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首页> 外文期刊>Soil Biology & Biochemistry >Epi-anecic rather than strict-anecic earthworms enhance soil enzymatic activities
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Epi-anecic rather than strict-anecic earthworms enhance soil enzymatic activities

机译:Epi-轶事而不是严格的虫害增强土壤酶活性

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Earthworms in interaction with soil microorganisms play a key role in litter decomposition. Moreover, as soil engineers, earthworms modify microbial communities and their enzymatic activities. Most studies focusing on earthworms and soil enzymatic activities compare distinct ecological categories of earthworms whereas their contributions and interactions within a given ecological category remain largely unknown. In this context, the aims of the present study were to determine and compare the contribution of (1) three strict-anecic earthworm species, (2) three epi-anecic earthworm species and (3) the pairwise interactions between these different species on Lolium perenne leaf litter decomposition and soil microbial activity. After 30 days of incubation, the surface litter mass loss and five soil enzymatic activities (FDAse, beta-D-glucosidase, cellobiohydrolase, leucine aminopeptidase and acid phosphatase) were measured in both earthworm burrows and middens. In mono-specific assemblages, leaf litter mass loss and enzymatic activities were significantly higher in the presence of epi-anecic compared to strict-anecic species, whatever the species identity. These differences were higher for the beta-D-glucosidase, leucine amino-peptidase and FDAse (+78%, +57% and + 34%, respectively). Earthworm species interactions at both intra- and inter-ecological sub-categories did not enhance either leaf litter mass loss or enzymatic activities. Interestingly, FDAse activity was higher in earthworm burrows whereas acid phosphatase activity was higher in earthworm middens. These results indicate that the two anecic ecological sub-categories have different impacts on soil functioning and each of them regroups earthworm species with similar behaviour. This functional distinction highlights the key role of epi-anecic earthworms in fresh surface litter burial and decomposition, featuring their importance on nutrient cycling in soil and for microbial activities stimulation through resource availability.
机译:与土壤微生物相互作用的蚯蚓在凋落物分解中发挥着关键作用。此外,作为土壤工程师,蚯蚓改变微生物社区及其酶活性。大多数重点研究蚯蚓和土壤酶活性的研究比较了蚯蚓的不同生态类别,而在给定生态类别内的贡献和相互作用仍然很大程度上是未知的。在这种情况下,本研究的目的是确定和比较(1)三个严格萎缩蚯蚓种类,(2)三个外肌蚯蚓种类和(3)在Lolium上这些不同物种之间的成对相互作用的贡献Perenne叶凋落物分解和土壤微生物活性。在蚯蚓挖洞和中间人中测量,在孵育30天后,表面凋落物质量损失和五种土壤酶活性(FDASE,β-D-葡糖苷酶,纤维素氨基肽酶和酸性磷酸酶)。在与严格萎缩物种相比,叶凋落物质量损失和酶活性在与严格的异常物种相比,无论物种形式是什么。对于β-D-葡糖苷酶,亮氨酸氨基 - 肽酶和FDase(分别分别为+ 78%,+ 57%和+ 34%)较高这些差异。蚯蚓种类在内部和生态学群体的相互作用并未增强叶子凋落物质量损失或酶活性。有趣的是,蚯蚓洞中的FDase活性较高,而蚯蚓中间人酸性磷酸酶活性较高。这些结果表明,两种轶事生态分类对土壤功能的影响不同,并且它们中的每一个都会重新组合具有类似行为的蚯蚓种类。这种功能区别突出了外表蚯蚓在新鲜表面垃圾埋葬和分解中的关键作用,具有它们对土壤中营养循环的重要性和通过资源可用性刺激微生物活动。

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