Four gene products are required for the fungal synthesis of the indole-diterpene, paspaline.
about
Plant-symbiotic fungi as chemical engineers: multi-genome analysis of the clavicipitaceae reveals dynamics of alkaloid lociIdentification of the viridicatumtoxin and griseofulvin gene clusters from Penicillium aethiopicumBiosynthesis of fungal indole alkaloidsDeletion and gene expression analyses define the paxilline biosynthetic gene cluster in Penicillium paxilli.Draft Genome Sequence of the Filamentous Fungus Penicillium paxilli (ATCC 26601)Defining paxilline biosynthesis in Penicillium paxilli: functional characterization of two cytochrome P450 monooxygenases.Indole-diterpene biosynthetic capability of epichloë endophytes as predicted by ltm gene analysis.Association of fungal secondary metabolism and sclerotial biology.Molecular Cloning and Functional Analysis of Gene Clusters for the Biosynthesis of Indole-Diterpenes in Penicillium crustosum and P. janthinellum.Gene expression during zombie ant biting behavior reflects the complexity underlying fungal parasitic behavioral manipulationTwo separate gene clusters encode the biosynthetic pathway for the meroterpenoids austinol and dehydroaustinol in Aspergillus nidulans.Natural products of filamentous fungi: enzymes, genes, and their regulation.Identification of two aflatrem biosynthesis gene loci in Aspergillus flavus and metabolic engineering of Penicillium paxilli to elucidate their function.Prenylated indole derivatives from fungi: structure diversity, biological activities, biosynthesis and chemoenzymatic synthesis.Terpenoid biosynthesis off the beaten track: unconventional cyclases and their impact on biomimetic synthesis.Biosynthesis of fungal meroterpenoids.Natural products from filamentous fungi and production by heterologous expressionFunctional analysis and subcellular localization of two geranylgeranyl diphosphate synthases from Penicillium paxilli.Functional analysis of a prenyltransferase gene (paxD) in the paxilline biosynthetic gene cluster.Functional analysis of an indole-diterpene gene cluster for lolitrem B biosynthesis in the grass endosymbiont Epichloë festucae.Inactivation of the indole-diterpene biosynthetic gene cluster of Claviceps paspali by Agrobacterium-mediated gene replacement.
P2860
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P2860
Four gene products are required for the fungal synthesis of the indole-diterpene, paspaline.
description
2006 nî lūn-bûn
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2006年の論文
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name
Four gene products are require ...... e indole-diterpene, paspaline.
@en
Four gene products are require ...... e indole-diterpene, paspaline.
@nl
type
label
Four gene products are require ...... e indole-diterpene, paspaline.
@en
Four gene products are require ...... e indole-diterpene, paspaline.
@nl
prefLabel
Four gene products are require ...... e indole-diterpene, paspaline.
@en
Four gene products are require ...... e indole-diterpene, paspaline.
@nl
P2860
P1433
P1476
Four gene products are require ...... e indole-diterpene, paspaline.
@en
P2093
Barry Scott
Sanjay Saikia
P2860
P304
P356
10.1016/J.FEBSLET.2006.02.008
P407
P577
2006-02-17T00:00:00Z