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Identifying the African Wintering Grounds of Hybrid Flycatchers Using a Multi–Isotope (d2H, d13C, d15N) Assignment Approach

机译:使用多同位素(d2H,d13C,d15N)分配方法确定非洲捕蝇器的越冬地

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摘要

Migratory routes and wintering grounds can have important fitness consequences, which can lead to divergent selection on populations or taxa differing in their migratory itinerary. Collared (Ficedula albicollis) and pied (F. hypoleuca) flycatchers breeding in Europe and wintering in different sub-Saharan regions have distinct migratory routes on the eastern and western sides of the Sahara desert, respectively. In an earlier paper, we showed that hybrids of the two species did not incur reduced winter survival, which would be expected if their migration strategy had been a mix of the parent species' strategies potentially resulting in an intermediate route crossing the Sahara desert to different wintering grounds. Previously, we compared isotope ratios and found no significant difference in stable-nitrogen isotope ratios (δ
机译:迁徙路线和越冬场可能会产生重要的适应性后果,从而导致迁移路线不同的人群或生物分类的选择不同。在欧洲繁殖和在撒哈拉以南非洲不同地区越冬的领领(Ficedula albicollis)和斑纹(F. hypoleuca)捕蝇器分别在撒哈拉沙漠的东部和西部具有不同的迁徙路线。在较早的论文中,我们表明两种物种的杂交不会导致冬季存活率降低,这是可以预期的,如果他们的迁徙策略与亲本物种的策略混合在一起,则可能导致穿越撒哈拉大沙漠到不同地区的中间路线越冬的理由。以前,我们比较了同位素比率,发现稳定氮同位素比率(δ

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