peel.
机译:为了研究闽侯野生香蕉(Musa Itinerans)的紫色剥离形成机制,对剥离的紫色和绿色部分的表皮细胞进行RNA测序。总共鉴定了3,640种不同表达的unigenes(DEGS)。 KEGG浓缩分析表明,这些DEG主要参与黄酮类生物合成,苯丙酮化生物合成,植物激素信号转导,淀粉和蔗糖代谢,以及苯丙氨酸代谢途径,这表明次级代谢物的差异积聚导致色差。与其他植物物种在其他植物物种中对花青素生物合成至关重要的同源物的有关的和转录因子基因被鉴定为DEGS。我们假设花青素基因表达和随后的花青素代谢促成了色差。紫色果皮中的花青素含量显着高于绿皮中,验证了假设。 11℃上的定量实时PCR与RNA测序相一致,表明转录组数据是可靠的。因此,与青少年素生物合成相关基因的差异表达与闽侯野生香蕉紫色剥离的形成相关。产生的综合基因表达数据提供了在香蕉果皮中依赖于花青素生物合成的分子机制的见解。

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