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Lolium perenne apoplast metabolomics for identification of novel metabolites produced by the symbiotic fungus Epichloë festucae. | LitMetric

AI Article Synopsis

  • Epichloë festucae is a fungus that lives inside the ryegrass Lolium perenne and can affect its metabolome, which consists of various small molecules involved in plant metabolism.
  • The study analyzed the differences in metabolites between infected and uninfected ryegrass by using metabolite fingerprinting and genetic tools to identify unique compounds resulting from the fungal infection.
  • Researchers successfully identified known endophyte metabolites like peramine, discovered many unknown metabolites, and recognized a new glycoside metabolite produced in plants infected with a wild-type compared to mutants lacking a specific gene.

Article Abstract

Epichloë festucae is an endophytic fungus that forms a symbiotic association with Lolium perenne. Here we analysed how the metabolome of the ryegrass apoplast changed upon infection of this host with sexual and asexual isolates of E. festucae. A metabolite fingerprinting approach was used to analyse the metabolite composition of apoplastic wash fluid from uninfected and infected L. perenne. Metabolites enriched or depleted in one or both of these treatments were identified using a set of interactive tools. A genetic approach in combination with tandem MS was used to identify a novel product of a secondary metabolite gene cluster. Metabolites likely to be present in the apoplast were identified using MarVis in combination with the BioCyc and KEGG databases, and an in-house Epichloë metabolite database. We were able to identify the known endophyte-specific metabolites, peramine and epichloëcyclins, as well as a large number of unknown markers. To determine whether these methods can be applied to the identification of novel Epichloë-derived metabolites, we deleted a gene encoding a NRPS (lgsA) that is highly expressed in planta. Comparative MS analysis of apoplastic wash fluid from wild-type- vs mutant-infected plants identified a novel Leu/Ile glycoside metabolite present in the former.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7317419PMC
http://dx.doi.org/10.1111/nph.16528DOI Listing

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