Liu Jinxin, Hou Jingyi, Jiang Chao, Li Geng, Lu Heng, Meng Fanyun, Shi Linchun
Key Laboratory of Traditional Chinese Medicine Research and Development of Hebei Province, Institute of Traditional Chinese Medicine, Chengde Medical University, Chengde, 067000, China; Beijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing, 100875, China; State Key Laboratory Breeding Base of Dao-di Herbs, China Academy of Chinese Medical Sciences, Beijng, 100700, China.
Beijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing, 100875, China; State Key Laboratory Breeding Base of Dao-di Herbs, China Academy of Chinese Medical Sciences, Beijng, 100700, China.
PLoS One. 2015 Aug 28;10(8):e0136397. doi: 10.1371/journal.pone.0136397. eCollection 2015.
Scutellaria baicalensis Georgi has long been used in traditional medicine to treat various such widely varying diseases and has been listed in the Chinese Pharmacopeia, the Japanese Pharmacopeia, the Korean Pharmacopoeia and the European Pharmacopoeia. Flavonoids, especially wogonin, wogonoside, baicalin, and baicalein, are its main functional ingredients with various pharmacological activities. Although pharmaological studies for these flavonoid components have been well conducted, the molecular mechanism of their biosynthesis remains unclear in S. baicalensis. In this study, Illumina/Solexa deep sequencing generated more than 91 million paired-end reads and 49,507 unigenes from S. baicalensis roots, stems, leaves and flowers. More than 70% unigenes were annotated in at least one of the five public databases and 13,627 unigenes were assigned to 3,810 KEGG genes involved in 579 different pathways. 54 unigenes that encode 12 key enzymes involved in the pathway of flavonoid biosynthesis were discovered. One baicalinase and three baicalein 7-O-glucuronosyltransferases genes potentially involved in the transformation between baicalin/wogonoside and baicalein/wogonin were identified. Four candidate 6-hydroxylase genes for the formation of baicalin/baicalein and one candidate 8-O-methyltransferase gene for the biosynthesis of wogonoside/wogonin were also recognized. Our results further support the conclusion that, in S. baicalensis, 3,5,7-trihydroxyflavone was the precursor of the four above compounds. Then, the differential expression models and simple sequence repeats associated with these genes were carefully analyzed. All of these results not only enrich the gene resource but also benefit research into the molecular genetics and functional genomics in S. baicalensis.
黄芩长期以来被用于传统医学治疗各种不同的疾病,并已被列入《中国药典》《日本药局方》《韩国药典》和《欧洲药典》。黄酮类化合物,尤其是汉黄芩素、汉黄芩苷、黄芩苷和黄芩素,是其具有多种药理活性的主要功能成分。尽管对这些黄酮类成分的药理研究已经充分开展,但它们在黄芩中的生物合成分子机制仍不清楚。在本研究中,通过Illumina/Solexa深度测序从黄芩的根、茎、叶和花中产生了超过9100万对末端测序读段和49507个单基因。超过70%的单基因在五个公共数据库中的至少一个中得到注释,13627个单基因被分配到参与579条不同途径的3810个KEGG基因中。发现了54个编码参与黄酮类生物合成途径的12种关键酶的单基因。鉴定出一个可能参与黄芩苷/汉黄芩苷与黄芩素/汉黄芩素转化的黄芩苷酶基因和三个黄芩素7 - O - 葡萄糖醛酸转移酶基因。还识别出四个参与黄芩苷/黄芩素形成的候选6 - 羟化酶基因和一个参与汉黄芩苷/汉黄芩素生物合成的候选8 - O - 甲基转移酶基因。我们的结果进一步支持了在黄芩中3,5,7 - 三羟基黄酮是上述四种化合物前体的结论。然后,仔细分析了与这些基因相关的差异表达模型和简单序列重复。所有这些结果不仅丰富了基因资源,也有利于黄芩分子遗传学和功能基因组学的研究。