Aug 2026· International Journal of Molecular Sciences· Vol 27, pp. 7751· 0 citations· 88 references
Medicine
TL;DR
Comparison revealed that the branching initiation stage, characterized by low arbuscule abundance in ineffective treatment, is likely a main critical metabolic transition determining symbiosis efficiency, with effective AM inducing the most pronounced metabolome rearrangements in development.
Abstract
The mechanisms underlying the symbiotic efficiency of arbuscular mycorrhizal (AM) fungi are actively debated, but comparative metabolomic studies with fungi of contrasting efficiency are scarce. This study aimed to evaluate the influence of effective (Rhizophagus irregularis RCAM00320) and ineffective (Glomus sp. 129.1Te) AM fungal strains on the root metabolome of the responsive Medicago lupulina line MlS-1 at two vegetative and two reproductive stages. Using GC-MS, over 150 metabolites (amino acids, carboxylic and fatty acids, sugars, etc.) were annotated. Effective AM symbiosis was associated with increased levels of phosphoric acid, trehalose, and free fatty acids 16:1, as well as a decreased pool of tricarboxylic acid cycle intermediates (citrate, malate, succinate) and a reduction in γ-aminobutyric acid from the branching stage to fruiting. The comparison revealed that the branching initiation stage, characterized by low arbuscule abundance in ineffective treatment, is likely a main critical metabolic transition determining symbiosis efficiency. Novel metabolic markers of effective AM were identified. Network analysis revealed a divergence of amino acid and fatty acid clusters under effective mycorrhization, whereas under ineffective mycorrhization these clusters were less separated and closely linked in the control. Thus, inoculation with strains of contrasting efficiency generates distinct phenotypes, with effective AM inducing the most pronounced metabolome rearrangements in development.
Overall, mycorrhizal fungal inoculation reshaped the chemical composition and the major bioactive compounds of Oregano, thereby enhancing its nutritional and antimicrobial potential.
Goal. To evaluate the fungistatic activity of the preparations LS-1, WS (silver lactate, 1 g/l silver) and Mikosan, LC (alkaline extract of the aphyllophorous fungus Fomes fomentarius, 30 g/l + glucans, 6 g/l) against fungal pathogens of the genera Neopestalotiopsis, Fusarium and Rhizoctonia under in vitro conditions....
D. Zlenko, O. Afanasieva· Karantin i zahist roslin· 0 citations
Microbial strains belonging to the Actinomycetota phylum are known as plant growth-promoting (PGP) bacteria and are considered promising candidates for the development of biofertilizers due to their metabolic ability to produce diverse bioactive compounds. In this work, the actinomycetotal strains Kocuria rhizophila PA...
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The herbicidal mechanism of rubratoxin B (RB), a mycotoxin produced by Talaromyces purpureogenus XJ14C02 strain isolated from soil in Xinjiang, China is elucidated and multi-omics integration coupled with mutant validation identifies PAL, 4CL, and F3H as critical functional mediators of RB phytotoxicity.
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