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首页> 外文期刊>Microbial Ecology: An International Journal >Short-Term Precipitation Exclusion Alters Microbial Responses to Soil Moisture in a Wet Tropical Forest
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Short-Term Precipitation Exclusion Alters Microbial Responses to Soil Moisture in a Wet Tropical Forest

机译:短期降水排除改变了湿热带森林中微生物对土壤水分的响应

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摘要

Many wet tropical forests, which contain a quarter of global terrestrial biomass carbon stocks, will experience changes in precipitation regime over the next century. Soil microbial responses to altered rainfall are likely to be an important feedback on ecosystem carbon cycling, but the ecological mechanisms underpinning these responses are poorly understood. We examined how reduced rainfall affected soil microbial abundance, activity, and community composition using a 6-month precipitation exclusion experiment at La Selva Biological Station, Costa Rica. Thereafter, we addressed the persistent effects of field moisture treatments by exposing soils to a controlled soil moisture gradient in the lab for 4 weeks. In the field, compositional and functional responses to reduced rainfall were dependent on initial conditions, consistent with a large degree of spatial heterogeneity in tropical forests. However, the precipitation manipulation significantly altered microbial functional responses to soil moisture. Communities with prior drought exposure exhibited higher respiration rates per unit microbial biomass under all conditions and respired significantly more CO2 than control soils at low soil moisture. These functional patterns suggest that changes in microbial physiology may drive positive feedbacks to rising atmospheric CO2 concentrations if wet tropical forests experience longer or more intense dry seasons in the future.
机译:占全球陆地生物量碳储量四分之一的许多湿热带森林将在下​​一世纪经历降水变化。土壤微生物对降雨变化的反应可能是生态系统碳循环的重要反馈,但对这些反应基础的生态机制知之甚少。我们在哥斯达黎加的La Selva生物站进行了为期6个月的降水排除实验,研究了降雨减少对土壤微生物丰度,活性和群落组成的影响。此后,我们通过在实验室中将土壤暴露于受控的土壤水分梯度中4周,解决了田间水分处理的持久影响。在野外,对降雨减少的成分和功能响应取决于初始条件,这与热带森林中的高度空间异质性相一致。但是,沉淀操作显着改变了微生物对土壤水分的功能响应。暴露于干旱的社区在所有条件下均表现出较高的单位微生物生物量呼吸速率,并且在土壤湿度较低的情况下,与对照土壤相比,其呼吸的CO2明显增加。这些功能模式表明,如果将来潮湿的热带森林经历更长或更长时间的干旱季节,微生物生理学的变化可能会推动大气中二氧化碳浓度上升的积极反馈。

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