Literature DB >> 25282172

Hypericin biosynthesis in Hypericum hookerianum Wight and Arn: investigation on biochemical pathways using metabolite inhibitors and suppression subtractive hybridization.

Padmesh P Pillai1, Aswati R Nair2.   

Abstract

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.
Copyright © 2014 Académie des sciences. Published by Elsevier SAS. All rights reserved.

Entities:  

Keywords:  Fosmidomycin; Glyphosate; Hypericin; Hypericum hookerianum; Mevinolin; SSH; Type III PKS

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Year:  2014        PMID: 25282172     DOI: 10.1016/j.crvi.2014.08.002

Source DB:  PubMed          Journal:  C R Biol        ISSN: 1631-0691            Impact factor:   1.583


  3 in total

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Authors:  Sonja Gadzovska Simic; Oliver Tusevski; Stéphane Maury; Alain Delaunay; Claude Joseph; Daniel Hagège
Journal:  ScientificWorldJournal       Date:  2014-12-11

3.  Genome-enabled discovery of anthraquinone biosynthesis in Senna tora.

Authors:  Sang-Ho Kang; Ramesh Prasad Pandey; Chang-Muk Lee; Joon-Soo Sim; Jin-Tae Jeong; Beom-Soon Choi; Myunghee Jung; Daniel Ginzburg; Kangmei Zhao; So Youn Won; Tae-Jin Oh; Yeisoo Yu; Nam-Hoon Kim; Ok Ran Lee; Tae-Ho Lee; Puspalata Bashyal; Tae-Su Kim; Woo-Haeng Lee; Charles Hawkins; Chang-Kug Kim; Jung Sun Kim; Byoung Ohg Ahn; Seung Yon Rhee; Jae Kyung Sohng
Journal:  Nat Commun       Date:  2020-11-18       Impact factor: 14.919

  3 in total

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