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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Optimizing edible fungal growth and biodegradation of inedible crop residues using various cropping methods
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Optimizing edible fungal growth and biodegradation of inedible crop residues using various cropping methods

机译:使用各种种植方法优化食用真菌的生长和不可食用作物残渣的生物降解

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摘要

Long-term manned space flights to Mars require the development of an advanced life support (ALS) ecosystem including efficient food crop production, processing and recycling waste products thereof. Using edible white rot fungi (EWRF) to achieve effective biomass transformation in ALS requires optimal and rapid biodegradative activity oil lignocellulosic wastes. We investigated the mycelial growth of Lentinula edodes and Pleurotus ostreatus on processed residues of various crops under various cropping patterns. In single cropping, mycelial growth and fruiting in all strains were significantly repressed on sweet potato and basil. However, growth of the strains was improved when sweet potato and basil residues were paired with rice or wheat straw. Oyster mushroom (Pleurotus) strains were better than shiitake (L. edodes) strains under single, paired, and mixed cropping patterns. Mixed cropping further eliminated the inherent inhibitory effect of sweet potato, basil, or lettuce on fungal growth. Co-cropping fungal species had a synergistic effect on rate of fungal growth, substrate colonization, and fruiting. Use of efficient cropping methods may enhance fungal growth, fruiting, biodegradation of crop residues, and efficiency of biomass recycling. (C) 2007 Elsevier Ltd. All rights reserved.
机译:飞往火星的长期有人驾驶太空飞行需要开发先进的生命支持(ALS)生态系统,包括高效的粮食作物生产,加工和回收其废物。使用可食用的白腐真菌(EWRF)在ALS中实现有效的生物量转化需要石油木质纤维素废料具有最佳且快速的生物降解活性。我们调查了不同种植方式下香菇和平菇菌丝在各种农作物加工残渣上的菌丝生长。在单作中,甘薯和罗勒对所有菌株的菌丝体生长和结果均显着抑制。但是,当甘薯和罗勒残渣与大米或麦秸杆配对时,菌株的生长得到改善。在单一,成对和混合种植模式下,牡蛎蘑菇(侧耳属)菌株优于香菇(L. edodes)菌株。混合种植进一步消除了甘薯,罗勒或生菜对真菌生长的内在抑制作用。共同种植的真菌种类对真菌的生长速度,底物定植和结果有协同作用。使用有效的种植方法可以增强真菌的生长,结实,作物残留物的生物降解以及生物质循环利用的效率。 (C)2007 Elsevier Ltd.保留所有权利。

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