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Hypericin biosynthesis in Hypericum hookerianum Wight and Am: Investigation on biochemical pathways using metabolite inhibitors and suppression subtractive hybridization

机译:贯叶连翘和金丝桃中金丝桃素的生物合成:使用代谢产物抑制剂和抑制性消减杂交的生化途径研究

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The biochemical pathway to hypericin biosynthesis is presumed to be polyketide synthase (PKS) mediated, but it has not been experimentally validated, and no alternate route (chorismate/o-succinylbenzoate pathway) has been analyzed. We report here our earlier developed auxin inducible culture systems of Hypericum hookerianum as a model, to study the metabolic pathway to hypericin synthesis. Inhibitors of the alternate pathway at varying concentrations showed steady synthesis of total hypericins with means of 2.80 +/- 0.22, 18.75 +/- 0.01; 16.39 +/- 3.75, 29.60 +/- 1.90 (mevinolin) 2.53 +/- 0.10, 18.12 +/- 0.56; 0.14 +/- 0.01, 14.28 +/- 1.11 (fosmidomycin) and 2.7 +/- 0.35, 18.75 +/- 0.61; 0.14 +/- 0.01, 12.80 +/- 1.09 mg g(-1) DW (glyphosate) in the control and auxin-induced shoot and shoot-forming callus cultures, respectively. SSH analysis classified the differentially expressed sequences into protein synthesis (38%), modification (20%), electron transport (9%) and remaining as unclassified (11%) and unknown proteins (22%). Functional annotation of sequences indicates the presence of additional protein components besides PKS activity. Our results demonstrate direct biochemical and molecular evidence of PKS hypothesis of hypericin biosynthesis for the first time. (C) 2014 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:推测金丝桃素生物合成的生化途径是由​​聚酮化合物合酶(PKS)介导的,但尚未通过实验验证,也没有分析任何替代途径(丁香酸酯/邻琥珀酸苯甲酸酯途径)。我们在这里报告我们较早开发的金丝桃属植物生长素诱导型培养系统作为模型,以研究金丝桃素合成的代谢途径。交替途径的抑制剂在不同浓度下显示出总金丝桃素稳定合成,平均值为2.80 +/- 0.22、18.75 +/- 0.01。 16.39 +/- 3.75、29.60 +/- 1.90(mevinolin)2.53 +/- 0.10、18.12 +/- 0.56; 0.14 +/- 0.01、14.28 +/- 1.11(磷霉素)和2.7 +/- 0.35、18.75 +/- 0.61;在对照和生长素诱导的芽和芽形成愈伤组织培养物中分别添加0.14 +/- 0.01、12.80 +/- 1.09 mg g(-1)DW(草甘膦)。 SSH分析将差异表达的序列分为蛋白质合成(38%),修饰(20%),电子传输(9%),并保留为未分类(11%)和未知蛋白质(22%)。序列的功能注释表明除PKS活性外还存在其他蛋白质成分。我们的结果首次证明了金丝桃素生物合成的PKS假设的直接生化和分子证据。 (C)2014年科学研究院。由Elsevier Masson SAS发布。版权所有。

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