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首页> 外文期刊>Soil Biology & Biochemistry >Fungal richness contributes to multifunctionality in boreal forest soil
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Fungal richness contributes to multifunctionality in boreal forest soil

机译:真菌丰富有助于北方森林土壤中的多功能性

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Boreal forests carry out functions that are critical to global biogeochemical cycling and climate regulation. Soil microbial diversity has been reported to drive multiple functions simultaneously (multifunctionality) in drylands and temperate ecosystems, however, the role and importance of bacterial and fungal diversity in driving multiple soil functions in boreal forest ecosystems remains poorly understood. We collected soils from 58 plots across upland and lowland (swamp) habitats in a boreal forest ecosystem to evaluate the linkages between fungal/bacterial diversity and multiple soil functions. Fungal and bacterial diversity were determined using 18S rDNA and 16S rDNA amplicons sequencing, and functions related to nutrient cycling (dissolved inorganic and organic nitrogen and carbon, nitrification) and climate regulation (CO2 and N2O emissions) were measured. The results showed that fungal but not bacterial richness was positively related to soil multifunctionality. We further used structural equation modelling to identify the effects of fungal and bacterial communities, and other environmental variables (moisture, pH, soil organic carbon and habitat types) on multifunctionality. Our model predicted 65.0% of the variation in soil multifunctionality, and confirmed that along with moisture and habitats, fungal richness and community composition were significantly and positively associated with multifunctionality. Finally, we identified specific fungal genera strongly associated with soil multifunctionality, and saprotrophic fungi were especially important for maintaining multiple soil functions. Our results suggest that potential losses in fungal diversity could result in reductions in soil functions particularly linked to nutrient cycling and climate regulation in boreal forests.
机译:北方森林对全球生物地球化学骑自行车和气候调节至关重要。据报道,土壤微生物多样性在旱地和温带温带生态系统中同时推动多种功能(多功能性),然而,细菌和真菌多样性在北方森林生态系统中驾驶多种土壤功能方面的作用和重要性仍然很清楚。我们在北方森林生态系统中收集了跨地和低地(沼泽)栖息地的58个地块的土壤,以评估真菌/细菌多样性和多种土壤功能之间的联系。使用18S rDNA和16S rdNA扩增子测定测定真菌和细菌多样性,并测量与营养循环(溶解无机和有机氮和碳,硝化)和气候调节(CO2和N2O发射)相关的功能。结果表明,真菌但不是细菌丰富性与土壤多功能正常相关。我们进一步使用结构方程模型来识别真菌和细菌群落的影响,以及其他环境变量(水分,pH,土壤有机碳和栖息地类型)对多功能性。我们的型号预测了土壤多功能性变异的65.0%,并证实与水分和栖息地,真菌丰富和群落组成显着且与多功能正常相关。最后,我们确定了与土壤多功能性强烈相关的特异性真菌属,并且Saprotrophic真菌对于维持多种土壤功能尤为重要。我们的研究结果表明,真菌多样性的潜在损失可能导致土壤职能减少,特别是与北欧森林中的营养循环和气候调节有关。

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