Barros Nieves, Feijoo Sergio, Pérez-Cruzado César, Hansen Lee D
Department of Applied Physics, University of Santiago de Compostela, Santiago de Compostela 15782, Spain.
Department of Agroforestry Engineering, University of Santiago de Compostela, Lugo 27002, Spain.
AIMS Microbiol. 2017 Sep 11;3(4):762-773. doi: 10.3934/microbiol.2017.4.762. eCollection 2017.
Soil samples must usually be stored for a time between collection and measurements of microbial metabolic properties. However, little is known about the influence of storage conditions on microbial metabolism when studied by calorespirometry. Calorespirometry measures the heat rate and the CO rate of microbial metabolism, where the ratio of heat and CO released, the calorespirometric ratio, informs about the nature of substrates being used by microorganisms. Application to soil microbiology is very recent, and little is known about the influence of the common soil preparation practices between collection and analysis on the calorespirometric measurements. For these reasons, the effect of storage at 4 °C on the microbial metabolism was determined by calorespirometry. Results show CO production rate decreases with storage time while the evolution of metabolic heat rate is more stable. The calorespirometric ratio increases with storage time in soil samples with organic matter characterized by lower carbohydrate contribution to the total carbon and higher aromaticity and is unaffected in soil samples with lower carbohydrates in the organic matter and higher aromaticity. Therefore, the calorespirometric ratio values may vary for the same soil sample, such that the soil organic matter properties, as well as the time stored at 4 °C, must be considered in interpreting calorespirometric data on soils.
土壤样品通常必须在采集后至测量微生物代谢特性之间储存一段时间。然而,通过热呼吸测定法研究时,关于储存条件对微生物代谢的影响知之甚少。热呼吸测定法测量微生物代谢的热速率和二氧化碳速率,其中释放的热与二氧化碳的比率,即热呼吸比率,可反映微生物所利用底物的性质。该方法应用于土壤微生物学的时间尚短,对于采集与分析之间常见的土壤预处理操作对热呼吸测量的影响了解甚少。基于这些原因,通过热呼吸测定法确定了4℃储存对微生物代谢的影响。结果表明,二氧化碳产生速率随储存时间降低,而代谢热速率的变化更为稳定。在碳水化合物对总碳贡献较低且芳香性较高的有机物质的土壤样品中,热呼吸比率随储存时间增加,而在有机物质中碳水化合物含量较低且芳香性较高的土壤样品中则不受影响。因此,同一土壤样品的热呼吸比率值可能会有所不同,在解释土壤的热呼吸测定数据时,必须考虑土壤有机质特性以及在4℃下的储存时间。