Cai Rui, Zuo Sasa, Cao Xiaohui, Jiang Xin, Xu Chuncheng
College of Engineering, China Agricultural University, No. 17 Qinghua Donglu, Haidian District, Beijing, 100083, China.
Bioresour Bioprocess. 2023 Aug 21;10(1):53. doi: 10.1186/s40643-023-00675-y.
This study explored the effects of turning frequency on fermentation efficiency and microbial metabolic function of sheep manure composting on the Qinghai-Tibet Plateau (QTP). Five treatments with different turning frequencies were set up in this study: turning every 1 day (T1), 2 days (T2), 4 days (T3), 6 days (T4), and 8 days (T5). Results showed that the high temperature period for T1 and T5 lasted only 4 days, while that for T2-T4 lasted more than 8 days. The germination index of T1 and T5 was lower than 80%, while that of T2-T4 was 100.6%, 97.8%, and 88.6%, respectively. This study further predicted the microbial metabolic function of T2-T4 using the bioinformatics tool PICRUSt2 (Phylogenetic Investigation of Communities by Reconstruction of Unobserved States) and determining the activities of various functional enzymes. The results showed that carbohydrate metabolism, protein metabolism, and nucleotide metabolism were the main metabolic pathways of microorganisms, and that T2 increased the abundance of functional genes of these metabolic pathways. The activities of protease, cellulase, and peroxidase in T2 and T3 were higher than those in T4, and the effect of T2 was more significant. In conclusion, turning once every 2 days can improve the quality of sheep manure compost on the QTP.
本研究探讨了翻堆频率对青藏高原羊粪堆肥发酵效率和微生物代谢功能的影响。本研究设置了5种不同翻堆频率的处理:每天翻堆1次(T1)、每2天翻堆1次(T2)、每4天翻堆1次(T3)、每6天翻堆1次(T4)和每8天翻堆1次(T5)。结果表明,T1和T5的高温期仅持续4天,而T2 - T4的高温期持续超过8天。T1和T5的发芽指数低于80%,而T2 - T4的发芽指数分别为100.6%、97.8%和88.6%。本研究进一步使用生物信息学工具PICRUSt2(通过重建未观察状态对群落进行系统发育调查)预测T2 - T4的微生物代谢功能,并测定各种功能酶的活性。结果表明,碳水化合物代谢、蛋白质代谢和核苷酸代谢是微生物的主要代谢途径,且T2增加了这些代谢途径功能基因的丰度。T2和T3中蛋白酶、纤维素酶和过氧化物酶的活性高于T4,且T2的效果更显著。综上所述,每2天翻堆1次可提高青藏高原羊粪堆肥的质量。