Zhao Yubin, Hu Kai, Yu Jiadong, Khan Md Tariful Alam, Cai Yafan, Zhao Xiaoling, Zheng Zehui, Hu Yuegao, Cui Zongjun, Wang Xiaofen
Institute of Agricultural Resources and Regional Planning, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
College of Agronomy, China Agricultural University, Beijing 100193, China.
Life (Basel). 2023 Mar 13;13(3):774. doi: 10.3390/life13030774.
Indigenous soil microbial biomass (ISMB) plays a key role in maintaining essential functions and biodiversity of soil health. One of the critical unknowns is how the indigenous microorganisms respond to different fertilizers which is directly related to agricultural production. Therefore, we used Mi-Seq sequencing and network analyses to compare the response of ISMB to biogas residue and chemical fertilizers. The results showed that crop production was profoundly influenced by levels of ISMB present and is further dependent on the strategy of fertilizer application. Higher ISMB primarily manifests through retention of richer microbial abundance, a balanced community structure, and tightened co-occurrence within a certain proportion of , , and . Compared to chemical fertilizer, biogas residue resulted in higher production with more strongly linked nodes such as , and . Under the same level of ISMB, the microbial diversity was richer and co-occurrence was tighter when biogas residues were applied compared with chemical fertilizer. In addition, the higher level of ISMB with biogas residue applied had a lower abundance of potential fungal pathogens in both bulk and rhizosphere soil compared with chemical fertilizer. This study provides critical data to understand the influence of ISMB and biogas residue on soil ecological system.
本土土壤微生物生物量(ISMB)在维持土壤健康的基本功能和生物多样性方面起着关键作用。关键的未知因素之一是本土微生物如何对不同肥料作出反应,这与农业生产直接相关。因此,我们使用Mi-Seq测序和网络分析来比较ISMB对沼渣和化肥的反应。结果表明,作物产量受到ISMB水平的深刻影响,并且进一步取决于施肥策略。较高的ISMB主要表现为在一定比例的[具体微生物种类未明确写出]中保留更丰富的微生物丰度、平衡的群落结构以及紧密的共生关系。与化肥相比,沼渣使产量更高,且具有如[具体节点未明确写出]等连接更强的节点。在相同的ISMB水平下,与化肥相比,施用沼渣时微生物多样性更丰富且共生关系更紧密。此外,与化肥相比,施用沼渣时较高水平的ISMB在土壤和根际土壤中潜在真菌病原体的丰度较低。本研究为理解ISMB和沼渣对土壤生态系统的影响提供了关键数据。