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种植模式和氮水平对表层和亚表层土壤肥力及细菌群落特征的影响

The effects of cultivation patterns and nitrogen levels on fertility and bacterial community characteristics of surface and subsurface soil.

作者信息

Xu Chengyu, Chen Yuanjie, Zang Qian, Li Yulin, Zhao Jinbiao, Lu Xuanrui, Jiang Min, Zhuang Hengyang, Huang Lifen

机构信息

Jiangsu Key Laboratory of Crop Genetics and Physiology/Jiangsu Key Laboratory of Crop Cultivation and Physiology, Agricultural College of Yangzhou University, Yangzhou, China.

Jiangsu Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, China.

出版信息

Front Microbiol. 2023 Feb 16;14:1072228. doi: 10.3389/fmicb.2023.1072228. eCollection 2023.

Abstract

The cropping system affects the physicochemical property and microbial community of paddy soil. Previous research mostly focused on the study of soil 0-20 cm underground. However, there may be difference in the laws of nutrient and microorganism distribution at different depths of arable soil. In surface (0-10 cm) and subsurface (10-20 cm) soil, a comparative analysis including soil nutrients, enzymes, and bacterial diversity was carried out between the organic and conventional cultivation patterns, low and high nitrogen levels. Analysis results suggested that under the organic farming pattern, the contents of total nitrogen (TN), alkali-hydrolyzable nitrogen (AN), available phosphorus (AP), and soil organic matter (SOM) as well as alkaline phosphatase and sucrose activity increased in surface soil, but the SOM concentration and urease activity decreased in subsurface soil. A moderate reduction of nitrogen applied to soil could enhance soil enzyme activity. It was demonstrated by α diversity indices that high nitrogen levels remarkably undermined soil bacterial richness and diversity. Venn diagrams and NMDS analysis manifested great difference in bacterial communities and an apparent clustering tendency under different treatment conditions. Species composition analysis indicated that the total relative abundance of Proteobacteria, Acidobacteria, and Chloroflexi retained stable in paddy soil. LEfSe results revealed that a low nitrogen organic treatment could elevate the relative abundance of Acidobacteria in surface soil and Nitrosomonadaceae in subsurface soil, thereby tremendously optimizing the community structure. Moreover, Spearman's correlation analysis was also performed, which proved the significant correlation of diversity with enzyme activity and AN concentration. Additionally, redundancy analysis disclosed that the Acidobacteria abundance in surface soil and Proteobacteria abundance in subsurface soil exerted conspicuous influence on environmental factors and the microbial community structure. According to the findings of this study, it was believed that reasonable nitrogen application together with an organic agriculture cultivation system could effectively improve soil fertility in Gaoyou City, Jiangsu Province, China.

摘要

种植制度影响水稻土的理化性质和微生物群落。以往的研究大多集中在地下0-20厘米土壤的研究。然而,耕地不同深度的养分和微生物分布规律可能存在差异。在表层(0-10厘米)和亚表层(10-20厘米)土壤中,对有机和传统种植模式、低氮和高氮水平下的土壤养分、酶和细菌多样性进行了比较分析。分析结果表明,在有机耕作模式下,表层土壤中全氮(TN)、碱解氮(AN)、有效磷(AP)和土壤有机质(SOM)含量以及碱性磷酸酶和蔗糖活性增加,但亚表层土壤中SOM浓度和脲酶活性降低。适度减少土壤施氮量可提高土壤酶活性。α多样性指数表明,高氮水平显著降低了土壤细菌的丰富度和多样性。维恩图和非度量多维尺度分析表明,不同处理条件下细菌群落存在很大差异,且有明显的聚类趋势。物种组成分析表明,变形菌门、酸杆菌门和绿弯菌门的总相对丰度在水稻土中保持稳定。线性判别分析效应大小(LEfSe)结果显示低氮有机处理可提高表层土壤中酸杆菌门和亚表层土壤中亚硝化单胞菌科的相对丰度,从而极大地优化群落结构。此外,还进行了Spearman相关性分析,结果证明多样性与酶活性和AN浓度显著相关。此外,冗余分析表明,表层土壤中的酸杆菌门丰度和亚表层土壤中的变形菌门丰度对环境因子和微生物群落结构有显著影响。根据本研究结果,认为合理施氮与有机农业种植系统相结合可有效提高中国江苏省高邮市的土壤肥力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc11/9978222/1a8b8fadadba/fmicb-14-1072228-g001.jpg

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