浙江农业学报 ›› 2026, Vol. 38 ›› Issue (7): 1463-1470.DOI: 10.3969/j.issn.1004-1524.20260071

• 生物系统工程 • 上一篇    下一篇

产油脂纤维素降解菌株的分离鉴定与特性初探

孙梦怡a(), 李含嫣a, 徐瑜菡a, 毛思怡a, 孟子良b, 王文琛a, 孙浩伟a, 王姿懿a, 屈建航a, 赵帅a,*()   

  1. a 河南工业大学 生物工程学院,河南 郑州 450001
    b 河南工业大学 国际教育学院,河南 郑州 450001
  • 收稿日期:2026-01-27 出版日期:2026-07-25 发布日期:2026-08-20
  • 作者简介:孙梦怡,研究方向为环境微生物学。E-mail:sunmengyi0320@163.com
  • 通讯作者: *赵帅,E-mail: zhaosh@haut.edu.cn
  • 基金资助:
    国家自然科学基金青年科学基金(32500089)

Isolation, identification and preliminary characterization of lipid-producing cellulose-degrading strains

SUN Mengyia(), LI Hanyana, XU Yuhana, MAO Siyia, MENG Ziliangb, WANG Wenchena, SUN Haoweia, WANG Ziyia, QU Jianhanga, ZHAO Shuaia,*()   

  1. a School of Biological Engineering,Henan University of Technology,Zhengzhou 450001,China
    b School of International Education,Henan University of Technology,Zhengzhou 450001,China
  • Received:2026-01-27 Published:2026-07-25 Online:2026-08-20

摘要: 我国作为全球主要能源消耗大国,正面临化石能源依赖与生态环境污染的双重严峻挑战,开发利用可再生清洁能源,已成为破解这一发展困境的关键路径。近年来,依托功能微生物转化纤维素合成微生物油脂作为生物柴油原料,被视为极具前景的化石能源替代资源。基于此,本研究以羧甲基纤维素钠为唯一碳源,从牛粪中分离筛选得到3株兼具产油和纤维素降解的功能菌株,测定其纤维素降解能力和相应酶的活性以及油脂含量,并对菌株进行分类鉴定。结果表明,3株菌株均能促进秸秆降解,菌株42、47a、59a处理5 d后的秸秆失重率分别为18.30%、18.34%和18.79%,滤纸酶活性的最高值分别为10.35、8.84、3.67 U·mL-1,羧甲基纤维素酶活性的最高值分别为12.78、14.23、5.24 U·mL-1,β-葡萄糖苷酶活性的最高值分别为4.36、16.48、4.45 U·mL-1。菌株42、47a、59a转化纤维素合成油脂的能力均在第4天最强,油脂含量分别为34.94%、69.82%、39.25%。经16S rRNA基因序列分析,菌株42、47a和59a分别与Calidifontibacillus erzurumensis(埃尔祖鲁姆嗜热芽孢杆菌)P2、Bacillus stercoris(粪芽孢杆菌)D7XPN1和Bacillus safensis(沙福芽孢杆菌)NBRC的亲缘关系最近。

关键词: 纤维素降解, 微生物油脂, 菌株筛选, 秸秆资源化

Abstract:

As a major global energy consumer, China is confronting the dual severe challenges of fossil fuel dependence and ecological environmental pollution. The development and utilization of renewable clean energy has emerged as a crucial pathway to address this developmental dilemma. In recent years, the conversion of cellulose by functional microorganisms for microbial lipid synthesis, which is regarded as a promising feedstock for biodiesel production, has been recognized as a viable alternative to fossil fuels. In the present study, three functional strains with both lipid-producing and cellulose-degrading capacities were isolated and screened from cow dung, using sodium carboxymethylcellulose (CMC-Na) as the sole carbon source. Their cellulose degradation efficiency, corresponding enzymes activities, lipid accumulation, and taxonomic identity were systematically determined and analyzed. The results demonstrated that all three strains effectively promoted straw degradation. After 5 days of treatment, the straw weight loss rates induced by strains 42, 47a, and 59a were 18.30%, 18.34%, and 18.79%, respectively. The maximum filter paper enzyme activities of these strains were 10.35, 8.84, 3.67 U·mL-1; the maximum carboxymethyl cellulase activities were 12.78, 14.23, 5.24 U·mL-1; and the maximum β-glucosidase activities were 4.36, 16.48, 4.45 U·mL-1, respectively. Notably, the cellulose-to-lipid conversion capacity of all three strains peaked on the 4th day, with lipid contents reaching 34.94%, 69.82%, and 39.25% for strains 42, 47a, and 59a, respectively. Based on 16S rRNA gene sequence analysis, strains 42, 47a, and 59a showed the highest phylogenetic similarity to Calidifontibacillus erzurumensis P2, Bacillus stercoris D7XPN1, and Bacillus safensis NBRC, respectively.

Key words: cellulose degradation, microbial lipids, strain screening, straw resource utilization

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