Key Laboratory of Agricultural Water Resources, Center for Agricultural Resources Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Shijiazhuang, China.
College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.
Environ Microbiol. 2023 Nov;25(11):2636-2640. doi: 10.1111/1462-2920.16467. Epub 2023 Aug 6.
Nitrification, a key step in soil nitrogen cycling, is a biologically mediated process crucial to the ecological environment. However, how nitrifiers drive nitrification under different soil properties and climatic factors at large spatial scales is poorly understood. Here, using metagenomic sequencing and network-based approaches, we identified key nitrifying species of upland agricultural soils in northern China, which spans a wide range of climates and geographic distances. We found that potential nitrification rates (PNRs) varied in different soils and were positively correlated with soil pH (5.42-8.46) and mean annual temperature (MAT) and negatively correlated with the C/N ratio. Network analysis revealed that one module (module 3) was significantly correlated with PNR. In this module, 16 dominant nodes were associated with AOB Nitrosomonas and most nodes were significantly correlated with environmental factors, suggesting that abiotic conditions are important for determining the assembly of these key nitrifiers. Our study advanced the understanding of the key nitrifying populations and their environmental drivers in upland agricultural soil across different soil and climate types.
硝化作用是土壤氮循环的关键步骤,是生态环境的一个重要的生物介导过程。然而,在大的空间尺度上,硝化菌如何在不同的土壤特性和气候因素下驱动硝化作用,人们对此知之甚少。在这里,我们使用宏基因组测序和基于网络的方法,鉴定了中国北方旱地农业土壤中的关键硝化物种,这些土壤跨越了广泛的气候和地理距离。我们发现,不同土壤中的潜在硝化速率(PNR)存在差异,与土壤 pH(5.42-8.46)和年平均温度(MAT)呈正相关,与 C/N 比呈负相关。网络分析显示,一个模块(模块 3)与 PNR 显著相关。在这个模块中,有 16 个主要节点与 AOB Nitrosomonas 相关,大多数节点与环境因素显著相关,这表明非生物条件对这些关键硝化菌的组装很重要。我们的研究增进了对不同土壤和气候类型旱地农业土壤中关键硝化种群及其环境驱动因素的理解。