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Effect of trees on the decomposition rate of cellulose in soils under industrial pollution.

机译:树木对工业污染下土壤中纤维素分解速率的影响。

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The effect of spruce and birch on the spatial distribution of the decomposition rate of pure cellulose in the region of the Middle Urals copper smelter near the town of Revda in Sverdlovsk oblast (southern taiga) was studied. The contamination of the soil by heavy metals (Cu, Pb, Cd, and Zn) decreased the decomposition rate by 2.7 (spruce-fir forests) to 5.4 (birch forests) times and increased its spatial variation (the coefficient of variation reached 80-226%). The trees in the forests could not be considered as the main determinants of the horizontal structure of the soil microbocenosis, because the position of a test point with respect to the tree stem explains less than 10% of the total spatial variance of the cellulolytic activity. The decomposition rate of the cellulose in the spruce-fir forests was higher than in the birch forests; it was higher in the undercrown areas than in the forest canopy gaps. It was supposed that this was related to the buffering role of the litter, which smoothed the fluctuations of the water content. Under the pollution conditions, the differences between the coniferous and deciduous biotopes increased, and those between the undercrown areas and canopy gaps decreased.Notes Translated from Pochvovedenie (2011) 5 597-610, (RU).
机译:研究了云杉和桦树对斯维尔德洛夫斯克州(南塔伊加)Revda镇附近的中乌拉尔铜冶炼厂地区纯纤维素分解速率的空间分布的影响。重金属(铜,铅,镉和锌)对土壤的污染使分解速度降低了2.7倍(云杉冷杉林)至5.4倍(桦木林),并增加了其空间变异(变异系数达到80- 226%)。森林中的树木不能被认为是土壤微孔菌水平结构的主要决定因素,因为测试点相对于树木茎的位置解释了纤维素分解活性总空间变化的不到10%。云杉杉木林中纤维素的分解率高于桦木林。在冠下地区,该比例高于林冠间隙。据推测,这与垫料的缓冲作用有关,从而减轻了含水量的波动。在污染条件下,针叶和落叶生物群落之间的差异增加,而冠下区域和冠层间隙之间的差异减小。注解由 Pochvovedenie (2011) 5 597 610,(RU)。

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