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1.
Chem Biodivers ; 21(6): e202400395, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38623912

ABSTRACT

Endophytic fungi live asymptomatically inside vegetal tissues, and such uncommon habitat contributes to their exceptional chemical diversity. Isolating natural products from endophytic fungi could fail due to silent biosynthetic gene clusters under ordinary in vitro culture conditions, and co-culturing has been assayed to trigger their metabolism. We carried out single and dual cultures with 13 endophyte strains isolated from Euphorbia umbellata leaves. Multivariate statistics applied to untargeted metabolomics compared the chemical profiles of all endophyte cultures. PCA analysis guided the selection of the Aspergillus pseudonomiae J1 - Porogramme brasiliensis J9 dual culture for its most significant chemical differentiation: Five compounds were putatively annotated in the J1-J9 culture according to UHPLC-HRMS data, kojic acid, haliclonol and its diastereoisomer, caffeic acid, and 2-(3,4-dihydroxyphenyl)acetaldehyde. Analysis by PLS-DA using VIP score showed that kojic acid displayed the most significative importance in discriminating single and dual J1-J9 cultures.


Subject(s)
Endophytes , Euphorbia , Metabolomics , Euphorbia/chemistry , Euphorbia/microbiology , Endophytes/chemistry , Endophytes/metabolism , Endophytes/isolation & purification , Plant Leaves/microbiology , Plant Leaves/chemistry , Chromatography, High Pressure Liquid , Pyrones/chemistry , Pyrones/isolation & purification , Pyrones/metabolism , Aspergillus/metabolism , Aspergillus/chemistry , Aspergillus/isolation & purification
2.
Environ Microbiol ; 17(8): 2709-20, 2015 Aug.
Article in English | MEDLINE | ID: mdl-25243926

ABSTRACT

Land-use changes and forest fragmentation have strong impact on biodiversity. However, little is known about the influence of new landscape configurations on arbuscular mycorrhizal fungal (AMF) community composition. We used 454 pyrosequencing to assess AMF diversity in plant roots from a fragmented forest. We detected 59 virtual taxa (VT; phylogenetically defined operational taxonomic units) of AMF - including 10 new VT - in the roots of Euphorbia acerensis. AMF communities were mainly composed of members of family Glomeraceae and were similar throughout the fragmented landscape, despite variation in forest fragment size (i.e. small, medium and large) and isolation (i.e. varying pairwise distances). AMF communities in forest fragments were phylogenetically clustered compared with the global, but not regional and local AMF taxon pools. This indicates that non-random community assembly processes possibly related to dispersal limitation at a large scale, rather than habitat filtering or biotic interactions, may be important in structuring the AMF communities. In this system, forest fragmentation did not appear to influence AMF community composition in the roots of the ruderal plant. Whether this is true for AMF communities in soil and the roots of other ecological groups of host plants or in other habitats deserves further study.


Subject(s)
Euphorbia/microbiology , Forests , Fungi/classification , Glomeromycota/genetics , Microbiota , Mycorrhizae , Base Sequence , Biodiversity , DNA, Fungal/genetics , Fungi/genetics , Fungi/isolation & purification , Phylogeny , Sequence Analysis, DNA , Soil , Soil Microbiology
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