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座头鲸的基因标记

Genetic tagging of humpback whales.

作者信息

Palsbøll P J, Allen J, Bérubé M, Clapham P J, Feddersen T P, Hammond P S, Hudson R R, Jørgensen H, Katona S, Larsen A H, Larsen F, Lien J, Mattila D K, Sigurjónsson J, Sears R, Smith T, Sponer R, Stevick P, Oien N

机构信息

Department of Population Biology, Universitetsparken, Copenhagen, Denmark.

出版信息

Nature. 1997 Aug 21;388(6644):767-9. doi: 10.1038/42005.

Abstract

The ability to recognize individual animals has substantially increased our knowledge of the biology and behaviour of many taxa. However, not all species lend themselves to this approach, either because of insufficient phenotypic variation or because tag attachment is not feasible. The use of genetic markers ('tags') represents a viable alternative to traditional methods of individual recognition, as they are permanent and exist in all individuals. We tested the use of genetic markers as the primary means of identifying individuals in a study of humpback whales in the North Atlantic Ocean. Analysis of six microsatellite loci among 3,060 skin samples collected throughout this ocean allowed the unequivocal identification of individuals. Analysis of 692 'recaptures', identified by their genotype, revealed individual local and migratory movements of up to 10,000 km, limited exchange among summer feeding grounds, and mixing in winter breeding areas, and also allowed the first estimates of animal abundance based solely on genotypic data. Our study demonstrates that genetic tagging is not only feasible, but generates data (for example, on sex) that can be valuable when interpreting the results of tagging experiments.

摘要

识别个体动物的能力极大地增进了我们对许多分类群生物学和行为的了解。然而,并非所有物种都适用于这种方法,这要么是因为表型变异不足,要么是因为附着标签不可行。使用遗传标记(“标签”)是个体识别传统方法的一种可行替代方案,因为它们是永久性的,且存在于所有个体中。在一项对北大西洋座头鲸的研究中,我们测试了将遗传标记作为识别个体的主要手段。对在整个北大西洋收集的3060份皮肤样本中的六个微卫星位点进行分析,能够明确识别个体。对通过基因型识别出的692个“重新捕获”个体的分析揭示了个体局部和迁徙移动距离可达10000公里,夏季觅食地之间的交流有限,以及在冬季繁殖区的混合情况,并且还首次仅基于基因型数据对动物数量进行了估计。我们的研究表明,遗传标记不仅可行,而且能生成在解释标记实验结果时可能有价值的数据(例如关于性别的数据)。

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