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A predatory snail distinguishes between conspecific and heterospecific snails and trails based on chemical cues in slime

机译:掠食性蜗牛根据粘液中的化学线索区分同种蜗牛和异种蜗牛和足迹

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The rosy wolfsnail, Euglandina rosea, is a predatory snail native to the southeastern United States. It eats other snails and slugs, tracking them by following their mucus trails. Although wolfsnails follow mucus trails of both prey and conspecifics, they rarely eat conspecifics, and only conspecific trails are followed directionally. We investigated how wolfsnails distinguish conspecifics from prey snails (Helix aspersa) and how they determine directionality of conspecific mucus trails. We found that wolfsnails used chemical cues present in mucus to distinguish conspecifics from prey, and were less likely to attack a snail covered with wolfsnail mucus than one covered with prey mucus (experiment 1). Juvenile wolfsnails that were isolated from conspecifics before hatching recognized conspecifics as nonprey (experiment 2), and adult wolfsnails learned to follow trails of novel substances associated with exposure to other wolfsnails (experiment 3). Wolfsnails were equally attracted to both soluble and insoluble components of conspecific mucus (experiment 4) and followed conspecific mucus trails directionality even after the trails had been washed (experiment 5). We also examined whether a structural or chemical asymmetry in conspecific mucus allowed wolfsnails to determine directionality of conspecific trails. Although results of scanning electron microscopy provided no support for directionality using a structural asymmetry, manipulations of wolf snail trails (experiments 6, 7) indicated that wolfsnails use a right/left chemical asymmetry in mucus trails to orient themselves on conspecific trails in the same direction as the trail-layer snail, independent of the trail layer's direction of movement.
机译:玫瑰色的蜗牛Euglandina rosea是美国东南部的掠食性蜗牛。它会吃其他蜗牛和,通过追踪它们的粘液轨迹来追踪它们。尽管狼蜗牛遵循猎物和特定物种的粘液踪迹,但它们很少吃特定物种的踪迹,并且仅定向地遵循特定物种的踪迹。我们研究了狼蜗牛如何将特定物种与猎物蜗牛(Helix aspersa)区分开来,以及它们如何确定特定物种黏液踪迹的方向性。我们发现,狼蜗牛利用粘液中存在的化学线索来区分特定物种与猎物,并且与覆盖猎物粘液的蜗牛相比,攻击覆盖有狼粘液的蜗牛的可能性较小(实验1)。在孵化前从同种动物中分离出来的幼小蜗牛被认为同种动物是非猎物(实验2),成年狼蜗牛学会了跟随与其他狼蛛接触相关的新型物质的踪迹(实验3)。沃尔夫蜗牛同样吸引特定粘液的可溶和不溶成分(实验4),甚至在清洗痕迹后也遵循特定粘液迹线的方向性(实验5)。我们还检查了特定粘液中的结构或化学不对称性是否使钉子能够确定特定轨迹的方向性。尽管扫描电子显微镜的结果不支持使用结构不对称性的方向性,但对狼蜗牛踪迹的操纵(实验6、7)表明,狼蜗牛在粘液踪迹中使用左右化学不对称性,将自己定向在同一方向的同构踪迹上作为尾迹层蜗牛,与尾迹层的移动方向无关。

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