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Tapeworm discovery in elasmobranch fishes: quantifying patterns and identifying their correlates

机译:绦虫在Elasmobranch鱼类中发现:量化模式并识别它们的相关性

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Most parasites from known host species are yet to be discovered and described, let alone those from host species not yet known to science. Here, we use tapeworms of elasmobranchs to identify factors influencing their discovery and explaining the time lag between the descriptions of elasmobranch hosts and their respective tapeworm parasites. The dataset included 918 tapeworm species from 290 elasmobranch species. Data were analysed using linear mixed-effects models. Our findings indicated that we are currently in the midst of the greatest rate of discovery for tapeworms exploiting elasmobranchs. We identified tapeworm size, year of discovery of the type host, host latitudinal range and type locality of the parasite influencing most on the probability of discovery of tapeworms from elasmobranchs and the average time lag between descriptions of elasmobranchs and their tapeworms. The time lag between descriptions is decreasing progressively, but, at current rates and number of taxonomic experts, it will take two centuries to clear the backlog of undescribed tapeworms from known elasmobranch species. Given that the number of new elasmobranch species described each year is on the rise, we need to re-assess funding strategies to save elasmobranchs (and, thus, their tapeworm parasites) before they go extinct.
机译:来自已知宿主物种的大多数寄生虫尚未发现和描述,更不用说来自科学的宿主物种的人。在这里,我们使用ElasmobRanchs的绦虫来识别影响他们发现的因素,并解释了Elasmobranch主体和各自绦虫寄生虫的描述之间的时间延迟。数据集包括来自290个Elasmobranch物种的918种绦虫物种。使用线性混合效果模型进行分析数据。我们的调查结果表明,我们目前正在利用Elasmobranchs的绦虫的最大发现率。我们确定了绦虫的发现年份,寄生宿主的宿主级别和型寄生虫类型的类型,影响来自Elasmobranchs的绦虫的概要和紫猴和绦虫的描述之间的平均时间滞后。描述之间的时间延迟逐渐减少,但是,在分类专家的当期汇率和数量时,将需要两个世纪才能清除来自已知的Elasmobranch物种的未被刻度的绦虫的积压。鉴于每年所述的新的Elasmobranch种类的数量正在上升,我们需要重新评估筹资策略,以在灭绝之前拯救Elasmobranchs(以及因此,他们的绦虫寄生虫)。

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