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首页> 外文期刊>Journal of Avian Biology >Isotopic evidence for endogenous protein contributions to greylag goose Anser anser flight feathers
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Isotopic evidence for endogenous protein contributions to greylag goose Anser anser flight feathers

机译:内源蛋白质对灰鹅鹅大雁飞行羽毛的贡献的同位素证据

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Feather stable isotope composition may not reflect local isoscapes in which they were grown if supplemented with protein of endogenous origin. Thus, feather isotope analysis, combined with knowledge of local isoscapes can be used to infer endogenous nutrient composition to feathers in cases where birds travel to moult. We investigated this possibility in a study of flightless moulting greylag geese Anser anser on the Danish island of Saltholm, which are known to mobilise endogenous protein stores (acquired at previous terrestrial staging locations in Sweden) to reconstitute muscle blocks and organs whilst feeding on a saltmarsh (i.e. marine-influenced) diet with contrasting stable isotope ratios. We used stable isotope (tp#pdC, tp#eN) measurements to test the prediction that new-grown flight feathers would have stable isotope values intermediate between those derived from a purely terrestrial C diet and one composed purely of saltmarsh plants. Feather tp#pdC and tp#eN values were intermediate between those expected for feather material derived from local saltmarsh (i.e. exogenous) food items and Swedish terrestrial (endogenous muscle) sources, suggesting a mixing of endogenous and exogenous sources. These results confirm that moult migrant Anatidae exploit body stores to meet specific protein needs during the flightless period of remige regrowth and caution against the use of feather stable isotope ratios as direct indicators of the isotopic environment in which they were regrown, where endogenous contributions may occur.
机译:如果补充了内源性蛋白质,则羽毛稳定的同位素组成可能无法反映出它们生长的局部同位素。因此,在鸟类成年的情况下,羽毛同位素分析结合局部等值线知识可用于推断羽毛的内源营养成分。我们在丹麦Saltholm岛上进行的不会蜕皮的灰雁雁Anser anser的研究中研究了这种可能性,该雁已知会动员内源蛋白存储区(在瑞典先前的陆上分期地点获得)来重组肌肉块和器官,同时以盐沼为食(即受海洋影响的)饮食具有稳定的同位素比。我们使用稳定同位素(tp#pdC,tp#eN)测量来测试预测,即新生长的飞行羽毛的稳定同位素值介于纯陆地C饮食和纯盐沼植物之间。羽毛的tp#pdC和tp#eN值介于预期来自当地盐沼(即外源性)食品和瑞典陆生(内源性肌肉)来源的羽毛材料的中间值,表明内源性和外源性来源混合。这些结果证实,换羽的An科动物利用身体存储来满足其在回飞的非飞行期的特定蛋白质需求,并告诫不要使用羽毛稳定的同位素比率作为其生长的同位素环境的直接指标,在此环境中可能发生内源性贡献。

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