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首页> 外文期刊>Journal of Chemical Ecology >California Ground Squirrel (Spermophilus beecheyi) Defenses Against Rattlesnake Venom Digestive and Hemostatic Toxins
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California Ground Squirrel (Spermophilus beecheyi) Defenses Against Rattlesnake Venom Digestive and Hemostatic Toxins

机译:加州地松鼠(Spermophilus beecheyi)防御响尾蛇毒液的消化和止血毒素。

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Previous studies have shown that some mammals are able to neutralize venom from snake predators. California ground squirrels (Spermophilus beecheyi) show variation among populations in their ability to bind venom and minimize damage from northern Pacific rattlesnakes (Crotalus oreganus), but the venom toxins targeted by resistance have not been investigated. Four California ground squirrel populations, selected for differences in local density or type of rattlesnake predators, were assayed for their ability to neutralize digestive and hemostatic effects of venom from three rattlesnake species. In Douglas ground squirrels (S. b. douglasii), we found that animals from a location where snakes are common showed greater inhibition of venom metalloprotease and hemolytic activity than animals from a location where snakes are rare. Effects on general proteolysis were not different. Douglas ground squirrels also reduced the metalloprotease activity of venom from sympatric northern Pacific rattlesnakes (C. o. oreganus) more than the activity of venom from allopatric western diamondback rattlesnakes (C. atrox), but enhanced the fibrinolysis of sympatric venom almost 1.8 times above baseline levels. Two Beechey ground squirrel (S. b. beecheyi) populations had similar inhibition of venoms from northern and southern Pacific rattlesnakes (C. o. helleri), despite differences between the populations in the locally prevalent predator. However, the venom toxins inhibited by Beechey squirrels varied among venom from Pacific rattlesnake subspecies, and between these venoms and venom from allopatric western diamondback rattlesnakes. Blood plasma from Beechey squirrels showed highest inhibition of metalloprotease activity of northern Pacific rattlesnake venom, general proteolytic activity and hemolysis of southern Pacific rattlesnake venom, and hemolysis by allopatric western diamondback venom. These results reveal previously cryptic variation in venom activity against resistant prey that suggests reciprocal adaptation at the molecular level.
机译:先前的研究表明,某些哺乳动物能够中和蛇食肉食者的毒液。加州地松鼠(Spermophilus beecheyi)在结合毒液和最大程度降低北太平洋响尾蛇(Crotalus oreganus)造成的伤害方面显示出种群之间的差异,但尚未研究抗药性靶向的毒毒素。根据局部密度或响尾蛇捕食者类型的差异而选择的四个加利福尼亚地松鼠种群,具有中和来自三种响尾蛇物种的毒液的消化和止血作用的能力。在道格拉斯地松鼠(S. b。douglasii)中,我们发现,与蛇少见的动物相比,蛇多见的动物对蛇毒金属蛋白酶和溶血活性的抑制作用更大。对一般蛋白水解的作用没有不同。道格拉斯地松鼠还降低了同产北太平洋响尾蛇(C. o。oreganus)的毒液中金属蛋白酶的活性,比降低了异源西部小菜背响尾蛇(C. atrox)的毒液的活性,但增强了同胞毒液的纤维化程度,几乎是其的1.8倍基线水平。尽管当地流行捕食者的种群之间存在差异,但两个Beechey地松鼠(S. b。beecheyi)种群对北部和南部太平洋响尾蛇(C. o。helleri)的毒液具有相似的抑制作用。然而,由Beechey松鼠抑制的毒毒素在太平洋响尾蛇亚种的毒蛇之间,以及在这些毒蛇和异相西部小菜鸟响尾蛇的毒蛇之间变化。 Beechey松鼠的血浆对北太平洋响尾蛇毒液的金属蛋白酶活性,南部太平洋响尾蛇毒液的一般蛋白水解活性和溶血作用以及异源性西部小菜蛾毒物的溶血作用表现出最高的抑制作用。这些结果揭示了先前针对抗性猎物的毒液活性的神秘变化,表明在分子水平上相互适应。

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