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首页> 外文期刊>Mycologia >Variations of lignocellulosic activities in dual cultures of Pleurotus ostreatus and Trichoderma longibrachiatum on unsterilized wheat straw
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Variations of lignocellulosic activities in dual cultures of Pleurotus ostreatus and Trichoderma longibrachiatum on unsterilized wheat straw

机译:未灭菌小麦秸秆平菇和长木霉双重培养中木质纤维素活性的变化

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Trichoderma spp., soil filamentous fungi, are antagonists that can cause great losses in mushroom production. We have investigated the influence of T. longibrachiatum on the production of lignocellulolytic enzymes by Pleurotus ostreatus during its vegetative growth on a straw-based cultivation substrate that either had been sterilized, pasteurized or not heat treated. The variations in the lignocellulolytic activities and the electrophoretic patterns in single and dual cultures were used as a tool for perturbation assessment. The various heat treatments of the wheat straw before inoculation affected both the bacterial populations and the abilities of T. longibrachiatum and P. ostreatus to colonize the substrate and to produce extracellar lignocellulolytic enzymes. Interactions between T. longibrachiatum and the microflora of the substrate led to a great decrease of hydrolytic activities due to reduced colonization of the substrate. Pleurotus ostreatus also was affected but it was less sensitive than T. longibrachiatum. As a consequence, in dual cultures with P. ostreatus, the competitive ability of T. longibrachiatum was reduced by bacteria in the substrates. The presence of total microflora or thermotolerant microflora increased the production of phenoloxidase activities by P. ostreatus, despite reduced colonization of the substrate. This contributed to the improvement of the competitive ability of P. ostreatus in the pasteurized substrate. Furthermore, a direct effect of bacteria on T. longibrachialum also was observed. In sterilized substrate, both laccase and Mn-peroxydase activities were increased dramatically in dual cultures due to a faster production of a laccase isoform, which was stimulated by T. longibrachiatuni.
机译:木霉菌,土壤丝状真菌,是可以在蘑菇生产中造成巨大损失的拮抗剂。我们已经研究了长曲霉对平菇在营养基础上在经过灭菌,巴氏灭菌或未经热处理的稻草栽培基质上生长过程中,对平菇产生木质纤维素分解酶的影响。单和双培养中木质纤维素分解活性和电泳模式的变化被用作扰动评估的工具。接种前小麦秸秆的各种热处理既影响细菌种群,又影响长支原木和平菇的定殖并产生细胞外木质纤维素分解酶的能力。 T. longibrachiatum和底物微生物区系之间的相互作用导致水解活性大大降低,原因是底物的定居减少。平菇同样也受到了影响,但它不如长臂梭菌敏感。结果,在与P. ostreatus的双重培养中,底物中的细菌降低了T. longibrachiatum的竞争能力。尽管减少了底物的定殖,总微生物区系或耐热微生物区系的存在增加了P. ostreatus对酚氧化酶活性的产生。这有助于提高巴氏灭菌后的基质中P. ostreatus的竞争能力。此外,还观察到细菌对长臂烟草的直接作用。在灭菌的底物中,由于更快地产生了由长双歧杆菌刺激的漆酶同工型,在双重培养中漆酶和Mn-过氧化物酶的活性均显着增加。

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