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首页> 外文期刊>International Biodeterioration & Biodegradation >The quest for fungal strains and their co-culture potential to improve enzymatic degradation of Chinese distillers' grain and other agricultural wastes
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The quest for fungal strains and their co-culture potential to improve enzymatic degradation of Chinese distillers' grain and other agricultural wastes

机译:寻求真菌菌株及其共同文化潜力,提高中国蒸馏液和其他农业废物的酶促降解

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摘要

Distillers' grain (DG) is one of the lignocellulosic agricultural waste streams having a high potential for biofuel production, however it is causing health and environmental problems in Southwest region of China because of improper treatment before being used for landfill. Here, we aimed to identify fungal strains that efficiently hydrolyze DG and explored the possibility to further improve the hydrolysis of DG and other agricultural wastes by co-culturing these fungi. The tested fungal strains included 11 strains that were isolated from DG (Maotai Town, Guizhou, China) and 19 strains that were selected from the CBS collection of Westerdijk Fungal Biodiversity Institute. Aspergillus niger CBS 110.42 and CBS 554.65 and Phanerochaete chrysosporium CBS 246.84 showed overall best cellulose and xylan degrading activity, whereas high laccase and peroxidase activities were detected for Oidiodendron echinulatum CBS 113.65 and Bjerkandera adusta CBS 143380, respectively. Furthermore, A. niger CBS 554.65 co-cultured with Trichoderma reesei CBS 383.78 and A. niger CBS 110.42 with P. chrysosporium CBS 246.84 showed the best improvement (up to 2- and 3-fold higher of beta-glucosidase and beta-xylosidase activities). These fungi and the combinations have strong potential to be further developed for local bioenergy production.
机译:蒸馏器的谷物(DG)是木质纤维素农业废物流之一,具有高潜力的生物燃料生产,但由于在用于垃圾填埋场之前治疗不当导致中国西南地区的健康和环境问题。在这里,我们旨在鉴定有效水解DG的真菌菌株并探讨通过共同培养这些真菌进一步改善DG和其他农业废物的水解的可能性。测试的真菌菌株包括从DG(茅台镇,贵州,中国)和19个菌株中分离的11个菌株,这些菌株选自韦斯特达德斯真菌生物多样性研究所的CBS集合。曲霉菌CBS 110.42和CBS 554.65和Phanerochaete Chrysporium CBS 246.84显示出总体最佳的纤维素和木聚糖降解活性,而分别检测到OidioDendron Echinulatum CBS 113.65和Bjerkandera Adusta CBS 143380的高漆酶和过氧化物酶活性。此外,A.尼日尔CBS 554.65与Trichoderma Reesei CBS 383.78和A.Niger CBS 110.42与P. Chrysosperium 246.84的奈埃CBS 110.42共同培养,表现出最佳改进(β-葡糖苷酶和β-木糖苷酶和β-木糖苷酶活性的最佳改善(高达2倍和3倍)。这些真菌和组合具有强大的潜力,可以进一步发展局部生物能源生产。

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  • 作者单位

    Guizhou Med Univ Sch Basic Med Sci Key Lab Med Microbiol &

    Parasitol Guiyang 550025 Guizhou Peoples R China;

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    Yunnan Univ Lab Conservat &

    Utilizat Bioresources Kunming 650091 Yunnan Peoples R China;

    Second Mil Med Univ Shanghai Changzheng Hosp Shanghai Inst Med Mycol Dept Dermatol Shanghai Key Lab Mol Med Mycol Med Shanghai 200003 Peoples R China;

    Guizhou Med Univ Sch Basic Med Sci Key Lab Med Microbiol &

    Parasitol Guiyang 550025 Guizhou Peoples R China;

    Guizhou Med Univ Sch Basic Med Sci Key Lab Med Microbiol &

    Parasitol Guiyang 550025 Guizhou Peoples R China;

    Univ Utrecht Westerdijk Fungal Biodivers Inst Fungal Physiol Uppsalalaan 8 NL-3584 CT Utrecht Netherlands;

    Guizhou Med Univ Sch Basic Med Sci Key Lab Med Microbiol &

    Parasitol Guiyang 550025 Guizhou Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学 ;
  • 关键词

    Fungi; Co-culture; Distillers' grain; Saccharification; Biomass; Lignocellulose;

    机译:真菌;共同文化;蒸馏器的谷物;糖化;生物量;木质纤维素;

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