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Ecological genetics of sediment browsing behaviour in a planktonic crustacean

机译:浮游甲壳动物沉积物浏览行为的生态遗传学

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Zooplankton can display complex habitat selection behaviours that influence the way they interact with their environments. Some species, although primarily pelagic, can exploit sediment-borne particles as a food source or use sediments as a refuge from pelagic predation. However, this strategy may increase the exposure to other risks such as benthic predation and infection from sediment-borne parasite transmission stages. The evolution of habitat selection behaviour in these species is thus expected to be influenced by multiple and possibly contrasting selective forces. Here, we study the browsing behaviour of the water flea Daphnia magna on bottom sediments. First, we demonstrated genetic variation for sediment browsing among D. magna genotypes from natural populations sampled across a broad geographic range. Next, we used an F2 recombinant panel to perform a QTL analysis and identified three regions in the D. magna genome contributing to variation in browsing behaviour. We also analysed the correlation between our data and previously published data on the phototactic behaviour of genotypes from the same F2 panel. Clonal means of the two behavioral traits were not correlated, suggesting that they may evolve independently. Browsing behaviour is likely to be a relevant component of habitat selection in D. magna, and its study may help to incorporate the interactions with the sediment into eco-evolutionary models of this key freshwater species.
机译:浮游动物可以显示出复杂的栖息地选择行为,从而影响它们与环境互动的方式。有些物种虽然主要是远洋鱼类,但他们可以利用沉积物携带的颗粒作为食物来源,或将沉积物用作远洋鱼类捕食的避难所。但是,此策略可能会增加其他风险的暴露,例如底栖捕食和沉积物寄生虫传播阶段的感染。因此,预计这些物种中栖息地选择行为的演变将受到多重且可能相反的选择力的影响。在这里,我们研究了水蚤蚤在底部沉积物上的浏览行为。首先,我们展示了在广泛地理范围内采样的自然种群中D. magna基因型之间沉积物浏览的遗传变异。接下来,我们使用F2重组面板进行QTL分析,并鉴定了D. magna基因组中的三个区域,这些区域有助于浏览行为的变化。我们还分析了我们的数据与先前发布的数据在同一F2面板上对基因型的光战术行为之间的相关性。这两种行为特征的克隆方式不相关,表明它们可以独立进化。浏览行为可能是D. magna栖息地选择的一个重要组成部分,其研究可能有助于将与沉积物的相互作用纳入该关键淡水物种的生态进化模型。

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