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Transformation of Ecofunctional Parameters of Soil Microbial Cenoses in Clearings for Power Transmission Lines in Central Siberia

机译:土壤微生物春季经源性参数的转型在西伯利亚中部电力传输线清空中

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摘要

Changes in soil microbial processes and phytocenotic parameters were studied in clearings made for power transmission lines in the subtaiga and southern taiga of Central Siberia. In these clearings, secondary meadow communities play the main environmental role. The substitution of meadow vegetation for forest vegetation, the increase in the phytomass by 40-120%, and the transformation of the hydrothermic regime in the clearings led to the intensification of the humus-accumulative process, growth of the humus content, reduction in acidity and oligotrophy of the upper horizons in the gray soils of the meadow communities, and more active microbial mineralization of organic matter. In the humus horizon of the soils under meadows, the microbial biomass (C-micr) increased by 20-90%, and the intensity of basal respiration became higher by 60-90%. The values of the microbial metabolic quotient were also higher in these soils than in the soils under the native forests. In the 0- to 50-cm layer of the gray soils under the meadows, the total Cmicr reserves were 35-45% greater and amounted to 230-320 g/m(3); the total microbial production of CO2 was 1.5-2 times higher than that in the soil of the adjacent forest and reached 770-840 mg CO2-C/m(3) h. The predominance of mineralization processes in the soils under meadows in the clearings reflected changes in edaphic and trophic conditions of the soils and testified to an active inclusion of the herb falloff into the biological cycle.
机译:研究了土壤微生物方法和植物细胞参数的变化,在Subtaiga和Sulther of Siberia的亚洲地区电力传输线上进行了清洁。在这些清除中,二次草甸社区发挥着主要的环境作用。植被植被替代植物植被,植物植物的增加40-120%,并在清洁中的水热方案转化导致了腐殖质累积过程的强化,腐殖质含量的生长,减少了酸度灰色土壤中灰色土壤的寡核苷酸和有机质的更活跃微生物矿化的寡核苷酸。在草甸下土壤的腐殖质地平线中,微生物生物量(C-MICR)增加了20-90%,基础呼吸强度变得更高60-90%。这些土壤中微生物代谢商的值比原生林下的土壤中的较高。在草甸下的灰色土壤中的0至50厘米的层中,总CMICR储备备长35-45%,含量为230-320克/米(3); CO 2的总微生物产量比相邻森林的土壤高1.5-2倍,达到770-840mg CO 2-C / M(3)小时。清洁中的草地下土壤中的土壤中的矿化过程的优势反映了土壤的涂料和营养状况的变化,并证明了将草药衰退的活性纳入生物循环。

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