首页> 外文期刊>Ecology and Evolution >DNA barcoding reveals novel insights into pterygophagy and prey selection in distichodontid fishes (Characiformes: Distichodontidae)
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DNA barcoding reveals novel insights into pterygophagy and prey selection in distichodontid fishes (Characiformes: Distichodontidae)

机译:DNA条码揭示了对食齿鱼类中翼ery和食肉选择的新颖见解(Characiformes:Distichodontidae)

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摘要

AbstractDNA barcoding was used to investigate dietary habits and prey selection in members of the African-endemic family Distichodontidae noteworthy for displaying highly specialized ectoparasitic fin-eating behaviors (pterygophagy). Fin fragments recovered from the stomachs of representatives of three putatively pterygophagous distichodontid genera (Phago, Eugnathichthys, and Ichthyborus) were sequenced for the mitochondrial gene co1. DNA barcodes (co1 sequences) were then used to identify prey items in order to determine whether pterygophagous distichodontids are opportunistic generalists or strict specialists with regard to prey selection and, whether as previously proposed, aggressive mimicry is used as a strategy for successful pterygophagy. Our findings do not support the hypothesis of aggressive mimicry suggesting instead that, despite the possession of highly specialized trophic anatomies, fin-eating distichodontids are opportunistic generalists, preying on fishes from a wide phylogenetic spectrum and to the extent of engaging in cannibalism. This study demonstrates how DNA barcoding can be used to shed light on evolutionary and ecological aspects of highly specialized ectoparasitic fin-eating behaviors by enabling the identification of prey species from small pieces of fins found in fish stomachs.
机译:摘要DNA条形码用于调查非洲地方病科Distichodontidae成员的饮食习惯和猎物选择,值得注意的是,它们表现出高度专业化的外寄生食行为(pt食)。从三个假定的翼状dis肉属(Phago,Eugnathichthys和Ichthyborus)的代表的胃中回收的鳍片段被测序,用于线粒体基因co1。然后使用DNA条形码(co1序列)来识别猎物,以确定在选择猎物时翼状dis肉是否是机会主义的通才还是严格的专家,以及是否像以前建议的那样,将模仿性模仿作为成功的翼ery术的策略。我们的发现不支持攻击性模仿的假设,相反,这表明,尽管拥有高度专业化的营养性解剖学,但有鳍的食齿类鱼类是机会主义的多面手,他们捕食的鱼类来自广泛的系统发育谱,并且从事同类相食。这项研究表明,DNA条形码可用于从鱼胃中发现的小鳍片中识别猎物种类,从而可用于阐明高度专门化的外寄生鳍片行为的进化和生态方面。

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