Dai Xiaoxia, Wang Xiaojuan, Gu Jie, Bao Jianfeng, Wang Jia, Guo Honghong, Yu Jing, Zhao Wenya, Lei Liusheng
College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi, 712100, China.
College of Natural Resources and Environment, Northwest A&F University, Yangling, Shaanxi, 712100, China.
J Environ Manage. 2021 Dec 15;300:113734. doi: 10.1016/j.jenvman.2021.113734. Epub 2021 Sep 24.
Treatment with exogenous additives during composting can help to alleviate the accumulation of antibiotic resistance genes (ARGs) caused by the direct application of pig manure to farmland. In addition, nano-cellulose has an excellent capacity for adsorbing pollutants. Thus, the effects of adding 300, 600, and 900 mg/kg nano-cellulose to compost on the bacterial communities, mobile genetic elements (MGEs), and ARGs were determined in this study. After composting, treatment with nano-cellulose significantly reduced the relative abundance of ARGs, which was lowest in the compost product with 600 mg/kg added nano-cellulose. Nano-cellulose inhibited the rebound in ARGs from the cooling period to the maturity period, and weakened the selective pressure of heavy metals on microorganisms by passivating bio-Cu. The results also showed that MGEs explained most of the changes in the abundances of ARGs, and MGEs had direct effects on ARGs. The addition of 600 mg/kg nano-cellulose reduced the abundances of bacterial genera associated with ermQ, tetG, and other genes, and the number of links (16) between ARGs and MGEs was lowest in the treatment with 600 mg/kg added nano-cellulose. Therefore, adding 600 mg/kg nano-cellulose reduced the abundances of ARGs by affecting host bacteria and MGEs. The results obtained in this study demonstrate the positive effect of nano-cellulose on ARG pollution in poultry manure, where adding 600 mg/kg nano-cellulose was most effective at reducing the abundances of ARGs.
堆肥过程中添加外源添加剂有助于缓解因将猪粪直接施用于农田而导致的抗生素抗性基因(ARG)积累。此外,纳米纤维素具有出色的污染物吸附能力。因此,本研究测定了在堆肥中添加300、600和900 mg/kg纳米纤维素对细菌群落、移动遗传元件(MGE)和ARG的影响。堆肥后,纳米纤维素处理显著降低了ARG的相对丰度,在添加600 mg/kg纳米纤维素的堆肥产品中最低。纳米纤维素抑制了ARG从冷却期到成熟期的反弹,并通过钝化生物铜削弱了重金属对微生物的选择压力。结果还表明,MGE解释了ARG丰度变化的大部分原因,且MGE对ARG有直接影响。添加600 mg/kg纳米纤维素降低了与ermQ、tetG等基因相关的细菌属丰度,在添加600 mg/kg纳米纤维素的处理中,ARG与MGE之间的连接数(16个)最低。因此,添加600 mg/kg纳米纤维素通过影响宿主细菌和MGE降低了ARG的丰度。本研究结果证明了纳米纤维素对家禽粪便中ARG污染的积极作用,其中添加600 mg/kg纳米纤维素对降低ARG丰度最为有效。