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不同有机肥料下的土壤有机碳、碳组分和微生物群落。

Soil organic carbon, carbon fractions, and microbial community under various organic amendments.

机构信息

Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, 450000, China.

出版信息

Sci Rep. 2024 Oct 25;14(1):25431. doi: 10.1038/s41598-024-75771-w.

Abstract

The impact of various organic amendments on soil organic carbon (SOC) have rarely been reported. To address this, a laboratory experiment was designed to scrutinize the effects of different amendments on soil carbon fractions, microbial communities, and the underlying interactive mechanisms. The experiment encompassed a no-amendment control (CK), as well as treatments with corn straw (CS), tobacco stalks (TS), and peanut shell biochar (PB). Over a 70-day incubation, the SOC in plots amended with CS, TS, and PB displayed significant boosts of 13.9%, 17.5%, and 44.8%, respectively, compared to the CK. For soil carbon fractions, amendments with PB, TS, and CS led to a dramatic rise in particulate organic carbon (POC) of 27.4%, 20.2%, and 105.7%, respectively, in contrast to the CK plots. Mantel analysis and structural Equation Modeling uncovered strong interrelationships among the cbbL, cbbM, Bacteroidota, TOC, and POC. Organic amendments enhance soil carbon fractions, modulating the microbial community by increasing Bacteroidetes abundance and suppressing Acidobacteria richness, thereby influencing the abundance of key carbon cycle genes such as cbbL and cbbM. These results suggest that the addition of peanut shell biochar significantly boosted TOC and key carbon fractions, enhancing carbon content and soil fertility.

摘要

各种有机肥料对土壤有机碳(SOC)的影响鲜有报道。为了解决这个问题,设计了一项实验室实验来仔细研究不同肥料对土壤碳组分、微生物群落的影响以及潜在的相互作用机制。该实验包括无施肥对照(CK)以及玉米秸秆(CS)、烟草秸秆(TS)和花生壳生物炭(PB)处理。在 70 天的培养期内,与 CK 相比,CS、TS 和 PB 处理的 SOC 分别显著增加了 13.9%、17.5%和 44.8%。对于土壤碳组分,与 CK 相比,PB、TS 和 CS 处理分别导致颗粒有机碳(POC)显著增加了 27.4%、20.2%和 105.7%。Mantel 分析和结构方程模型揭示了 cbbL、cbbM、拟杆菌门、TOC 和 POC 之间的强烈相互关系。有机肥料通过增加拟杆菌门的丰度和抑制酸杆菌门的丰富度来增强土壤碳组分,调节微生物群落,从而影响关键碳循环基因如 cbbL 和 cbbM 的丰度。这些结果表明,添加花生壳生物炭可显著提高 TOC 和关键碳组分,从而增加碳含量和土壤肥力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3220/11512027/92540ed581b6/41598_2024_75771_Fig1_HTML.jpg

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