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Serum-based inhibition of pitviper venom by eastern indigo snakes (Drymarchon couperi)

机译:东部靛蓝蛇(Drymarchon couperi)对血清中的vi虫毒的抑制作用

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When organisms possess chemical defenses, their predators may eventually evolve resistance to their toxins. Eastern indigo snakes (Drymarchon couperi; EIS) prey on pitvipers and are suspected to possess physiological resistance to their venom. In this study, we formally investigated this hypothesis using microassays that measured the ability of EIS blood sera to inhibit (A) hemolytic and (B) snake venom metalloproteinase (SVMP) activity of copperhead (Agkistrodon contortrix) venom. To serve as controls, we also tested the inhibitory ability of sera from house mice (Mus musculus) and checkered gartersnakes (Thamnophis marcianus), a snake that does not feed on pitvipers. Sera from both EIS and gartersnakes inhibited over 60% of SVMP activity, while only EIS sera also inhibited venom hemolytic activity (78%). Our results demonstrate that EIS serum is indeed capable of inhibiting two of the primary classes of toxins found in copperhead venom, providing the first empirical evidence suggesting that EIS possess physiological resistance to venom upon injection. Because we documented resistance to hemolytic components of pitviper venom within EIS but not gartersnakes, we speculate this resistance may be driven by selection from feeding on pitvipers while resistance to SVMP may be relatively widespread among snakes.
机译:当生物具有化学防御能力时,它们的捕食者最终可能会进化出对其毒素的抵抗力。东部靛蓝蛇(Drymarchon couperi; EIS)捕食鱼,并被怀疑对毒液具有生理抗性。在这项研究中,我们使用微量测定法正式调查了该假设,该测定法测量了EIS血液血清抑制铜头(Agkistrodon contortrix)毒液的(A)溶血和(B)蛇毒金属蛋白酶(SVMP)活性的能力。作为对照,我们还测试了家鼠(小家鼠)和方型吊袜带(Thamnophis marcianus)(一种不以足为食的蛇)血清的抑制能力。来自EIS和吊袜带的血清均抑制了超过60%的SVMP活性,而只有EIS血清也抑制了毒液的溶血活性(78%)。我们的结果表明,EIS血清确实能够抑制铜头蛇毒中发现的两种主要毒素,这提供了第一个经验证据,表明EIS注射后对毒液具有生理抗性。因为我们记录了对EIS中对蛇毒的溶血成分的抗药性,但没有对吊袜带的抗药性,我们推测这种抗药性可能是由对鱼的选择引起的,而对SVMP的抗药性可能在蛇中相对较普遍。

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