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Challenges to a molecular approach to prey identification in the Burmese python Python molurus bivittatus

机译:缅甸蟒蛇molurus bivittatus对分子识别猎物的分子方法的挑战

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摘要

Molecular approaches to prey identification are increasingly useful in elucidating predator–prey relationships, and we aimed to investigate the feasibility of these methods to document the species identities of prey consumed by invasive Burmese pythons in Florida. We were particularly interested in the diet of young snakes, because visual identification of prey from this size class has proven difficult. We successfully extracted DNA from the gastrointestinal contents of 43 young pythons, as well as from several control samples, and attempted amplification of DNA mini-barcodes, a 130-bp region of COX1. Using a PNA clamp to exclude python DNA, we found that prey DNA was not present in sufficient quality for amplification of this locus in 86% of our samples. All samples from the GI tracts of young pythons contained only hair, and the six samples we were able to identify to species were hispid cotton rats. This suggests that young Burmese pythons prey predominantly on small mammals and that prey diversity among snakes of this size class is low. We discuss prolonged gastrointestinal transit times and extreme gastric breakdown as possible causes of DNA degradation that limit the success of a molecular approach to prey identification in Burmese pythons.
机译:分子识别猎物的方法在阐明捕食者与猎物之间的关系方面越来越有用,我们旨在研究这些方法来证明佛罗里达入侵缅甸蟒蛇所消耗的猎物的物种身份的可行性。我们对幼蛇的饮食特别感兴趣,因为事实证明很难识别这种大小的猎物。我们成功地从43个年轻的蟒蛇的胃肠内容物中以及几个对照样品中提取了DNA,并尝试扩增DNA迷你条形码(COX1的130 bp区域)。使用PNA钳夹排除python DNA,我们发现86%的样本中没有足够质量的猎物DNA来扩增该基因座。来自年轻蟒蛇胃肠道的所有样品仅含有毛发,而我们能够鉴定出的六个样品是纯棉大鼠。这表明,缅甸小蟒蛇主要捕食小型哺乳动物,并且这种大小等级的蛇的猎物多样性较低。我们讨论了延长的胃肠道运输时间和严重的胃衰竭,这可能是导致DNA降解的原因,而这种降解限制了分子方法在缅甸蟒蛇中识别猎物的成功。

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