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农业土壤组的养分特性和细菌群落评价:促进可持续土地管理。

Evaluation of nutrient characteristics and bacterial community in agricultural soil groups for sustainable land management.

机构信息

Department of Environmental Science, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

Water Science and Technology for Sustainable Environment Research Group, Chulalongkorn University, Bangkok, 10330, Thailand.

出版信息

Sci Rep. 2022 May 5;12(1):7368. doi: 10.1038/s41598-022-09818-1.

Abstract

The soil bacterial community is critical for understanding biological processes in soils and is used for agricultural soil management. The understanding of microorganisms and ecology in different soil groups classified based on soil properties (e.g., minerals, soil texture, location, nitrogen, phosphorus, organic carbon and pH, among others), is limited. To suggest soil management strategies using bacterial data, we classified soils into four groups based on physical-chemical characteristics and elucidated their relationships with soil nutrient characteristics and the bacterial community in agricultural fields in Saraburi Province, Thailand. Results show that soil groups with high bacterial diversity had positive correlations with total Kjeldahl nitrogen and available phosphorus but were negatively affected by total organic carbon and pH levels. Dominant bacterial genera included Lactobacillus, Phascolarctobacterium, Prevotella, Clostridium, Gaiellales and Blautia. Significant key biomarkers were found (p < 0.05). Nutrient-rich soil groups (high available P, acidic pH) were found with genus Agromyces, while low nutrient soil groups (low available P, basic pH) were found with Hydrogenispora, Ignavibacterium and Bauldia. Based on co-occurrence networks, organic degrading bacteria functioned with other bacteria at high degrees of interconnections, suggesting organic amendment, biostimulation and biodegradation using nutrient-rich organic substrates could be used for agricultural soil improvements.

摘要

土壤细菌群落对于理解土壤中的生物过程至关重要,并且被用于农业土壤管理。然而,基于土壤特性(例如矿物质、土壤质地、地理位置、氮、磷、有机碳和 pH 值等)对不同土壤群进行分类时,我们对微生物和生态学的理解是有限的。为了根据细菌数据提出土壤管理策略,我们基于物理化学特性将土壤分为四组,并阐明了它们与土壤养分特征和泰国萨拉布里府农业领域细菌群落的关系。结果表明,具有高细菌多样性的土壤组与总凯氏氮和有效磷呈正相关,但受总有机碳和 pH 值水平的负面影响。优势细菌属包括乳杆菌属、磷杆菌属、普雷沃氏菌属、梭菌属、盖耶尔氏菌科和布劳特氏菌属。发现了显著的关键生物标志物(p < 0.05)。富含养分的土壤组(高有效磷、酸性 pH 值)与节杆菌属有关,而低养分土壤组(低有效磷、碱性 pH 值)与氢菌属、伊格那维氏菌属和鲍尔氏菌属有关。基于共现网络,有机降解菌与其他细菌之间存在高度的互联功能,这表明可以使用富含营养的有机基质进行有机改良、生物刺激和生物降解,以改善农业土壤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ced0/9072534/f890505f3e84/41598_2022_9818_Fig1_HTML.jpg

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