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DNA fingerprinting in zoology: past, present, future

机译:动物学中的DNA指纹:过去,现在,未来

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In 1962, Thomas Kuhn famously argued that the progress of scientific knowledge results from periodic ‘paradigm shifts’ during a period of crisis in which new ideas dramatically change the status quo. Although this is generally true, Alec Jeffreys’ identification of hypervariable repeat motifs in the human beta-globin gene, and the subsequent development of a technology known now as ‘DNA fingerprinting’, also resulted in a dramatic shift in the life sciences, particularly in ecology, evolutionary biology, and forensics. The variation Jeffreys recognized has been used to identify individuals from tissue samples of not just humans, but also of many animal species. In addition, the technology has been used to determine the sex of individuals, as well as paternity/maternity and close kinship. We review a broad range of such studies involving a wide diversity of animal species. For individual researchers, Jeffreys’ invention resulted in many ecologists and evolutionary biologists being given the opportunity to develop skills in molecular biology to augment their whole organism focus. Few developments in science, even among the subsequent genome discoveries of the 21st century, have the same wide-reaching significance. Even the later development of PCR-based genotyping of individuals using microsatellite repeats sequences, and their use in determining multiple paternity, is conceptually rooted in Alec Jeffreys’ pioneering work.
机译:1962年,托马斯·库恩(Thomas Kuhn)著名地论证说,科学知识的进步源于危机时期的周期性“范式转换”,在这一时期中,新思想极大地改变了现状。尽管这通常是正确的,但亚历克·杰弗里斯(Alec Jeffreys)对人β-珠蛋白基因中高变重复基序的鉴定以及后来被称为“ DNA指纹”的技术的发展也导致了生命科学的重大转变,特别是生态学,进化生物学和法医学。杰弗里斯(Jeffreys)认识到的变异已被用于从人类以及许多动物物种的组织样本中识别出个体。另外,该技术已被用于确定个人的性别以及亲子关系/产妇和近亲。我们审查了广泛的此类研究,涉及各种各样的动物物种。对于个别研究人员而言,杰弗里斯(Jeffreys)的发明使许多生态学家和进化生物学家有机会发展分子生物学技能,以增强他们对整个生物体的关注。很少有科学的发展,甚至在随后的21世纪的基因组发现中,具有同样广泛的意义。甚至后来使用微卫星重复序列进行基于PCR的个体基因分型的发展,以及它们在确定多重亲子关系中的应用,从概念上也植根于Alec Jeffreys的开创性工作。

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