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Production of α-13-L-arabinofuranosidase active on substituted xylan does not improve compost degradation by Agaricus bisporus

机译:对取代的木聚糖有活性的α-13-L-阿拉伯呋喃糖苷酶的产生不能改善双孢蘑菇的堆肥降解

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摘要

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.
机译:双孢蘑菇采食麦秸基堆肥中所含的碳水化合物,用于商业性蘑菇生产。双取代的阿拉伯木聚糖是堆肥多糖的约40%的一部分,在其生长和发育过程中不会被双孢曲霉降解。在这种形成蘑菇的真菌中不存在编码作用于被阿拉伯糖基残基双取代的木糖基残基的α-1,3--1-阿拉伯呋喃糖苷酶(AXHd3)酶的基因。在这里,编码双链腐质霉的hgh43基因的AXHd3在双孢蘑菇中表达,目的是提高其底物利用率和蘑菇产量。转化子在堆肥中分泌了活性AXHd3,如体外实验中双取代的阿拉伯木聚糖低聚物的降解所示。然而,可能由于双取代的木糖基残基的不可及性,堆肥中的碳水化合物组成和阿拉伯木聚糖的阿拉伯糖基取代度没有受到影响。

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