Vegetation structure as the main source of variability in scorpion assemblages at small spatial scales and further considerations for the conservation of Caatinga landscapes

IF 0.7 Q4 BIODIVERSITY CONSERVATION Neotropical Biology and Conservation Pub Date : 2020-12-17 DOI:10.3897/neotropical.15.e59000
S. I. Foerster, André Felipe de Araújo Lira, Cauê Guion de Almeida
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引用次数: 4

Abstract

Even at the local scale, environmental changes due of anthropogenic actions represent a source of disturbance in terrestrial ecosystems, forcing species to respond according to their ecological plasticity. Thus, stenotopic species and those with low-dispersal ability will likely be negatively affected by landscape modifications that reduce environmental complexity. In this study, we identify and quantify the effects of biotic and abiotic factors related to habitat complexity on the variation in scorpion assemblages in terms of both species’ richness, abundance and composition across 18 transects covering Caatinga landscapes with different levels of degradation. Using ultraviolet flashlights, we sampled 269 scorpions, belonging to six species and two families. The results showed contrasting patterns of species richness and abundance that depend on the level of habitat complexity. More specifically, we reported that scorpion species richness could be predicted by the number of trees, while the coefficient of variation of the diameter at breast height of trees (cvDBH) is a predictor of scorpion abundance. These findings suggest that vegetation structure is deterministic for the maintenance of scorpion assemblages in Caatinga landscapes. In addition, the cvDBH and tree number may explain 39% and 40% of the variability observed amongst scorpion assemblages in terms of richness difference and species composition, respectively. This study provides insights concerning the development of conservation strategies, clarifying the role of habitat complexity for the preservation of low-dispersal animals in neglected environments, such as those within the Caatinga domain.
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植被结构是小空间尺度蝎子群落变异的主要来源及对Caatinga景观保护的进一步考虑
即使在局部尺度上,人为活动引起的环境变化也是陆地生态系统干扰的一个来源,迫使物种根据其生态可塑性作出反应。因此,减少环境复杂性的景观改造可能会对狭窄物种和低扩散能力物种产生负面影响。在本研究中,我们确定并量化了与栖息地复杂性相关的生物和非生物因素对Caatinga不同退化程度景观的18个样带蝎子群落多样性、丰度和组成的影响。利用紫外线手电筒,我们采集了269只蝎子,分属2科6种。结果表明,物种丰富度和丰度随生境复杂程度的变化而变化。更具体地说,我们报道了蝎子物种丰富度可以通过树的数量来预测,而树的胸径变异系数(cvDBH)是蝎子丰富度的预测因子。这些发现表明,植被结构对卡廷加景观中蝎子群落的维持具有决定性。此外,在丰富度差异和物种组成方面,cvDBH和树数可以分别解释39%和40%的蝎子组合变异性。该研究为保护策略的发展提供了见解,阐明了栖息地复杂性在被忽视环境(如Caatinga域)中保护低分散动物的作用。
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来源期刊
Neotropical Biology and Conservation
Neotropical Biology and Conservation Environmental Science-Nature and Landscape Conservation
CiteScore
1.70
自引率
0.00%
发文量
0
审稿时长
24 weeks
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