Electrical conductivity measurements as a proxy for diffusion-limited microbial activity in soils

IF 5.8 2区 农林科学 Q1 SOIL SCIENCE
Soil Pub Date : 2025-06-16 DOI:10.5194/egusphere-2025-1730
Orsolya Fülöp, Naoise Nunan, Mamadou Gueye, Damien Jougnot
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Abstract

Abstract. Soils play a highly dynamic role in the carbon cycle, by acting as either a carbon source or sink. Despite their importance in the global carbon cycle, uncertainties surrounding soil-atmosphere interactions remain, due to the many mechanisms that underlie soil carbon dynamics. One of the main mechanisms determining the decomposition of organic C in soil is the access microbial decomposers have to substrates. While not yet formally tested, there is evidence to support the idea that microbial decomposer access to substrates is diffusion-limited. This is underlined by soil respiration rates being strongly dependent on water availability. In recent years, non-destructive geophysical tools, including electrical conductivity measurements, have been used to determine the water content of soils and connectedness of the water phase in the soil pore network. As both respiration and electrical conductivity may depend on water availability and connectivity, our study aimed to determine whether electrical conductivity measurements could be used as a proxy of diffusion-limited microbial activity in soils. This was done by measuring electrical conductivity and respiration rates at different matric potentials. Sieved and undisturbed top and subsoil samples taken from conventional tillage and conservation agriculture management plots were used. Our results revealed an initial increase and consecutive drop in soil respiration associated with a decrease in the matric potential. The electrical conductivity followed a similar decrease throughout the experimental range and these showed a significant non-linear relationship. These results thus suggest that both measured variables depend on the connectedness of the aqueous phase and suggest that they could be used as groundwork for further investigations into soil respiration and electrical conductivity dynamics.
电导率测量作为土壤中扩散限制微生物活动的代理
摘要。土壤在碳循环中发挥着高度动态的作用,既可以作为碳源,也可以作为碳汇。尽管它们在全球碳循环中很重要,但由于土壤碳动态背后的许多机制,围绕土壤-大气相互作用的不确定性仍然存在。土壤中有机碳分解的主要机制之一是微生物分解者对基质的接触。虽然尚未正式测试,但有证据支持微生物分解者接触底物是扩散限制的这一观点。土壤呼吸速率在很大程度上取决于水的可用性,这一点得到了强调。近年来,包括电导率测量在内的非破坏性地球物理工具已被用于确定土壤的含水量和土壤孔隙网络中水相的连通性。由于呼吸和电导率都可能取决于水的可用性和连通性,我们的研究旨在确定电导率测量是否可以用作土壤中扩散限制微生物活动的代理。这是通过测量不同基质电位下的电导率和呼吸速率来完成的。采用常规耕作和保护性农业管理地块的过筛和未扰动的表层和底土样品。我们的研究结果表明,土壤呼吸的初始增加和连续下降与基质电位的下降有关。在整个实验范围内,电导率也出现了类似的下降,并表现出显著的非线性关系。因此,这些结果表明,这两个测量变量取决于水相的连通性,并表明它们可以用作进一步研究土壤呼吸和电导率动力学的基础。
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来源期刊
Soil
Soil Agricultural and Biological Sciences-Soil Science
CiteScore
10.80
自引率
2.90%
发文量
44
审稿时长
30 weeks
期刊介绍: SOIL is an international scientific journal dedicated to the publication and discussion of high-quality research in the field of soil system sciences. SOIL is at the interface between the atmosphere, lithosphere, hydrosphere, and biosphere. SOIL publishes scientific research that contributes to understanding the soil system and its interaction with humans and the entire Earth system. The scope of the journal includes all topics that fall within the study of soil science as a discipline, with an emphasis on studies that integrate soil science with other sciences (hydrology, agronomy, socio-economics, health sciences, atmospheric sciences, etc.).
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