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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Comparison of the peptidome and insecticidal activity of venom from a taxonomically diverse group of theraphosid spiders
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Comparison of the peptidome and insecticidal activity of venom from a taxonomically diverse group of theraphosid spiders

机译:一组不同种类的鞘磷脂蜘蛛的毒液的肽组和杀虫活性的比较

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We screened a panel of theraphosid venoms in two orders of insect in order to determine whether these bioassays would help in the selection of candidate venoms for future discovery of insecticidal toxins. Venoms from six different theraphosid genera were compared with venom from the Australian funnel-web spider Hadronyche infensa (Hexathelidae). The tarantulas included were Coremiocnemis tropix, Selenocosmia crassipes, and Selenotholus foelschei from Australia and Brachypelma albiceps and Brachypelmahamorii from Mexico. The insects assayed, Tenebrio molitor (Coleoptera: Tenebrionidae) and Acheta domesticus (Orthoptera: Gryllidae), were selected because of their relevance as model holometabolous and hemimetabolous insects, respectively, as well as their taxo-nomic relationship to economically important pest insects. Despite significant differences in their peptide/protein profiles as determined using SDS-PAGE, HPLC, and mass spectrometry, all of the theraphosid venoms exhibited remarkably similar LDso values of 46-126 ug/g for crickets and 0.5-4.0 ug/g for mealworms. Notably, mealworms were on average 50-fold more susceptible than crickets to each of the crude theraphosid venoms and consequently they provide an excellent bioassay system when venomsupply is limited. This study indicates that even closely related spiders have evolved quite different toxin repertoires that nevertheless have comparable efficiency with respect to killing their primary prey, namely insects.
机译:为了确定这些生物测定法是否有助于选择候选毒液以进一步发现杀虫毒素,我们按两个昆虫等级筛选了一组杀虫剂毒液。将来自六个不同的节肢动物属的毒液与来自澳大利亚漏斗蜘蛛Hadronyche infensa(Hexathelidae)的毒液进行了比较。狼蛛包括来自澳大利亚的Coremiocnemis tropix,Selenocosmia crassipes和Selenotholus foelschei,以及来自墨西哥的Brachypelma albiceps和Brachypelmahamorii。选择被检虫为黄粉虫(Ceneoptera:Tenebrionidae)和家蝇Acheta domesticus(Orthoptera:Gryllidae),是因为它们分别与全模型和半代谢模型昆虫相关,并且与经济上重要的害虫具有分类学上的联系。尽管使用SDS-PAGE,HPLC和质谱法测定的肽/蛋白质谱存在显着差异,但所有的节肢动物毒液的LDso值都非常相似,for为46-126 ug / g,粉虫为0.5-4.0 ug / g 。值得注意的是,粉虫对the虫的每一种粗制毒液的敏感性平均比than高50倍,因此,当毒液供应受限时,它们提供了出色的生物测定系统。这项研究表明,即使是密切相关的蜘蛛也已​​经进化出了完全不同的毒素库,尽管如此,它们在杀死其主要猎物即昆虫方面的效率却相当。

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