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Microbiological Diagnostics of the Status of Pyrogenically Changed Pine Forests in the Lower Angara River Basin

机译:安加拉河下游地区热变松林状况的微生物学诊断

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The structure and functions of the microbial complexes in the soils after surface fires of different intensity were studied. The fires of high and medium intensity were found to lead to a significant decrease in the number and functional activity of microorganisms participating in the nitrogen-carbon cycle. The degree of changes in the postfire status of the soil microbocenoses was revealed to be related to the joint action of pyro-genesis and the hydrothermal conditions at the moment of the fire rather than to the fire intensity. The favorable combination of the elevated soil moisture and soil heating stimulates the microbiological processes of organic matter mineralization, thus, improving the forest-growing conditions for the pine forests. The microbial biom-ass, basal respiration, and the microbial metabolic coefficient are shown to adequately reflect the postfire status of the microbial complexes.
机译:研究了不同强度地表火烧伤后土壤中微生物复合物的结构和功能。发现高强度和中等强度的火灾导致参与氮碳循环的微生物数量和功能活性显着下降。结果表明,土壤微核素的后燃状态变化程度与火灾发生时热解和热液条件的联合作用有关,而与火灾强度无关。土壤水分升高和土壤加热的有利结合刺激了有机物矿化的微生物过程,从而改善了松树林的森林生长条件。微生物的生物量,基础呼吸和微生物的代谢系数显示出足以反映微生物复合物的燃烧后状态。

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