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各种改良措施对黄河三角洲滨海盐碱土微生物群落和土壤有机碳的影响

Impacts of various amendments on the microbial communities and soil organic carbon of coastal saline-alkali soil in the Yellow River Delta.

作者信息

Liu Runang, Liang Beijia, Zhao Huili, Zhao Ying

机构信息

College of Resources and Environmental Engineering, Ludong University, Yantai, China.

出版信息

Front Microbiol. 2023 Sep 14;14:1239855. doi: 10.3389/fmicb.2023.1239855. eCollection 2023.

Abstract

The utilization of industrial and agricultural resources, such as desulfurization gypsum and straw, is increasingly favored to improve saline alkali land. However, there is still a lack of comprehensive study on the mechanism of organic carbon turnover under the conditions of desulfurization gypsum and straw application. We studied the changes in soil chemical performance, microbial diversity, and microbial community structure in soils with the addition of various levels of straw (no straw, S; low straw, S; medium straw, S; and high straw, S) and gypsum (no gypsum, DG; low gypsum, DG; and high gypsum, DG) in a 120-day incubation experiment. The bacterial and fungal community richness was higher in the SDG treatment than in the SDG treatment. The microbial community evenness showed a similar pattern between the SDG and SDG treatments. The combination of the straw and desulfurization gypsum treatments altered the relative abundance of the main bacterial phyla Bacteroidetes and Firmicutes and the dominant fungal class Sordariomycetes, which increased with the enhancement of the SOC ratio. The combination of the straw and desulfurization gypsum treatments, particularly SDG, significantly decreased the soil pH and exchangeable sodium percentage (ESP), while it increased the soil organic carbon, microbial biomass carbon, and activities of soil enzymes. Improvement in the soil salinization environment clearly drove the changes in bacterial α-diversity and community, particularly those in the soil carbon fractions and ESP. In conclusion, these findings provide a strong framework to determine the impact of application practices on soil restoration, and the information gained in this study will help to develop more sustainable and effective integrated strategies for the restoration of saline-alkali soil.

摘要

利用工业和农业资源,如脱硫石膏和秸秆,来改良盐碱地越来越受到青睐。然而,对于脱硫石膏和秸秆施用条件下有机碳周转机制仍缺乏全面研究。在一项为期120天的培养实验中,我们研究了添加不同水平秸秆(无秸秆,S0;低秸秆,S1;中秸秆,S2;高秸秆,S3)和石膏(无石膏,DG0;低石膏,DG1;高石膏,DG2)的土壤中土壤化学性质、微生物多样性和微生物群落结构的变化。SDG处理的细菌和真菌群落丰富度高于SDG处理。微生物群落均匀度在SDG和SDG处理之间呈现相似模式。秸秆和脱硫石膏处理的组合改变了主要细菌门拟杆菌门和厚壁菌门以及优势真菌纲粪壳菌纲的相对丰度,它们随着土壤有机碳(SOC)比例的增加而增加。秸秆和脱硫石膏处理的组合,特别是SDG,显著降低了土壤pH值和交换性钠百分比(ESP),同时增加了土壤有机碳、微生物生物量碳和土壤酶活性。土壤盐碱化环境的改善明显推动了细菌α多样性和群落的变化,特别是土壤碳组分和ESP方面的变化。总之,这些发现为确定施用措施对土壤恢复的影响提供了有力框架,本研究获得的信息将有助于制定更可持续、有效的盐碱地恢复综合策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/744e/10539599/89829dee0cad/fmicb-14-1239855-g0001.jpg

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