苦荞
荞麦属
基因表达
原花青素
基因
生物
转录组
植物
芦丁
生物化学
多酚
抗氧化剂
作者
Chunli Jiang,Xinyao Su,Ya-Chun Xu,Er-Yi Wu,Yuhua Shi,Dong Zhang,Qingfu Chen,Wei Sun,Jianping Xue
出处
期刊:PubMed
日期:2018-02-01
卷期号:43 (3): 469-477
被引量:3
标识
DOI:10.19540/j.cnki.cjcmm.20180105.005
摘要
Tartary buckwheat Fagopyrum tataricum is an important medicinal and functional herb due to its rich content of flavonoids in the seeds. F.tataricum exhibited good functions for free radicals scavenging, anti-oxidation, anti-aging activities. Although much genetic knowledge of the synthesis, regulation, accumulation of rutin, the genetic basis of proanthocyanidins(PAs) in tartary buckwheat and their related gene expression changes under different lights(blue, red, far red, ultraviolet light) remain largely unexplored. In this study, we cloned one anthocyanidin reductase gene(ANR) and two leucocyanidin reductase gene(LAR) named FtANR,FtLAR1,FtLAR3 involved in formation of(+)-catechin and(-)-epicatechin precusor proanthocyanidin by digging out F. tataricum seed transcriptome data. The expression data showed that the opposite influence of red light on these gene transcript level compared to others lights. The expression levels of FtANR and FtLAR1 decreased and FtLAR3 appeared increment after exposed in the red light, while the expression levels of those genes appeared opposite result after exposed in the blue and far red light.
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