首页> 外文期刊>BMC Genomics >Transcriptome and metabolome analysis reveals anthocyanin biosynthesis pathway associated with ramie (Boehmeria nivea (L.) Gaud.) leaf color formation
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Transcriptome and metabolome analysis reveals anthocyanin biosynthesis pathway associated with ramie (Boehmeria nivea (L.) Gaud.) leaf color formation

机译:转录组和代谢物分析显示出与苎麻(Boehmeria Nivea(L.)Gaud.)叶子颜色形成相关的花青素生物合成途径

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The bast fiber crop ramie can be used as high-quality forage resources, especially in tropical or subtropical region where there is lack of high-quality protein feed. Hongxuan No.1 (HX_1) is a unique ramie variety with a light reddish brown leaf color, which is obviously different from elite cultivar, Zhongzhu No.1 (ZZ_1, green leaf). While, the regulatory mechanism of color difference or secondary metaboliates synthesis between these two varieties have not been studied. In this study, phenotypic, transcriptomic and metabolomic analysis of HX_1 and ZZ_1 were conducted to elucidate the mechanism of leaf color formation. Chromaticity value and pigment content measuring showed that anthocyanin was the main metabolites imparting the different leaf color phenotype between the two varieties. Based on LC/MS, at least 14 anthocyanins were identified in leaves of HX_1 and ZZ_1, and the HX_1 showed the higher relative content of malvidin-, pelargonidin-,and cyanidin-based anthocyanins. Transcriptome and metabolome co-analysis revealed that the up-regulated expression of flavonoids synthesis gene was positively correlated with total anthocyanins accumulation in ramie leaf, and the differentfially expression of “blue gene” (F3’5’H) and the “red gene” (F3’H) in leaves bring out HX_1 metabolic flow more input into the cyanidin branch. Furthermore, the enrichment of glycosylated modification pathway (UGT and AT) and the expression of flavonoid 3-O-glucosyl transferase (UFGT), anthocyanidin reductase (ANR), in leaves were significantly influenced the diversity of anthocyanins between HX_1 and ZZ_1. Phenotypic, transcriptomic and metabolomic analysis of HX_1 and ZZ_1 indicated that the expression levels of genes related to anthocyanin metabolism contribute to the color formation of ramie variety. Anthocyanins are important plant secandary metabilates with many physiological functions, the results of this study will deepened our understanding of ramie leaf color formation, and provided basis for molecular breeding of functional forage ramie.
机译:韧皮纤维作物苎麻可用作高质量的牧草资源,特别是在热带或亚热带地区,缺乏高质量的蛋白质饲料。洪轩第一(HX_1)是一种独特的苎麻品种,具有轻微的棕色叶子颜色,与精英品种,中珠1号(ZZ_1,绿叶)显然是不同的。虽然,尚未研究这两种品种之间的色差或次生代谢合成的调节机制。在该研究中,进行了HX_1和ZZ_1的表型,转录组和代谢组分析,以阐明叶子颜色形成的机制。色度值和颜料含量测量表明,花青素是赋予两种品种之间不同叶子颜色表型的主要代谢物。基于LC / MS,在HX_1和ZZ_1的叶片中鉴定至少14个花青素,HX_1显示了麦比丁,肉肝苷酸和基于Cyanidin的花青素的更高相对含量。转录组和代谢物共分析表明,黄酮类化合物合成基因的上调表达与苎麻叶中的全花青素积累呈正相关,“蓝基因”(F3'5'H)和“红色基因”的不同表达(F3'H)在叶中带出HX_1代谢流量进入Cyanidin分支。此外,甘油基化改性途径(UGT和AT)的富集和黄酮类化合物3-O-葡萄糖酰转移酶(UFGT),花青素还原酶(ANR)的表达显着影响HX_1和ZZ_1之间的花青素的多样性。 HX_1和ZZ_1的表型,转录组和代谢组分析表明,与花青素代谢相关的基因的表达水平有助于苎麻品种的颜色形成。花青素是具有许多生理功能的重要植物条件,该研究的结果将深化我们对苎麻叶颜色形成的理解,并为功能性饲料苎麻进行分子育种的基础。

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