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首页> 外文期刊>Genomics, proteomics & bioinformatics >Comparative Genome Analysis of Scutellaria baicalensis and Scutellaria barbata Reveals the Evolution of Active Flavonoid Biosynthesis
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Comparative Genome Analysis of Scutellaria baicalensis and Scutellaria barbata Reveals the Evolution of Active Flavonoid Biosynthesis

机译:Scutellaria baicalensis和Scutellaria Barbata的比较基因组分析显示了活性类黄酮生物合成的演变

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Scutellaria baicalensis ( S. baicalensis ) and Scutellaria barbata ( S. barbata ) are common medicinal plants of the Lamiaceae family. Both produce specific flavonoid compounds, including baicalein, scutellarein, norwogonin, and wogonin, as well as their glycosides, which exhibit antioxidant and antitumor activities. Here, we report chromosome-level genome assemblies of S. baicalensis and S. barbata with quantitative chromosomal variation (2 n =?18 and 2 n =?26, respectively). The divergence of S. baicalensis and S. barbata occurred far earlier than previously reported, and a whole-genome duplication (WGD) event was identified. The insertion of long terminal repeat elements after speciation might be responsible for the observed chromosomal expansion and rearrangement. Comparative genome analysis of the congeneric species revealed the species-specific evolution of chrysin and apigenin biosynthetic genes, such as the S. baicalensis -specific tandem duplication of genes encoding phenylalanine ammonia lyase and chalcone synthase, and the S. barbata -specific duplication of genes encoding 4-CoA ligase. In addition, the paralogous duplication, colinearity, and expression diversity of CYP82D subfamily members revealed the functional divergence of genes encoding flavone hydroxylase between S. baicalensis and S. barbata . Analyzing these Scutellaria genomes reveals the common and species-specific evolution of flavone biosynthetic genes. Thus, these findings would facilitate the development of molecular breeding and studies of biosynthesis and regulation of bioactive compounds.
机译:Scutellaria baicalensis(Baicalensis)和Scutellaria Barbata(S.Barbata)是LamiCeae家族的常见药用植物。两者都产生特异性的类黄酮化合物,包括BaiCalein,Scutellarein,Norwogonin和Wogonin,以及它们具有抗氧化剂和抗肿瘤活性的糖苷。在此,我们报告具有定量染色体变化(分别为2 n =α18和2 n = 26)的染色体级基因组组合物。 S.Baicalensis和S. Barbata的分歧比以前报告的发生得多,并确定了全基因组重复(WGD)事件。在物种修复后的长端子重复元件的插入可能对观察到的染色体膨胀和重排负责。对比较的基因组分析的基因组分析揭示了蛹和嗜酸盐素生物合成基因的物种特异性演化,例如编码苯丙氨酸氨裂解酶和Chalcone合酶的基因的S.Baicalensis-特异性串联重复。编码4-CoA连接酶。此外,CYP82D亚家族成员的寄生重复,离殖度和表达多样性揭示了编码黄酮羟基化酶的基因的功能分歧,BACALENSIS和S.BARBATA。分析这些Scutellaria基因组揭示了黄酮生物合成基因的常见和物种的种谱。因此,这些发现将促进分子育种的发展和生物合成的研究和生物活性化合物的调节。

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