Soil Enzyme Activity Response to Substrate and Nutrient Additions on Undisturbed Forest Subsoil Samples

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-06-01 DOI:10.3390/soilsystems7020057
Theresa Reinersmann, Michael Herre, B. Marschner, S. Heinze
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引用次数: 1

Abstract

Previous studies have found that C turnover is bound to hotspots of microbial activity. The objective of this study was to analyze the effects of pure energy substrate (glucose), nutrient (mineral N or P) and combined substrate and nutrient (glucose + N, glucose + P, sterile DOC, artificial root exudate extract) additions to enzyme activity inside and outside hotspots as a proxy for microbial C turnover in a subsoil. By means of different substrate and nutrient additions, we tested how the limitations of our site were distributed on a small scale and depth-dependently to contribute to an increase in knowledge of subsoil mechanistics. The study site is a sandy Dystric Cambisol under an over 100-year-old beech forest stand in Lower Saxony, Germany. Forty-eight undisturbed soil samples from two depth increments (15–27 cm and 80–92 cm) of three profiles were sprayed homogeneously with easily available C, N and P sources to investigate the impacts of substrates and nutrients on three enzyme activities (acid phosphatase, β-glucosidase and N-acetylglucosaminidase) by using the soil zymography approach. Comparisons of upper and lower subsoils showed significantly fewer and smaller hotspots in the lower subsoil but with a high degree of spatial variation in comparison to the upper subsoil. Different patterns of enzyme distribution between upper and lower subsoil suggest microbial communities with a lower diversity are found in deeper soil regions of the site. Both substrate and nutrient additions stimulated enzyme activities significantly more outside the initial hotspots than within. Because of this, we conclude that microorganisms in the initial hotspots are less limited than in the surrounding bulk soil. Changes in enzyme activities owing to both substrate and nutrient addition were stronger in the lower subsoil than in the upper subsoil, showing differences in limitations and possible changes in microbial community structure with increasing depth. The results of our study emphasize the need to consider spatial factors in microbial turnover processes, especially in lower subsoil regions where stronger substrate and nutrient limitations occur.
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原状林底土土壤酶活性对基质和养分添加的响应
先前的研究发现,碳的周转与微生物活动的热点有关。本研究的目的是分析纯能量基质(葡萄糖)、营养素(矿物质N或P)以及基质和营养素组合(葡萄糖+N、葡萄糖+P、无菌DOC、人工根系分泌物提取物)添加对热点内外酶活性的影响,作为底土中微生物C周转的指标。通过添加不同的基质和养分,我们测试了我们场地的局限性是如何在小规模和深度上依赖性地分布的,以帮助增加对底土力学的了解。该研究地点位于德国下萨克森州一处有100多年历史的山毛榉林下的一处沙质不平衡寒地。采用土壤酶谱法研究了基质和养分对三种酶活性(酸性磷酸酶、β-葡萄糖苷酶和N-乙酰氨基葡糖苷酶)的影响。上部和下部底土的比较显示,下部底土中的热点明显较少且较小,但与上部底土相比,空间变化程度较高。上部和下部底土之间酶分布的不同模式表明,在该场地的深层土壤区域发现了多样性较低的微生物群落。底物和营养物质的添加在初始热点之外比在初始热点之内更能刺激酶活性。因此,我们得出结论,与周围的大块土壤相比,初始热点中的微生物受到的限制较小。由于基质和营养物质的添加,下层底土的酶活性变化比上层底土更强,表明随着深度的增加,微生物群落结构的局限性和可能变化存在差异。我们的研究结果强调,在微生物周转过程中需要考虑空间因素,特别是在下层土壤区域,那里存在更强的基质和营养限制。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
期刊最新文献
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