Department of Biological and Agricultural Engineering, University of California, One Shields Ave., Davis, CA, 95616, USA.
Department of Food Science and Technology, University of California, One Shields Ave., Davis, CA, 95616, USA.
J Ind Microbiol Biotechnol. 2020 Dec;47(12):1031-1044. doi: 10.1007/s10295-020-02326-z. Epub 2020 Oct 30.
The properties of digestates generated through anaerobic digestion are influenced by interactions between the digester microbial communities, feedstock properties and digester operating conditions. This study investigated the effect of varying initial feedstock carbon to nitrogen (C/N) ratios on digestate microbiota and predicted abundance of genes encoding lignocellulolytic activity. The C/N ratio had a significant impact on the digestate microbiome. Feedstocks with intermediate C/N ratio (20-27) (where higher biomethane potential was observed) showed higher relative abundance of archaea compared to feedstocks with C/N ratios at 17 and 34. Within microbial networks, four microbial clusters and eight connector microorganisms changed significantly with the C/N ratio (P < 0.05). Feedstocks with C/N < 23 were richer in organisms from the family Thermotogaceae and genus Caldicoprobacter and enhanced potential for degradation of maltose, galactomannans, melobiose and lactose. This study provides new insights into how anaerobic digestion conditions relate to the structure and functional potential of digester microbial communities, which may be relevant to both digester performance and subsequent utilization of digestates for composting or amending soil.
通过厌氧消化产生的消化物的性质受到消化器微生物群落、饲料特性和消化器操作条件之间的相互作用的影响。本研究调查了初始饲料碳氮 (C/N) 比变化对消化物微生物群和编码木质纤维素活性的基因预测丰度的影响。C/N 比对消化物微生物组有显著影响。C/N 比为 20-27 的中间饲料(观察到更高的生物甲烷潜力)与 C/N 比为 17 和 34 的饲料相比,显示出更高的古菌相对丰度。在微生物网络中,四个微生物簇和八个连接器微生物随着 C/N 比的变化而显著变化(P < 0.05)。C/N < 23 的饲料富含来自 Thermotogaceae 科和 Caldicoprobacter 属的生物体,并增强了对麦芽糖、半乳甘露聚糖、蜜二糖和乳糖的降解潜力。本研究提供了新的见解,了解厌氧消化条件如何与消化器微生物群落的结构和功能潜力相关,这可能与消化器性能以及随后将消化物用于堆肥或改良土壤有关。