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Short rotation forestry - earthworm interactions: a field based mesocosm experiment.

机译:短轮伐林业-interaction相互作用:基于田间的中观试验。

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Short rotation forestry (SRF) which consists of planting rapidly growing native and non-native tree species has been introduced to the UK to increase woody biomass production. A largely unknown aspect of SRF species is their interaction with soil fauna, of which the earthworm community is a major component. Earthworms have a pronounced impact on litter decomposition, nutrient cycling and tree growth. Conversely, tree litter and root chemistry can impact on the associated earthworm community development. The aim of this study was to determine direct interactions between SRF species and earthworms. A field-based mesocosm experiment was conducted using Betula pendula (birch) and Eucalyptus nitens (eucalyptus) with two earthworm species Lumbricus terrestris and Allolobophora chlorotica. The one year experiment revealed that native birch and non-native eucalyptus had a similar influence on L. terrestris population development. However, birch had a positive impact on A. chlorotica population establishment compared with eucalyptus. In the presence of earthworms, total tree biomass and leaf nitrogen concentration of eucalyptus were increased respectively by 25% and 27% compared with an earthworm-free control. In the presence of earthworms, surface litter incorporation was greater for both tree species (almost 5 times for birch and 3 times for eucalyptus) compared with controls. This work showed direct SRF-earthworm interactions which differed for tree species.
机译:短轮伐林(SRF)由种植快速生长的本地和非本地树种组成,已引入英国以增加木质生物量的生产。 SRF物种在很大程度上未知的方面是它们与土壤动物的相互作用,其中which群落是其中的主要组成部分。 on对凋落物分解,养分循环和树木生长具有显着影响。相反,树木凋落物和根系化学物质会影响相关的earth群落发育。这项研究的目的是确定SRF物种和earth之间的直接相互作用。基于野桦(桦木)和尤加利桉(eucalyptus nitens)以及两种earth物种陆生mb(Lumbricus terrestris)和绿变绿变色菌(Allolobophora chlorotica)进行了基于田间的中观试验。一项为期一年的实验表明,本地桦树和非本地桉树对陆地藜的种群发展具有类似的影响。然而,与桉树相比,桦树对绿叶假单胞菌种群的建立有积极的影响。与没有an的对照相比,在有presence的情况下,桉树的树木总生物量和叶氮浓度分别增加了25%和27%。与controls相比,在有presence的情况下,两种树的表层凋落物掺入量更大(桦木几乎为5倍,桉树为3倍)。这项工作显示了直接的SRF-ear相互作用,对于树木而言有所不同。

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