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Short-term effects of wildfire on microbial biomass and abundance in black pine plantation soils in Turkey

机译:野火对土耳其黑松人工林土壤微生物量和丰度的短期影响

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Measurement of soil microbial biomass and abundance offers a means of assessing the response of all microbial populations to changes in the soil environment after a fire. We examined the effects of wildfire on microbial biomass C and N, and abundance of bacteria and fungi 2 months after a fire in a pine plantation. Soil organic carbon (C_(org)), total nitrogen (N_(tot)), and electrical conductivity (EC) increased following the fire. In terms of microbial abundance, the overall results showed that burned forest soils had the most bacteria and fungi. Microbial biomass C and N from soil in the burned forest were not significantly different from their unburned forest counterparts. However, microbial indices indicated that fire affects soil microbial community structure by modifying the environmental conditions. The results also suggested that low-intensity fire promotes microorganism functional activity and improves the chemical characteristics of soils under humid climatic conditions.
机译:土壤微生物量和丰度的测量提供了一种方法,用于评估火灾后所有微生物种群对土壤环境变化的响应。我们研究了野火对松树人工林火灾后2个月对微生物生物量C和N以及细菌和真菌含量的影响。火灾后,土壤有机碳(C_(org)),总氮(N_(tot))和电导率(EC)增加。就微生物丰度而言,总体结果表明,烧过的森林土壤中细菌和真菌最多。烧过的森林土壤中的微生物生物量碳和氮与未烧过的森林中的微生物生物量碳和氮没有显着差异。然而,微生物指数表明,火通过改变环境条件影响土壤微生物群落结构。研究结果还表明,低强度燃烧可提高潮湿环境下土壤微生物的功能活性,并改善土壤的化学特性。

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