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Widespread and persistent invasions of terrestrial habitats coincident with larval feeding behavior transitions during snail-killing fly evolution (Diptera: Sciomyzidae)

机译:在杀死蜗牛的苍蝇进化过程中陆地生境的广泛入侵和持续入侵与幼虫的进食行为转变同时发生(双翅目:Sciomyzidae)

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摘要

BackgroundTransitions in habitats and feeding behaviors were fundamental to the diversification of life on Earth. There is ongoing debate regarding the typical directionality of transitions between aquatic and terrestrial habitats and the mechanisms responsible for the preponderance of terrestrial to aquatic transitions. Snail-killing flies (Diptera: Sciomyzidae) represent an excellent model system to study such transitions because their larvae display a range of feeding behaviors, being predators, parasitoids or saprophages of a variety of mollusks in freshwater, shoreline and dry terrestrial habitats. The remarkable genus Tetanocera (Tetanocerini) occupies five larval feeding groups and all of the habitat types mentioned above. This study has four principal objectives: (i) construct a robust estimate of phylogeny for Tetanocera and Tetanocerini, (ii) estimate the evolutionary transitions in larval feeding behaviors and habitats, (iii) test the monophyly of feeding groups and (iv) identify mechanisms underlying sciomyzid habitat and feeding behavior evolution.
机译:背景栖息地的过渡和觅食行为是地球生命多样化的基础。关于水生和陆地生境之间过渡的典型方向性以及导致陆地向水生过渡占优势的机制,目前正在进行辩论。杀蜗牛的苍蝇(双翅目:Sciomyzidae)代表了研究此类过渡的出色模型系统,因为它们的幼虫表现出一系列的摄食行为,它们是淡水,海岸线和干燥陆生生境中各种软体动物的食肉动物,拟寄生物或腐烂动物。杰出的破伤风杆菌属(Tetanocerini)占据五个幼体摄食组,并且具有上述所有栖息地类型。这项研究有四个主要目标:(i)对破伤风和破伤风的系统发育进行可靠的估计,(ii)估计幼虫摄食行为和栖息地的进化转变,(iii)测试摄食组的单性和(iv)确定机制潜在的鼠尾草栖息地和进食行为演变。

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