Li Kun-Tai, Yang Yong, Zhang Shuai-Wen, Cheng Xin
College of Food Science and Technology, Guangdong Provincial Key Labotatory of Aquatic Product Processing and Safety, Guangdong Ocean University, Zhanjiang, 524088 China.
Collaborative Innovation Center of Seafood Deep Processing, Dalian Polytechnic University, Dalian, China.
Indian J Microbiol. 2022 Jun;62(2):225-233. doi: 10.1007/s12088-021-00996-6. Epub 2022 Jan 27.
Bacteria play an important role in the biodegradation of feather waste. The exploration of the related microbial community structure and diversity is essential to improve the performance of feather waste treatment processes. In the present work, an in-situ soil sampled from a poultry farm was directly used to simulate and accelerate the natural degradation processes of feather waste under laboratory conditions, in which the dynamics of the microbial communities was further analyzed by Illumina HiSeq high-throughput 16S rRNA gene sequencing. Biochemical factors, including pH, feather degradation rate and soluble protein content were also determined in this study. The biochemical results showed that the in-situ soil exhibited an effective degradability on chicken feathers, and the degradation rate of feathers reached 57.95 ± 3.09% at 120 h of cultivation. Meanwhile, soluble protein content and pH reached 33.62 ± 1.45 mg/mL 8.99 ± 0.08, respectively. The results of bacterial diversity analysis showed that bacterial community structure and composition significantly varied in each phase of degradation. Additionally, the bacteria system with feather degradability might consist of , genera. This system may include the following key pathways: carbohydrate metabolism, amino acid metabolism, nucleotide metabolism, membrane transport, replication and repair, translation, signal transduction and energy metabolism. Moreover, the bacterial communities may occur community succession during the degradation processes of chicken feathers. In summary, the present work provided valuable insights into the understanding of microbial community and metabolic functions for feather degradation, although the in-situ biodegradation process was conducted under laboratory conditions.
The online version contains supplementary material available at 10.1007/s12088-021-00996-6.
细菌在羽毛废弃物的生物降解中发挥着重要作用。探索相关微生物群落结构和多样性对于提高羽毛废弃物处理工艺的性能至关重要。在本研究中,从家禽养殖场采集的原位土壤直接用于在实验室条件下模拟和加速羽毛废弃物的自然降解过程,其中通过Illumina HiSeq高通量16S rRNA基因测序进一步分析了微生物群落的动态变化。本研究还测定了包括pH值、羽毛降解率和可溶性蛋白含量在内的生化因素。生化结果表明,原位土壤对鸡毛具有有效的降解能力,培养120小时时羽毛降解率达到57.95±3.09%。同时,可溶性蛋白含量和pH值分别达到33.62±1.45mg/mL和8.99±0.08。细菌多样性分析结果表明,细菌群落结构和组成在降解的各个阶段均有显著变化。此外,具有羽毛降解能力的细菌系统可能由 属组成。该系统可能包括以下关键途径:碳水化合物代谢、氨基酸代谢、核苷酸代谢、膜转运、复制与修复、翻译、信号转导和能量代谢。此外,在鸡毛降解过程中细菌群落可能会发生群落演替。总之,尽管原位生物降解过程是在实验室条件下进行的,但本研究为理解羽毛降解的微生物群落和代谢功能提供了有价值的见解。
在线版本包含可在10.1007/s12088-021-00996-6获取的补充材料。