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Ambrosia beetles farm their own food fungi within tunnel systems in wood and are among the three insect lineages performing agriculture (the others are fungus-farming ants and termites). In ambrosia beetles, primary ambrosia fungus cultivars have been regarded essential, whereas other microbes have been more or less ignored. Our KEGG analyses suggest so far unknown roles of yeasts and bacterial symbionts, by preparing the tunnel walls for the primary ambrosia fungi. This preparation includes enzymatic degradation of wood, essential amino acid production, and nitrogen fixation. The latter is especially exciting because if it turns out to be presentin vivoin ambrosia beetles, all farming animals (including humans) are dependent on atmospheric nitrogen fertilization of their crops. As previous internal transcribed spacer (ITS) metabarcoding approaches failed on covering the primary ambrosia fungi, our 18S metabarcoding approach can also serve as a template for future studies on the ambrosia beetle-fungus symbiosis.
Insekten, 570, Mikrobiom (Genetik), Mutualismus, microbiome, 595, Microbiology, QR1-502, Borkenkäfer, mycobiome, Xyleborus affinis, Research Article
Insekten, 570, Mikrobiom (Genetik), Mutualismus, microbiome, 595, Microbiology, QR1-502, Borkenkäfer, mycobiome, Xyleborus affinis, Research Article
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