Organic carbon negatively affects the diversity of soil nitrous oxide reducers in Chinese fir plantations at a regional scale

IF 4.8 2区 农林科学 Q1 SOIL SCIENCE Applied Soil Ecology Pub Date : 2024-05-23 DOI:10.1016/j.apsoil.2024.105457
Milin Deng , Yong Zheng , Zi-Yang He , Maokui Lyu , Shengsheng Jin , Hao Yang , Hanshuo Zhang , Ji-Zheng He , Yongxin Lin
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Abstract

Large-scale planting of Chinese fir (Cunninghamia lanceolata) can bring considerable economic benefits but also seriously alters soil properties, disrupting soil microbial survival patterns and giving rise to distinct microbial communities. Nitrous oxide (N2O) reduction is the sole recognized biological sink for N2O, thereby playing a critical role in forest nitrogen cycling. However, the distribution of N2O reducers in Chinese fir plantation soils and the underlying factors at a regional scale remain unclear. Here, we assessed the abundance, diversity, and community structure of nosZ I-type N2O reducers in soil samples collected from nine state-owned forest farms in Fujian Province, China. The abundance of nosZ I-type reducers exhibited significant variation across sites, with altitude exerting the greatest influence, positively influencing their abundance. Soil organic carbon (SOC) and dissolved organic carbon (DOC) were the strongest predictors of alpha-diversity. Interestingly, SOC and DOC exhibited a negative association with nosZ I-type reducer alpha-diversity. Additionally, DOC played a significant role in influencing community structure. All nosZ I sequences were associated with Alphaprotebacteria and Betaproteobacteria, with Alphaproteobacteria dominating nosZ I-type reducer communities in all soils, accounting for over 90 % of the total sequences. Moreover, the modified stochasticity ratio values exceeded 0.5 at all sampling sites except for one, characterized by the lowest pH and relatively lower nutrient content, indicating the predominance of stochastic processes in community assembly. Taken together, our results provide novel evidence that the augmentation of organic carbon content could potentially reduce diversity and alter the structure of nosZ I-type reducer communities, with potential implications for N2O emissions in Chinese fir plantations.

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有机碳在区域尺度上对中国冷杉林土壤氧化亚氮还原剂的多样性产生负面影响
大规模种植冷杉可带来可观的经济效益,但也会严重改变土壤性质,破坏土壤微生物的生存模式,并产生独特的微生物群落。一氧化二氮(N2O)还原是唯一公认的 N2O 生物吸收汇,因此在森林氮循环中发挥着至关重要的作用。然而,中国冷杉人工林土壤中氧化亚氮还原剂的分布及其在区域范围内的潜在因素仍不清楚。在此,我们评估了从中国福建省九个国有林场采集的土壤样本中 nosZ I 型 N2O 还原菌的丰度、多样性和群落结构。不同地点 nosZ I 型还原剂的丰度存在显著差异,其中海拔高度对其丰度的影响最大,呈正向影响。土壤有机碳(SOC)和溶解有机碳(DOC)对α-多样性的预测作用最强。有趣的是,土壤有机碳和溶解有机碳与 nosZ I 型还原剂的α-多样性呈负相关。此外,DOC 在影响群落结构方面也发挥了重要作用。所有 nosZ I 序列都与 Alphaprotebacteria 和 Betaproteobacteria 相关,其中 Alphaproteobacteria 在所有土壤的 nosZ I 型还原菌群落中占主导地位,占总序列的 90% 以上。此外,除一个 pH 值最低、养分含量相对较低的采样点外,其他所有采样点的修正随机比值都超过了 0.5,这表明随机过程在群落组成中占主导地位。总之,我们的研究结果提供了新的证据,表明有机碳含量的增加可能会降低 nosZ I 型还原剂群落的多样性并改变其结构,从而对中国冷杉种植园的 N2O 排放产生潜在影响。
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来源期刊
Applied Soil Ecology
Applied Soil Ecology 农林科学-土壤科学
CiteScore
9.70
自引率
4.20%
发文量
363
审稿时长
5.3 months
期刊介绍: Applied Soil Ecology addresses the role of soil organisms and their interactions in relation to: sustainability and productivity, nutrient cycling and other soil processes, the maintenance of soil functions, the impact of human activities on soil ecosystems and bio(techno)logical control of soil-inhabiting pests, diseases and weeds.
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