...
首页> 外文期刊>Soil Biology & Biochemistry >Effect of temperature on metabolic activity of intact microbial communities: evidence for altered metabolic pathway activity but not for increased maintenance respiration and reduced carbon use efficiency.
【24h】

Effect of temperature on metabolic activity of intact microbial communities: evidence for altered metabolic pathway activity but not for increased maintenance respiration and reduced carbon use efficiency.

机译:温度对完整微生物群落代谢活性的影响:代谢途径活性改变的证据,但维持呼吸作用增加和碳利用效率降低的证据。

获取原文
获取原文并翻译 | 示例
           

摘要

We used metabolic tracers and modeling to analyze the response of soil metabolism to a sudden change in temperature from 4 to 20 degrees C. We hypothesized that intact soil microbial communities would exhibit shifts in pentose phosphate pathway and glycolysis activity in the same way as is regularly observed for individual microorganisms in pure culture. We also hypothesized that increased maintenance respiration at higher temperature would result in greater energy production and reduced carbon use efficiency (CUE). Two hours after temperature increase, respiration increased almost 10-fold. Although all metabolic processes were increased, the relative activity of metabolic processes, biosynthesis, and energy production changed. Pentose phosphate pathway was reduced (17-20%), while activities of specific steps in glycolysis (51%) and Krebs cycle (7-13%) were increased. In contrast, only small but significant changes in biosynthesis (+2%), ATP production (-3%) and CUE (+2%) were observed. In a second experiment, we compared the metabolic responses to temperature increases in soils from high and low elevation. The shift in activity from pentose phosphate pathway to glycolysis with higher temperature was confirmed in both soils, but the responses of Krebs cycle, biosynthesis, ATP production, and CUE were site dependent. Our results indicate that (1) in response to temperature, communities behave biochemically similarly to single species and, (2) our understanding of temperature effects on CUE, energy production and use for maintenance and growth processes is still incomplete.
机译:我们使用代谢示踪剂和模型来分析土壤代谢对温度从4到20摄氏度的突然变化的响应。我们假设完整的土壤微生物群落将以与常规相同的方式表现出戊糖磷酸途径和糖酵解活性的变化。在纯培养物中观察到单个微生物。我们还假设在较高的温度下增加维持呼吸将导致更多的能源生产并降低碳使用效率(CUE)。温度升高两小时后,呼吸增加了近10倍。尽管所有代谢过程都增加了,但代谢过程,生物合成和能量产生的相对活性却发生了变化。磷酸戊糖途径减少(17-20%),而糖酵解中特定步骤的活性(51%)和克雷布斯循环(7-13%)增加。相反,仅观察到生物合成(+2%),ATP产生(-3%)和CUE(+ 2%)的微小但显着变化。在第二个实验中,我们比较了高海拔和低海拔土壤对温度升高的代谢反应。在两种土壤中均证实了从戊糖磷酸途径向较高温度的糖酵解活动的转变,但克雷布斯循环,生物合成,ATP产生和CUE的响应均取决于位置。我们的结果表明,(1)响应温度,群落的生化行为类似于单个物种,(2)我们对温度对CUE,能量生产以及用于维持和生长过程的影响的理解仍然不完整。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号