General Information of Natural Product (ID: NP1381)
  Natural Product Name
(3S)-3,4-Dihydro-5,8-Dihydroxy-3-Hydroxymethyl-1H-2-Benzopyran-1-One
  Synonyms
Botryoisocoumarin A; (3S)-3,4-Dihydro-5,8-dihydroxy-3-hydroxymethyl-1H-2-benzopyran-1-one
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  Formula C10H10O5
  Weight 210.18
  Structure Could Not Find 2D Structure
3D Structure Download 2D Structure Download
  InChI InChI=1S/C10H10O5/c11-4-5-3-6-7(12)1-2-8(13)9(6)10(14)15-5/h1-2,5,11-13H,3-4H2/t5-/m0/s1
  InChI Key ZWUDMMSALBLKBH-YFKPBYRVSA-N
  Isomeric SMILES C1[C@H](OC(=O)C2=C(C=CC(=C21)O)O)CO
  Canonical SMILES C1C(OC(=O)C2=C(C=CC(=C21)O)O)CO
  External Links PubChem ID 122372566

 The Content Variation of Natural Product Induced by Different Factor(s)
      Species Name: Aspergillus flocculosus strain CBS 112784
  Factor Name: Rice medium [1]
              Species Info Factor Info
               Experiment Detail
Fungal material: The endophytic fungus was isolated from the fresh stems of Markhamia platycalyx family (Bignoniaceae) collected in October 2010 from Al-Zohriya gardens (Al-Zamalek, Giza, Egypt). Small-scale fermentation: A small-scale fermentation was carried out in two Erlenmeyer flasks (1 L each) on rice medium, which was prepared with 100 g of rice powder and approximately 100 mL of demineralized water just enough to cover the rice layer. The rice media was autoclaved prior to fungal inoculation. A 15-day fungal inoculum grown on petri dish was inoculated on the sterile rice medium and was allowed to grow at room temperature under static condition for 30 days. Medium-scale 30-day rice culture fermentation: A medium scale fermentation was performed in 10 Erlenmeyer flasks (1 L each) on rice solid medium for 30 days under same condition applied to small scale culture.
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               Factor Part Location NP Content
 
Medium-scale fermentation: Rice medium (25℃ + 30 days)
Fresh stems Al-Zamalek, Giza, Egypt
NP Content: 11 mg
References
1 Isolation of anticancer and anti-trypanosome secondary metabolites from the endophytic fungus Aspergillus flocculus via bioactivity guided isolation and MS based metabolomics