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Relationships between body length, number of species and species abundance in soil mites and beetles

机译:螨虫和甲虫的体长,物种数和物种丰富度之间的关系

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摘要

Data are presented on the relationships between body length and the number of species, between body length and individual species abundances and between body length and the total number of individuals in a size class for soil oribatid and mesostigmatid mites and beetles. These relationships are of special interest because current models may not apply to such very small animal size classes. Soil core samples from the Lansdowne State Forest, New South Wales, Australia contained 79 oribatid, 34 mesostigmatid and 45 beetle species. The number of species did not increase with decreases in body size as rapidly as theory predicts and the number of species declined in the smallest size classes. The relative abundance and range of body sizes were similar to those reported elsewhere, hence this trend is expected to be repeated across regions. Regression analysis of total abundance and body length showed a strong linear relationship with a slope of -2.31. Linear relationships between individual species abundance and body length were significant with slopes ranging from -0.67 to -2.25. The similarity in slopes between the two abundance relationships suggests that total abundance in a size class is independent of the number of species in that class.
机译:列出了有关土长尾螨和中igma螨和甲虫的体长与物种数之间,体长与个体物种丰富度之间以及体长与个体总数之间关系的数据。这些关系特别引起关注,因为当前的模型可能不适用于非常小的动物尺寸类别。来自澳大利亚新南威尔士州兰斯当国家森林的土壤核心样品包含79个原蝙蝠,34个中兽角兽和45种甲虫。物种的数量并没有如理论所预测的那样随着体型的减小而迅速增加,而最小尺寸类别的物种数量却在下降。相对丰度和体型范围与其他地方报道的相似,因此,预计这一趋势将在各个地区重复出现。总丰度和体长的回归分析显示出很强的线性关系,斜率为-2.31。各个物种的丰度与体长之间的线性关系很明显,其斜率范围为-0.67至-2.25。两种丰度关系之间的斜率相似,表明大小类别中的总丰度与该类别中物种的数量无关。

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