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Spatial and Temporal Variations of Microbial Properties at Different Scales in Shallow Subsurface Sediments

机译:浅层地下沉积物不同尺度下微生物特性的时空变化

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Microbial abundance, activity, and community-level physiological profiles (CLPP) were examined at centimeter and meter scales in the subsurface environment at a site near Oyster, VA. At the centimeter scale, variations in aerobic culturable heterotrophs (ACH) and glucose mineralization rates (GMR) were highest in the water table zone, indicating that water availability has a major effect on variations in microbial abundance and activity. At the meter scale, ACH and microaerophiles decreased significantly with depth, whereas anaerobic GMR often increased with depth; this may indicate low redox potentials at depth caused by microbial consumption of oxygen. Data of CLPP indicated that the microbial community (MC) in the soybean field exhibited greater capability to utilize multiple carbon sources than MC in the corn field. This difference may reflect nutrient availability associated with different crops (soybean vs corn). By using a regression model, significant spatial and temporal variations were observed for ACH, microaerophiles, anaerobic GMR, and CLPP. Results of this study indicated that water and nutrient availability as well as land use could have a dominant effect on spatial and temporal variations in microbial properties in shallow subsurface environments.
机译:在弗吉尼亚州牡蛎市附近的一个地下环境中,以厘米和米为单位检查了微生物的丰度,活性和群落水平的生理特征(CLPP)。在厘米尺度上,需水可培养异养菌(ACH)和葡萄糖矿化速率(GMR)的变化在地下水位区域最高,表明水的可利用性对微生物丰度和活性的变化具有重要影响。在米级,ACH和微需氧菌随着深度的增加而显着降低,而厌氧GMR随深度的增加而增加。这可能表明由于微生物耗氧而引起的深度氧化还原电位低。 CLPP的数据表明,与玉米田相比,大豆田中的微生物群落(MC)表现出更大的利用多种碳源的能力。这种差异可能反映了不同作物(大豆与玉米)相关的养分利用率。通过使用回归模型,观察到了ACH,微需氧菌,厌氧GMR和CLPP的明显时空变化。这项研究的结果表明,水和养分的可利用性以及土地利用可能对浅表环境下微生物特性的时空变化起主要作用。

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