堆肥
基因组
肥料
修正案
氮气
生物技术
微生物
基因
固氮
食品科学
生物
化学
细菌
农学
生物化学
遗传学
有机化学
政治学
法学
作者
Huakang Li,Zixuan Zhao,Meiling Shi,Bin Luo,Guangdong Wang,Xiaojuan Wang,Jie Gu,Zilin Song,Yifan Sun,Zhang Li,Jia Wang
标识
DOI:10.1016/j.biortech.2023.130156
摘要
The efficient control of nitrogen loss in composting and the enhancement of product quality have become prominent concerns in current research. The positive role of varying concentrations kaolin in reducing nitrogen loss during composting was revealed using metagenomic binning combined with reverse transcription quantitative polymerase chain reaction. The results indicated that the addition of 0.5 % kaolin significantly (P < 0.05) up-regulated the expression of nosZ and nifH on day 35, while concurrently reducing norB abundance, resulting in a reduction of NH3 and N2O emissions by 61.4 % and 17.5 %, respectively. Notably, this study represents the first investigation into the co-occurrence of nitrogen functional genes and heavy metal resistance genes within metagenomic assembly genomes during composting. Emerging evidence indicates that kaolin effectively impedes the binding of Cu/Zn to nirK and nosZ gene reductases through passivation. This study offers a novel approach to enhance compost quality and waste material utilization.
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