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首页> 外文期刊>Pedobiologia >Limited evidence for short-term succession of microarthropods during early phases of surface litter decomposition
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Limited evidence for short-term succession of microarthropods during early phases of surface litter decomposition

机译:在表面凋落物分解早期阶段,微型节肢动物的短期演替的有限证据

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Succession of microarthropods during the decomposition of organic matter is an important concept in soil biology. However, few studies have tested whether the pattern of microarthropod colonisation during decomposition is independent of season. We investigated the pattern of colonisation and dominance of microarthropods on decomposing organic matter placed at two different times. Litterbags containing canola leaf or stem material were placed on the soil surface of a Western Australian agricultural field in July and September 1999. They were collected weekly to fortnightly until November. A final set of bags was collected in May 2000. Mass loss and nutrient contents (C, N, Ca, K, P and S) were measured at each sample time. Microarthropods were sorted to order and the mites to species level. Nematode abundance was determined at each sample time. Mass toss of the leaf and stem material was similar between the two placement times (congruent to33% and 15% ash-free dry mass lost over 33 days from leaf and stem material, respectively), although the dynamics of nutrient Loss for some elements was different between the two placements. However, over the dry summer, material placed in September continued to lose nutrients whilst there was little additional loss from the material placed in July. A similar pattern of dominance of microarthropod and mite species was found on the leaf and stem material placed in July with the succession of dominant animals more rapid on the stem material. Nematode abundance appeared to increase as populations of microarthropods declined over time. Populations of microarthropods on the material placed in the September samples never achieved similar levels of abundance to that of the July samples, and the dominant fauna groups were dissimilar to those in the July samples for the same degree of decomposition. Our data indicate that the early phase of surface litter decomposition is not a successional process in terms of the microarthropod community irrespective of season and, that abiotic factors are more likely to be determining nutrient toss from organic matter within particular seasons
机译:在有机物分解过程中,微型节肢动物的演替是土壤生物学中的一个重要概念。但是,很少有研究测试分解期间微节肢动物的定殖模式是否与季节无关。我们调查了在两个不同的时间分解的节肢动物在分解有机物时的定殖和优势模式。 1999年7月和9月,将含有油菜籽叶或茎干材料的垃圾袋放在西澳大利亚州农田的土壤表面上。每周一次至每两周收集一次,直到11月。在2000年5月收集了最后一批袋子。在每个采样时间测量质量损失和营养成分(碳,氮,钙,钾,磷和硫)。将微型节肢动物分类,将螨虫分类。在每个采样时间确定线虫的丰度。在两个放置时间之间,叶片和茎的物料的质量折腾是相似的(在33天中,分别从叶片和茎的物料中损失了33%和15%的无灰干物质),尽管某些元素的养分流失动力学是两个展示位置之间的差异。但是,在干燥的夏季,9月放置的物料继续损失营养,而7月放置的物料几乎没有其他损失。在七月份放置的叶和茎材料上发现了节肢动物和螨类物种的相似优势格局,而优势动物的继代在茎材料上的生长速度更快。线虫的丰度似乎随着微节肢动物种群的减少而增加。 9月份样品中放置的材料上的微型节肢动物种群从未达到与7月份样品相似的丰度水平,并且相同分解度的优势动物群与7月份样品不同。我们的数据表明,无论季节如何,就微节肢动物群落而言,表面凋落物分解的早期阶段都不是一个连续的过程,而且非生物因素更有可能决定特定季节内有机物的养分转化

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