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Transcriptome analysis reveals novel enzymes for apo-carotenoid biosynthesis in saffron and allows construction for crocetin synthesis in yeast.

J. Exp. Bot.. 2019-05; 
TanHexin,ChenXianghui,LiangNan,ChenRuibing,ChenJunfeng,HuChaoyang,LiQi,LiQing,PeiWeizhong,XiaoWenhai,YuanYingjin,ChenWansheng,Zhan
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Codon Optimization The CsALDH genes were codon optimized and synthesized by GENSCRIPT (Nanjing, China), and were delivered as pUC57-kan or pJET1.2 plasmids (Table 1). Get A Quote

摘要

Crocus sativus is generally considered the source of saffron spice and rich in apo-carotenoid compounds such as crocins, crocetin, picrocrocin and safranal, which possess effective pharmacological activities. However, little is known about the exact genes involved in apo-carotenoids biosynthesis in saffron and the potential mechanism of specific accumulation in the stigma. In this study, we integrated different developmental stigmas to perform in-depth transcriptome and dynamic metabolomic analyses to discover the potential key catalytic steps involved in apo-carotenoid biosynthesis in saffron. A total of 61202 unigenes were obtained, and twenty-eight regulators and thirty-two putative carotenogenic... More

关键词

Crocus sativus L,aldehyde dehydrogenase,apo-carotenoids,co-expression network,diterpene synthases,metabolomic profiling,saffron,transcriptomic profi