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The expanding role of mouse genetics for understanding human biology and disease

机译:小鼠遗传学在理解人类生物学和疾病中的作用不断扩大

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It has taken about 100 years since the mouse first captured our imagination as an intriguing animal for it to become the premier genetic model organism. An expanding repertoire of genetic technology, together with sequencing of the genome and biological conservation, place the mouse at the foremost position as a model to decipher mechanisms underlying biological and disease processes. The combined approaches of embryonic stem cell-based technologies, chemical and insertional mutagenesis have enabled the systematic interrogation of the mouse genome with the aim of creating, for the first time, a library of mutants in which every gene is disrupted. The hope is that phenotyping the mutants will reveal novel and interesting phenotypes that correlate with genes, to define the first functional map of a mammalian genome. This new milestone will have a great impact on our understanding of mammalian biology, and could significantly change the future of medical diagnosis and therapeutic development, where databases can be queried in silico for potential drug targets or underlying genetic causes of illnesses. Emerging innovative genetic strategies, such as somatic genetics, modifier screens and humanized mice, in combination with whole-genome mutagenesis will dramatically broaden the utility of the mouse. More significantly, allowing genome-wide genetic interrogations in the laboratory, will liberate the creativity of individual investigators and transform the mouse as a model for making original discoveries and establishing novel paradigms for understanding human biology and disease.
机译:自从老鼠第一次成为我们有趣的动物以来,它已经成为第一位的遗传模型生物,已经花费了我们100年的时间。不断扩大的遗传技术,以及对基因组的测序和生物保护的结合,将小鼠置于最重要的位置,作为破译生物学和疾病过程机理的模型。基于胚胎干细胞的技术,化学诱变和插入诱变相结合的方法已经能够对小鼠基因组进行系统的研究,目的是首次创建一个突变基因库,其中每个基因都被破坏。希望突变体的表型将揭示与基因相关的新颖有趣的表型,以定义哺乳动物基因组的第一个功能图。这个新的里程碑将极大地影响我们对哺乳动物生物学的理解,并可能显着改变医学诊断和治疗发展的未来,在那里可以通过计算机查询数据库中潜在的药物靶标或疾病的潜在遗传原因。新兴的创新遗传策略,例如体细胞遗传学,修饰子筛选和人源化小鼠,与全基因组诱变相结合,将大大拓宽小鼠的用途。更重要的是,允许在实验室中进行全基因组的遗传询问,将解放个人研究人员的创造力,并将鼠标转变为进行原始发现并建立理解人类生物学和疾病的新范例的模型。

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