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当根据水分有效性和温度来测定时,环境因素会影响土壤中微生物胞外酶活性的响应。

Environmental factors affect the response of microbial extracellular enzyme activity in soils when determined as a function of water availability and temperature.

作者信息

Gomez Enrique J, Delgado José A, Gonzalez Juan M

机构信息

Instituto de Recursos Naturales y Agrobiología, Consejo Superior de Investigaciones Científicas IRNAS-CSIC Sevilla Spain.

出版信息

Ecol Evol. 2020 Aug 16;10(18):10105-10115. doi: 10.1002/ece3.6672. eCollection 2020 Sep.

Abstract

Microorganisms govern soil carbon cycling with critical effects at local and global scales. The activity of microbial extracellular enzymes is generally the limiting step for soil organic matter mineralization. Nevertheless, the influence of soil characteristics and climate parameters on microbial extracellular enzyme activity (EEA) performance at different water availabilities and temperatures remains to be detailed. Different soils from the Iberian Peninsula presenting distinctive climatic scenarios were sampled for these analyses. Results showed that microbial EEA in the mesophilic temperature range presents optimal rates under wet conditions (high water availability) while activity at the thermophilic temperature range (60°C) could present maximum EEA rates under dry conditions if the soil is frequently exposed to high temperatures. Optimum water availability conditions for maximum soil microbial EEA were influenced mainly by soil texture. Soil properties and climatic parameters are major environmental components ruling soil water availability and temperature which were decisive factors regulating soil microbial EEA. This study contributes decisively to the understanding of environmental factors on the microbial EEA in soils, specifically on the decisive influence of water availability and temperature on EEA. Unlike previous belief, optimum EEA in high temperature exposed soil upper layers can occur at low water availability (i.e., dryness) and high temperatures. This study shows the potential for a significant response by soil microbial EEA under conditions of high temperature and dryness due to a progressive environmental warming which will influence organic carbon decomposition at local and global scenarios.

摘要

微生物控制着土壤碳循环,在局部和全球尺度上具有关键影响。微生物胞外酶的活性通常是土壤有机质矿化的限制步骤。然而,土壤特性和气候参数在不同水分有效性和温度下对微生物胞外酶活性(EEA)表现的影响仍有待详细研究。对来自伊比利亚半岛呈现不同气候情景的不同土壤进行了采样分析。结果表明,在中温温度范围内,微生物EEA在湿润条件下(高水分有效性)呈现最佳速率,而在嗜热温度范围(60°C)下,如果土壤经常暴露于高温,其活性在干燥条件下可能呈现最大EEA速率。土壤微生物EEA达到最大值时的最佳水分有效性条件主要受土壤质地影响。土壤性质和气候参数是决定土壤水分有效性和温度的主要环境因素,而土壤水分有效性和温度是调节土壤微生物EEA的决定性因素。本研究对理解土壤中影响微生物EEA的环境因素,特别是水分有效性和温度对EEA的决定性影响,做出了决定性贡献。与以往的认识不同,在高温暴露的土壤上层,最佳EEA可能在低水分有效性(即干燥)和高温条件下出现。本研究表明,由于环境逐渐变暖,在高温和干燥条件下土壤微生物EEA可能会有显著响应,这将影响局部和全球情景下的有机碳分解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e17/7520203/2d788908f490/ECE3-10-10105-g001.jpg

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