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Interactive effects of elevated ozone and UV-B radiation on soil nematode diversity

机译:臭氧和UV-B辐射升高对土壤线虫多样性的相互作用

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Ultraviolet-B (UV-B) radiation and elevated tropospheric ozone may cause reductions in the productivity and quality of important agricultural crops. However, research regarding their interactive effect is still scarce, especially on the belowground processes. Using the open top chambers experimental setup, we monitored the response of soil nematodes to the elevated O3 and UV-B radiation individually as well as in combination. Our results indicated that elevated O3 and UV-B radiation have impact not only on the belowground biomass of plants, but also on the community structure and functional diversity of soil nematodes. The canonical correspondence analysis suggested that soil pH, shoot biomass and microbial biomass C and N were relevant parameters that influencing soil nematode distribution. The interactive effects of elevated O3 and UV-B radiation was only observed on the abundance of bacterivores. UV-B radiation significantly increased the abundance of total nematodes and bacterivores in comparison with the control at pod-filling stage of soybean. Following elevated O3, nematode diversity index decreased and dominance index increased relative to the control at pod-filling stage of soybean. Nematode functional diversity showed response to the effects of elevated O3 and UV-B radiation at pod-bearing stage. Higher enrichment index and lower structure index in the treatment with both elevated O3 and UV-B radiation indicated a stressed soil condition and degraded soil food web. However, the ratios of nematode trophic groups suggested that the negative effects of elevated O3 on soil food web may be weakened by the UV-B radiations.
机译:紫外线B(UV-B)辐射和对流层臭氧升高可能会导致重要农作物的生产力和质量下降。但是,关于它们的交互作用的研究仍然很少,尤其是在地下过程中。使用开放式顶室的实验装置,我们分别监测了土壤线虫对升高的O3和UV-B辐射的反应,以及对二者的结合。我们的结果表明,升高的O3和UV-B辐射不仅影响植物地下生物量,而且还影响土壤线虫的群落结构和功能多样性。典型的对应分析表明,土壤pH,芽生物量和微生物生物量碳和氮是影响土壤线虫分布的相关参数。 O3和UV-B辐射升高的相互作用仅在大量的噬菌体上观察到。与大豆荚果灌装阶段的对照相比,UV-B辐射显着增加了总线虫和噬菌体的丰度。随着O3含量的升高,线虫的多样性指数降低,优势指数相对于大豆荚果灌浆期增加。线虫的功能多样性表明在豆荚期对升高的O3和UV-B辐射有反应。在O3和UV-B辐射升高的情况下,较高的富集指数和较低的结构指数表明土壤条件紧张,土壤食物网退化。但是,线虫营养基团的比率表明,O3含量升高对土壤食物网的负面影响可能会因UV-B辐射而减弱。

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