Cycling in degradation of organic polymers and uptake of nutrients by a litter-degrading fungus

Publication date

2021-01

Authors

Vos, A.M.ISNI 0000000493228732
Bleichrodt, R.ISNI 0000000387588371
Herman, K. C.ISNI 0000000492796092
Ohm, Robin A.ISNI 0000000394131652
Scholtmeijer, Karin
Schmitt, HeikeISNI 000000039053231X
Lugones, Luis GISNI 0000000388048967
Wösten, Han A BISNI 0000000395913701

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Document Type

Article
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cc_by

Abstract

Wood and litter degrading fungi are the main decomposers of lignocellulose and thus play a key role in carbon cycling in nature. Here, we provide evidence for a novel lignocellulose degradation strategy employed by the litter degrading fungus Agaricus bisporus (known as the white button mushroom). Fusion of hyphae allows this fungus to synchronize the activity of its mycelium over large distances (50 cm). The synchronized activity has a 13-h interval that increases to 20 h before becoming irregular and it is associated with a 3.5-fold increase in respiration, while compost temperature increases up to 2°C. Transcriptomic analysis of this burst-like phenomenon supports a cyclic degradation of lignin, deconstruction of (hemi-) cellulose and microbial cell wall polymers, and uptake of degradation products during vegetative growth of A. bisporus. Cycling in expression of the ligninolytic system, of enzymes involved in saccharification, and of proteins involved in nutrient uptake is proposed to provide an efficient way for degradation of substrates such as litter.

Keywords

Microbiology, Ecology, Evolution, Behavior and Systematics

Citation

Vos, A M, Bleichrodt, R-J, Herman, K C, Ohm, R A, Scholtmeijer, K, Schmitt, H, Lugones, L G & Wösten, H A B 2021, 'Cycling in degradation of organic polymers and uptake of nutrients by a litter-degrading fungus', Environmental Microbiology, vol. 23, no. 1, pp. 224-238. https://doi.org/10.1111/1462-2920.15297