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Arizona bark scorpion venom resistance in the pallid bat Antrozous pallidus

机译:亚利桑那州树皮蝎子对苍白蝙蝠Antrozous苍白蝶的抵抗力

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摘要

The pallid bat (Antrozous pallidus), a gleaning bat found in the western United States and Mexico, hunts a wide variety of ground-dwelling prey, including scorpions. Anecdotal evidence suggests that the pallid bat is resistant to scorpion venom, but no systematic study has been performed. Here we show with behavioral measures and direct injection of venom that the pallid bat is resistant to venom of the Arizona bark scorpion, Centruroides sculpturatus. Our results show that the pallid bat is stung multiple times during a hunt without any noticeable effect on behavior. In addition, direct injection of venom at mouse LD50 concentrations (1.5 mg/kg) has no effect on bat behavior. At the highest concentration tested (10 mg/kg), three out of four bats showed no effects. One of the four bats showed a transient effect suggesting that additional studies are required to identify potential regional variation in venom tolerance. Scorpion venom is a cocktail of toxins, some of which activate voltage-gated sodium ion channels, causing intense pain. Dorsal root ganglia (DRG) contain nociceptive neurons and are principal targets of scorpion venom toxins. To understand if mutations in specific ion channels contribute to venom resistance, a pallid bat DRG transcriptome was generated. As sodium channels are a major target of scorpion venom, we identified amino acid substitutions present in the pallid bat that may lead to venom resistance. Some of these substitutions are similar to corresponding amino acids in sodium channel isoforms responsible for reduced venom binding activity. The substitution found previously in the grasshopper mouse providing venom resistance to the bark scorpion is not present in the pallid bat, indicating a potentially novel mechanism for venom resistance in the bat that remains to be identified. Taken together, these results indicate that the pallid bat is resistant to venom of the bark scorpion and altered sodium ion channel function may partly underlie such resistance.
机译:苍白蝙蝠(Antrozous pallidus)是在美国西部和墨西哥发现的一种拾音蝙蝠,它猎杀各种各样的地面猎物,包括蝎子。传闻证据表明苍白蝙蝠对蝎毒有抵抗力,但尚未进行系统的研究。在这里,我们通过行为测量和毒液的直接注射表明,苍白蝙蝠对亚利桑那州树皮蝎,Centurouroides sculpturatus的毒液具有抗性。我们的结果表明,在狩猎过程中,苍白的蝙蝠被ung了多次,对行为没有任何明显的影响。另外,以小鼠LD50浓度(1.5 mg / kg)直接注射毒液对蝙蝠的行为没有影响。在最高测试浓度(10 mg / kg)下,四分之三的蝙蝠没有表现出任何作用。四个蝙蝠之一显示出短暂的作用,表明需要进一步的研究来确定毒液耐受性的潜在区域差异。蝎毒是一种毒素混合物,其中一些激活电压门控的钠离子通道,引起剧烈的疼痛。背根神经节(DRG)含有伤害性神经元,并且是蝎毒的主要靶标。为了了解特定离子通道中的突变是否有助于抵抗毒液,产生了苍白蝙蝠DRG转录组。由于钠通道是蝎毒的主要目标,因此我们确定了存在于苍白蝙蝠中的氨基酸取代可能会导致毒液抗性。这些取代中的一些类似于负责减少毒液结合活性的钠通道同工型中的相应氨基酸。先前在蚱mouse小鼠中发现的对树皮蝎提供毒液抗性的替代物在苍白的蝙蝠中不存在,这表明蝙蝠中毒液抗性的潜在新机制尚待确定。综上所述,这些结果表明苍白蝙蝠对树皮蝎的毒液具有抗性,改变的钠离子通道功能可能部分是这种抗性的基础。

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