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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >Prey specificity,comparative lethality and compositional differences of coral snake venoms
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Prey specificity,comparative lethality and compositional differences of coral snake venoms

机译:珊瑚蛇毒的猎物特异性,比较杀伤力和组成差异

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摘要

Toxicities of crude venoms from 49 coral snake (Micrurus sp.)populations,representing 15 nominal taza,were examined in both laboratory mice and in native prey animals and compared with data gathered from two non-micrurine elapids and a crotalid,which served as outgroups.These venoms were further compared on the basis of 23 enzymatic activities.Both toxicities and enzymatic activities were analyzed with respect to natural prey preferences,as determined from stomach content analyses and literature reports.Venoms of nearly all Micrurus for which prey preferences are known,are more toxic to natural prey than to non-prey species.Except for amphisbaenians,prey are more susceptible to venoms of Micrurus that feed upon them,than to venoms of those that eat other organisms.All venoms were more toxic i.v.>i.p.>i.m.Route-specific differences in toxicity are generally greatest for preferred prey species.Cluster analyses of venom enzymatic activities resulted in five clusters,with the fish-eating M.surinamensis more distant from other Micrurus than even the crotalid,Bothrops moojeni.Ophiophagous and amphisbaenian-eating Micrurus formed two close subclusters,one allied to the outgroup species naja naja and the other to the fossorial,ophiophagous Bungarus multicinctus.Prey preference is shown to be the most important determinat of venom composition in Micrurus.
机译:在实验小鼠和本地猎物中检查了49只珊瑚蛇(Micrurus sp。)种群(代表15头塔扎)的粗毒的毒性,并与从两个非微生物的卵形体和crotalid收集的数据进行了比较。根据23种酶的活性进一步比较了这些毒液。根据胃含量分析和文献报道确定了天然猎物偏爱的毒性和酶活性。几乎所有已知其猎物偏爱的麦卢克毒瘤,对天然猎物的毒性比对非猎物的毒性大。除了两栖类动物以外,猎物比吃其他生物的毒液更容易受到以其为食的米氏菌的毒液。所有毒液的毒性都更大。路线特异性的毒性差异通常对于首选的猎物而言最大。毒液酶活性的聚类分析导致五个簇,其中以鱼为食苏里南ensis比其他other虫更远,甚至比响尾蛇(Bothrops moojeni)更远。食虫性和两栖类食虫的formed虫形成了两个紧密的亚群,一个与外种naja naja相关,另一个与次要物种,即食虫性Bungary multicinctus相似。是决定麦哲伦毒液成分的最重要因素。

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