Production of α-1,3-L-arabinofuranosidase active on substituted xylan does not improve compost degradation by Agaricus bisporus

Publication date

2018

Authors

Vos, A.M.ISNI 0000000493228732
Jurak, EditaISNI 0000000436369299
de Gijsel, Peter
Ohm, R.A.ISNI 0000000394131652
Henrissat, Bernard
Lugones, L.G.ISNI 0000000388048967
Kabel, Mirjam A
Wosten, HanISNI 0000000395913701

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Abstract

Agaricus bisporus consumes carbohydrates contained in wheat straw based compost used for commercial mushroom production. Double substituted arabinoxylan is part of the ~40% of the compost polysaccharides that are not degraded by A. bisporus during its growth and development. Genes encoding α-1,3-l-arabinofuranosidase (AXHd3) enzymes that act on xylosyl residues doubly substituted with arabinosyl residues are absent in this mushroom forming fungus. Here, the AXHd3 encoding hgh43 gene of Humicola insolens was expressed in A. bisporus with the aim to improve its substrate utilization and mushroom yield. Transformants secreted active AXHd3 in compost as shown by the degradation of double substituted arabinoxylan oligomers in an in vitro assay. However, carbohydrate composition and degree of arabinosyl substitution of arabinoxylans were not affected in compost possibly due to inaccessibility of the doubly substituted xylosyl residues.

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Vos, A M, Jurak, E, de Gijsel, P, Ohm, R A, Henrissat, B, Lugones, L G, Kabel, M A & Wösten, H A B 2018, 'Production of α-1,3-L-arabinofuranosidase active on substituted xylan does not improve compost degradation by Agaricus bisporus', PLoS One, vol. 13, no. 7, e0201090, pp. 1-12. https://doi.org/10.1371/journal.pone.0201090