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Secrets of the Deep: The Molecular Genetics of Cryptic Beaked Whales

机译:深奥的秘密:隐秘喙喙鲸的分子遗传学

摘要

Beaked whales are comparatively unknown social mammals due to their deep-ocean distribution and elusive habits. The deep-ocean is the largest biome on Earth and the final frontier for human expansion. Since their first discovery, beaked whales have remained largely hidden from science. In this era of rapid technological advancement, genetic and genomic methods are key tools for population biologists and are particularly useful in describing rarely seen species.ududUsing DNA-barcoding and nuclear markers, the publications in this thesis provide data on the distribution and external appearance of two species of beaked whale: the spade-toothed (Mesoplodon traversii) and Derinayagala’s whale (Mesoplodon hotaula). These whales were previously known from only a handful of tissue and bone specimens.ududLong-term efforts have facilitated the collection of samples of Gray’s beaked whale (Mesoplodon grayi) and we have used shot-gun sequencing to characterise the mitochondrial genome and isolate species-specific nuclear microsatellite loci. Using genetic species and sex identification, together with museum specimens and multivariate analyses, we provide clear evidence of sexual dimorphism in cranial dimensions and geographic variation in external morphology.ududNo genetic differentiation was evident in Gray’s beaked whales across a large study area (~ 6,000 km). With a large female effective population size (Ne) and genetic homogeneity, we hypothesise that gene flow is facilitated by large-scale oceanographic features, such as the sub-tropical convergence. Genetic kinship analyses within Gray’s beaked whale groups suggest that the whales that strand together are not related. Both sexes disperse from their parents and these groups are not formed through the retention of kin. These results are consistent with a ‘fission-fusion’ social system that has been observed in some oceanic dolphin species. Taken together, these data provide the first insights into the population dynamics, dispersal and social organisation in Gray’s beaked whales. These publications highlight the value of using genetics alongside other techniques to describe inter- and intraspecific diversity. For beaked whales, the dead can tell us much about the living.
机译:喙鲸由于其深海分布和难以捉摸的习性而成为相对未知的社会哺乳动物。深海是地球上最大的生物群落,也是人类扩展的最后边界。自从首次发现以来,喙鲸在很大程度上仍未被科学掩盖。在这个技术飞速发展的时代,遗传学和基因组学方法是人口生物学家的重要工具,在描述罕见物种方面特别有用。 ud ud使用DNA条形码和核标记,本论文的出版物提供了有关分布和分布的数据。两种喙鲸的外观:锯齿状的鲸(Mesoplodon traversii)和Derinayagala的鲸鱼(Mesoplodon hotaula)。这些鲸鱼以前仅从少数组织和骨骼标本中获知。 ud ud长期努力促进了Gray喙鲸(Mesoplodon grayi)样品的收集,并且我们使用shot弹枪测序来表征线粒体基因组和分离物种特异性核微卫星基因座。使用遗传物种和性别鉴定,再加上博物馆标本和多变量分析,我们为颅骨尺寸上的性别二态性和外部形态的地理差异提供了清晰的证据。 〜6,000公里)。假设女性的有效种群数量大(Ne)并且遗传同质,我们假设大规模的海洋学特征(例如亚热带收敛)促进了基因流动。格雷的喙鲸群体中的遗传亲缘关系分析表明,缠在一起的鲸鱼没有亲缘关系。男女都从父母那里驱散,而这些群体并不是通过保留亲戚而形成的。这些结果与在某些海洋海豚物种中观察到的“裂变融合”社会系统一致。综上所述,这些数据提供了对格雷喙喙鲸种群动态,传播和社会组织的初步见解。这些出版物强调了将遗传学与其他技术一起用于描述种间和种内多样性的价值。对于喙鲸,死者可以告诉我们很多有关活人的信息。

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  • 作者

    Thompson Kirsten Freja;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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