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Carbon (δ13C) and Nitrogen (δ15N) Stable Isotope Signatures in Bat Fur Indicate Swarming Sites Have Catchment Areas for Bats from Different Summering Areas

机译:蝙蝠毛皮中的碳(δ13C)和氮(δ15N)稳定同位素特征表明成群繁殖场中有不同夏季区域的蝙蝠聚集区

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摘要

Migratory patterns of bats are not well understood and traditional methods to study this, like capture-mark-recapture, may not provide enough detail unless there are many records. Stable isotope profiles of many animal species have been used to make inferences about migration. Each year Myotis lucifugus and M. septentrionalis migrate from summering roosts to swarming caves and mines in the fall, but the pattern of movement between them is not well understood. In this study, fur δ13C and δ15N values of 305 M. lucifugus and 200 M. septentrionalis were analyzed to make inferences about migration patterns between summering areas and swarming sites in Nova Scotia, Canada. We expected that there would be greater variability in δ13C and δ15N among individuals at swarming sites because it was believed that these sites are used by individuals originating from many summering areas. There was extensive overlap in the standard ellipse area, corrected for small sample sizes (SEAc), of bats at swarming sites and much less overlap in SEAc among groups sampled at summering areas. Meaningful inference could not be made on M. septentrionalis because their low variation in SEAc may have been the result of sampling only 3 summering areas. However, for M. lucifugus, swarming sites had larger SEAc than summering areas and predictive discriminant analysis assigned swarming bats to multiple summering areas, supporting the contention that swarming bats are mixed aggregations of bats from several summering areas. Together, these data support the contention that swarming sites have catchment areas for bats from multiple summering areas and it is likely that the catchment areas for swarming sites overlap. These data suggest that δ13C and δ15N profiling of bat fur offer some potential to make inferences about regional migration in bats.
机译:蝙蝠的迁徙模式尚未得到很好的理解,除非有很多记录,否则传统的研究方法(如捕获标记-捕获)可能无法提供足够的细节。许多动物物种的稳定同位素谱已用于推断迁移。每年,Myotis lucifugus和M. septentrionalis会从夏季的栖息地迁移到秋天的成群的山洞和矿山,但是它们之间的运动方式并不清楚。在这项研究中,分析了305 M. lucifugus和200 M. septentrionalis的毛皮δ 13 C和δ 15 N值,以推断出夏令区和蜂群之间的迁移方式加拿大新斯科舍省的网站。我们预计在蜂拥地点的个体中δ 13 C和δ 15 N的变异性会更大,因为人们认为这些站点是由许多夏季的个体使用的地区。在群体集中的蝙蝠中,标准椭圆区域存在广泛的重叠(已针对小样本量(SEAc)进行了校正),而在夏季区域采样的组之间,SEAc的重叠较少。无法对七叶分枝杆菌进行有意义的推断,因为它们在SEAc中的低变异可能是仅对3个夏季区域进行采样的结果。但是,对于M. lucifugus而言,成群地点的SEAC比夏季区域更大,并且预测判别分析将成群蝙蝠分配给多个避暑地区,从而支持了成群蝙蝠是来自多个避暑地区的蝙蝠的混合聚集的观点。综合起来,这些数据支持了这样一个论点,即蜂拥场所有多个避暑地区的蝙蝠集水区,并且蜂拥场所的集水区可能重叠。这些数据表明,蝙蝠毛皮的δ 13 C和δ 15 N分析提供了一些推测蝙蝠区域性迁徙的潜力。

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