纤维素
细菌
食品科学
地衣芽孢杆菌
化学
稻草
生物降解
蜡样芽孢杆菌
枯草芽孢杆菌
生物
生物化学
有机化学
遗传学
无机化学
作者
Yingxin Li,Eiko E. Kuramae,Fahad Nasir,Enze Wang,Zhengang Zhang,Ji Li,Zongmu Yao,Lei Tian,Yu Sun,Suhua Luo,Lei Guo,Guohao Ren,Chunjie Tian
标识
DOI:10.1016/j.biortech.2023.129132
摘要
To excavate a complex co-degradation system for decomposing cellulose more efficiently, cellulose-degrading bacteria, including Bacillus subtilis WF-8, Bacillus licheniformis WF-11, Bacillus Cereus WS-1 and Streptomyces Nogalater WF-10 were added during maize straw and cattle manure aerobic composting. Bacillus and Streptomyces successfully colonized, which improve cellulose degrading ability. Continuous colonization of cellulose-degrading bacteria can promote the fungi to produce more precursors for humus and promote the negative correlation with Ascomycota. In the current study, the addition of cellulose-degrading bacteria has resulted in the rapid development of Mycothermus and Remersonia in the phylum Ascomycota as keystone fungal genera which constitute the foundation of the co-degradation system. Network analysis reveals the complex co-degradation system of efficient cellulose bacteria and mature fungi to treat cellulose in the process of straw aerobic composting mainly related to the influence of total carbon (TC) /total nitrogen (TN) and humic acid (HA)/fulvic acid (FA). This research offers a complex co-degradation system more efficiently to decompose cellulose aiming to maintain the long-term sustainability of agriculture.
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