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Combined effects of climate warming and plant diversity loss on above- and below-ground grassland productivity.

机译:气候变暖和植物多样性丧失对地上和地下草地生产力的综合影响。

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摘要

Projections of global change predict both increases of the surface temperature and decreases of biodiversity, but studies on the combined impact of both on terrestrial ecosystems are lacking. We assessed the impact of these two global changes on above- and below-ground productivity of grassland communities. Experimental ecosystems containing one, three or nine grassland species were grown in 12 sunlit, climate-controlled chambers in Wilrijk, Belgium. Half of these chambers were exposed to ambient air temperatures, while the other half were warmed by 3 degrees C. Equal amounts of water were added to heated and unheated communities, so that any increases in evapotranspiration due to warmer conditions would result in a drier soil. Warming led to a decreased productivity of both above-ground plant parts (-18%) and roots (-23%), which coincided with a significantly lower soil water content. Complementarity in resource use and/or facilitation slightly enhanced above-ground productivity in multi-species communities, regardless of the induced warming. Interactive effects between temperature treatment and species richness level were found below-ground, however, where warming nullified the positive effect of richness on root productivity. Future warmer conditions could further increase losses of productivity associated with declining species numbers..
机译:对全球变化的预测既预测了地表温度的升高,又预测了生物多样性的下降,但目前尚缺乏关于二者对陆地生态系统综合影响的研究。我们评估了这两个全球变化对草地社区地上和地下生产力的影响。在比利时的威尔里克,有12个阳光照射,气候控制的室内生长着包含1种,3种或9种草原物种的实验生态系统。这些小室中的一半暴露于环境空气温度,另一半暴露于3摄氏度。将等量的水添加到加热和未加热的社区中,因此,由于温度升高而引起的蒸散量的增加都会导致土壤更干燥。 。变暖导致地上植物部分(-18%)和根部(-23%)的生产力下降,这与土壤含水量明显降低同时发生。资源利用和/或便利的互补性使多物种社区的地上生产力略有提高,而与引起的变暖无关。在地下发现了温度处理和物种丰富度水平之间的相互作用,然而,变暖抵消了丰富度对根系生产力的积极影响。未来变暖的条件可能会进一步增加与物种数量下降相关的生产力损失。

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