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Data from: Broad and flexible stable isotope niches in invasive non-native Rattus spp. in anthropogenic and natural habitats of central eastern Madagascar

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DataONE2017-04-06 更新2024-06-26 收录
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Background: Rodents of the genus Rattus are among the most pervasive and successful invasive species, causing major vicissitudes in native ecological communities. A broad and flexible generalist diet has been suggested as key to the invasion success of Rattus spp. Here, we use an indirect approach to better understand foraging niche width, plasticity, and overlap within and between introduced Rattus spp. in anthropogenic habitats and natural humid forests of Madagascar. Results: Based on stable carbon and nitrogen isotope values measured in hair samples of 565 individual rodents, we found that R. rattus had an extremely wide foraging niche, encompassing the isotopic space covered by a complete endemic forest-dwelling Malagasy small mammal community. Comparisons of Bayesian standard ellipses, as well as (multivariate) mixed-modeling analyses, revealed that the stable isotope niche of R. rattus tended to change seasonally and differed between natural forests and anthropogenic habitats, indicating plasticity in feeding niches. In co-occurrence, R. rattus and R. norvegicus partitioned feeding niches. Isotopic mismatch of signatures of individual R. rattus and the habitat in which they were captured, indicate frequent dispersal movements for this species between natural forest and anthropogenic habitats. Conclusions: Since R. rattus are known to transmit a number of zoonoses, potentially affecting communities of endemic small mammals, as well as humans, these movements presumably increase transmission potential. Our results suggest that due to their generalist diet and potential movement between natural forest and anthropogenic habitats, Rattus spp. might affect native forest-dependent Malagasy rodents as competitors, predators, and disease vectors. The combination of these effects helps explain the invasion success of Rattus spp. and the detrimental effects of this genus on the endemic Malagasy rodent fauna.

研究背景:鼠属(Rattus)啮齿动物是分布最广泛、适应性最强的入侵物种之一,会对本土生态群落造成显著扰动。此前研究认为,宽泛且灵活的广食性食谱是鼠属物种入侵成功的关键。本研究采用间接分析方法,旨在深入了解马达加斯加人为栖息地与天然湿润林中,入侵鼠属物种内部及相互之间的觅食生态位宽度、可塑性与生态位重叠情况。 研究结果:基于对565只啮齿动物毛发样本的稳定碳、氮同位素检测,本研究发现黑家鼠(Rattus rattus)拥有极宽的觅食生态位,其同位素空间覆盖范围完整涵盖了马达加斯加本土森林栖息小型哺乳动物群落的同位素空间。通过贝叶斯标准椭圆比较以及(多变量)混合模型分析,结果显示黑家鼠的稳定同位素生态位呈现季节性变化,且在天然森林与人为栖息地间存在显著差异,表明其觅食生态位具有可塑性。在同域共存时,黑家鼠与褐家鼠(Rattus norvegicus)会分化各自的觅食生态位。对个体黑家鼠的同位素特征与其捕获生境进行比对后发现,二者存在明显错配,这表明该物种频繁在天然森林与人为栖息地之间进行扩散活动。 研究结论:已知黑家鼠可传播多种人畜共患病,这不仅可能影响本土小型哺乳动物群落,还会威胁人类健康,而上述扩散活动大概率会提升疾病传播风险。本研究结果表明,凭借广食性食谱以及在天然森林与人为栖息地间的潜在扩散能力,鼠属物种可能通过竞争、捕食以及充当疾病媒介的方式,对依赖森林生存的马达加斯加本土啮齿动物造成影响。上述多种效应的共同作用,有助于解释鼠属物种的入侵成功机制,以及该类群对马达加斯加本土啮齿动物区系产生的不利影响。

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2017-04-06
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