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首页> 外文期刊>Plant and Soil >Decomposition rates of bryophytes in managed boreal forests: influence of bryophyte species and forest harvesting
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Decomposition rates of bryophytes in managed boreal forests: influence of bryophyte species and forest harvesting

机译:受管理的北方森林中苔藓植物的分解速率:苔藓植物种类和森林采伐的影响

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摘要

The slow decomposition rate of boreal forest floor bryophytes contributes both to maintaining high soil C reserves as well as affecting conditions for tree growth by maintaining excessively high soil water content, cooling the soil and slowing nutrient cycles. In this study, mass loss of three bryophyte species (Pleurozium schreberi, Sphagnum capillifolium, S. fuscum) was measured in unharvested, partial cut and low-retention cut forest blocks. Mesh decomposition bags containing the three species and wood sticks were placed at two depths in colonies of either P. schreberi or S. capillifolium (environment) in the three harvest treatments and retrieved after two growing seasons. Mass loss was primarily related to substrate type (P. schreberi > S. capillifolium > wood sticks > S. fuscum) and secondarily to depth. Harvest treatment and environment (P. schreberi or S. capillifolium) only weakly affected sphagna mass loss. The weak effect of harvest treatment suggests that conditions created by low retention cuts do not to stimulate decomposition in this system and are not important enough to stimulate carbon loss, or to counteract paludification. On the other hand, the strong effect of bryophyte type indicates that conditions affecting bryophyte colonization and succession are of great importance in driving carbon and nutrient cycles.
机译:北方森林地表苔藓植物的缓慢分解速率不仅有助于保持土壤高碳储量,而且通过保持土壤水分过高,冷却土壤和降低养分循环来影响树木生长的条件。在这项研究中,在未收获,部分砍伐和低保留砍伐的森林地块中,测量了三种苔藓植物(白灵菇,水生泥炭藓,镰刀菌)的质量损失。在三种收获处理中,将含有三种物种和木棍的网状分解袋放置在施瑞伯氏假单胞菌或毛状葡萄球菌(环境)的菌落中两个深度处,并在两个生长季节后回收。质量损失主要与基质类型有关(P. schreberi> S. capillifolium>木棍> S. fuscum),其次与深度有关。收获处理和环境(P. schreberi或S. capillifolium)仅对虫的质量损失产生微弱影响。收割处理的效果较弱,这表明低截留率造成的条件不会刺激该系统中的分解,并且其重要性不足以刺激碳损失或抵消钯形成。另一方面,苔藓植物类型的强效作用表明,影响苔藓植物定殖和演替的条件在驱动碳和养分循环方面具有重要意义。

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