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Elevated CO\u3csub\u3e2\u3c/sub\u3e and warming shift the functional composition of soil nematode communities in a semiarid grassland

机译:升高的CO \ u3csub \ u3e2 \ u3c / sub \ u3e和变暖土壤的功能组成 半干旱草原的线虫群落

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摘要

Climate change can alter soil communities and functions, but the consequences are uncertain for most ecosystems. We assessed the impacts of climate change on soil nematodes in a semiarid grassland using a 7-year, factorial manipulation of temperature and [CO2]. Elevated CO2 and warming decreased the abundance of plant-feeding nematodes and nematodes with intermediate to high values on the colonizer-persister scale (cp3-5), including predators and omnivores. Thus, under futuristic climate conditions, nematode communities were even more dominated by r-strategists (cp1-2) that feed on bacteria and fungi. These results indicate that climate change could alter soil functioning in semiarid grasslands. For example, the lower abundance of plant-feeding nematodes could facilitate positive effects of elevated CO2 and warming on plant productivity. The effects of elevated CO2 and warming on nematode functional composition were typically less than additive, highlighting the need for multi-factor studies.
机译:气候变化可以改变土壤的群落和功能,但其后果对于大多数生态系统来说都是不确定的。我们使用7年的温度和[CO2]阶乘控制方法评估了气候变化对半干旱草原土壤线虫的影响。 CO2升高和升温降低了植物摄食线虫和定居者-姊妹规模(cp3-5)中至高值的线虫的数量,其中包括掠食者和杂食动物。因此,在未来的气候条件下,线虫群落被以细菌和真菌为食的r策略家(cp1-2)所主导。这些结果表明,气候变化可能会改变半干旱草原的土壤功能。例如,较低的植物饲养线虫数量可以促进二氧化碳升高和变暖对植物生产力的积极影响。二氧化碳浓度升高和变暖对线虫功能成分的影响通常小于累加性因素,这突出表明需要进行多因素研究。

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