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从头构建地构叶(Baphicacanthus cusia (Nees) Bremek)转录组并分析参与靛红生物合成和代谢的候选基因。

De novo characterization of the Baphicacanthus cusia(Nees) Bremek transcriptome and analysis of candidate genes involved in indican biosynthesis and metabolism.

机构信息

School of Life science, Fujian Agriculture and Forestry University, Fuzhou, China.

Fujian Key Laboratory of Medical Measurement, Fujian Academy of Medical Sciences, Fuzhou, China.

出版信息

PLoS One. 2018 Jul 5;13(7):e0199788. doi: 10.1371/journal.pone.0199788. eCollection 2018.

Abstract

Baphicacanthus cusia (Nees) Bremek is an herb widely used for the clinical treatment of colds, fever, and influenza in Traditional Chinese Medicine. The roots, stems and leaves can be used as natural medicine, in which indigo and indirubin are two main active ingredients. In this study, quantification of indigo, indirubin, indican and adenosine among various tissues of B. cusia was conducted using HPLC-DAD. Leaves have significantly higher contents than stems and roots (380.66, 315.15, 20,978.26, 4323.15 μg/g in leaves, 306.36, 71.71, 3,056.78, 139.45 μg/g in stems, and 9.31, 7.82, 170.45, 197.48 μg/g in roots, respectively). De novo transcriptome sequencing of B. cusia was performed for the first time. The sequencing yielded 137,216,248, 122,837,394 and 140,240,688 clean reads from leaves, stems and roots respectively, which were assembled into 51,381 unique sequences. A total of 33,317 unigenes could be annotated using the databases of Nr, Swiss-Prot, KEGG and KOG. These analyses provided a detailed view of the enzymes involved in indican backbone biosynthesis, such as cytochrome P450, UDP-glycosyltransferase, glucosidase and tryptophan synthase. Analysis results showed that tryptophan synthase was the candidate gene involved in the tissue-specific biosynthesis of indican. We also detected sixteen types of simple sequence repeats in RNA-Seq data for use in future molecular mark assisted breeding studies. The results will be helpful in further analysis of B. cusia functional genomics, especially in increasing biosynthesis of indican through biotechnological approaches and metabolic regulation.

摘要

Baphicacanthus cusia(Nees)Bremek 是一种草药,广泛用于中医治疗感冒、发烧和流感。其根、茎和叶可作为天然药物,其中靛蓝和靛玉红是两种主要的活性成分。在这项研究中,采用 HPLC-DAD 法对 B. cusia 不同组织中的靛蓝、靛玉红、靛苷和腺苷进行了定量分析。叶片中的含量明显高于茎和根(叶片中分别为 380.66、315.15、20978.26、4323.15μg/g,茎中分别为 306.36、71.71、3056.78、139.45μg/g,根中分别为 9.31、7.82、170.45、197.48μg/g)。这是首次对 B. cusia 进行从头转录组测序。从叶片、茎和根分别获得了 137,216,248、122,837,394 和 140,240,688 条清洁reads,组装成 51,381 条独特序列。共有 33,317 个 unigenes可使用 Nr、Swiss-Prot、KEGG 和 KOG 数据库进行注释。这些分析提供了靛苷骨架生物合成中涉及的酶的详细视图,如细胞色素 P450、UDP-糖基转移酶、葡萄糖苷酶和色氨酸合酶。分析结果表明,色氨酸合酶是参与靛苷组织特异性生物合成的候选基因。我们还在 RNA-Seq 数据中检测到 16 种简单重复序列,可用于未来的分子标记辅助育种研究。这些结果将有助于进一步分析 B. cusia 的功能基因组学,特别是通过生物技术方法和代谢调控增加靛苷的生物合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6614/6033399/f9fad9959a4e/pone.0199788.g001.jpg

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