Abstract
The Antarctic krill ( Euphausia superba ) is a keystone species of the Antarctic marine food web, connecting the productivity of phyto- and zooplankton with the nutrition of the higher trophic levels. Accordingly, krill significantly contributes to biomass turnover, requiring the decomposition of seasonally varying plankton-derived biopolymers. This study highlights the likely role of the krill gut microbiota in this ecosystem function by revealing the great number of diverse hydrolases that microbes contribute to the krill gut environment. The here resolved repertoire of hydrolytic enzymes could contribute to the overall nutritional resilience of krill and to the general organic matter cycling under changing environmental conditions in the Antarctic sea water. Furthermore, the krill gut microbiome could serve as a valuable resource of cold-adapted hydrolytic enzymes for diverse biotechnological applications.
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CITATION STYLE
Möller, L., Vainshtein, Y., Meyer, B., Neidhardt, J., Eren, A. M., Sohn, K., & Rabus, R. (2024). Rich microbial and depolymerising diversity in Antarctic krill gut. Microbiology Spectrum, 12(4). https://doi.org/10.1128/spectrum.04035-23
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