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Genetics Genomics and Molecular Biology of Sex Determination in Small Animals

机译:小动物性别决定的遗传学基因组学和分子生物学

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摘要

The genomic revolution is beginning to facilitate advances in canine and feline medicine, as illustrated in our research. Our studies are focused upon identifying the gene mutation that causes canine Sry-negative XX sex reversal, a disorder of sex determination in which chromosomal females (78,XX) develop testicular tissue, becoming either XX true hermaphrodites with ovotestes, or XX males with bilateral testes. A genome-wide screen, using mapped markers in our pedigree of Sry-negative XX sex reversed dogs founded upon the American cocker spaniel, identified five chromosomal regions in which the causative gene may be located. The canine genome was used to identify the canine homologue of goat Pisrt1 and so determine that canine and caprine Sry-negative XX sex reversal are genetically heterogeneous. A second goal of our research is to determine the molecular mechanism by which the mutation causes testis induction. Thus far, we have reported gonadal Sry and Sox9 expression patterns in normal embryos, which have temporal and spatial patterns similar to those reported in humans, sheep, and pigs. Once gene mutations causing such inherited disorders are identified, DNA tests will become a part of general veterinary practice, advancing both diagnostic techniques and preventative medicine.
机译:如我们的研究所示,基因组革命开始促进犬科动物和猫科动物医学的发展。我们的研究重点是确定引起犬Sry阴性XX性逆转的基因突变,这种性别突变是一种性别决定疾病,其中,染色体雌性(78,XX)发育为睾丸组织,或者变成具有卵形睾丸的XX个真正的雌雄同体,或者变成带有双侧卵形的XX个雄性。睾丸。全基因组筛选,在我们基于美国可卡犬的Sry阴性XX性逆转犬的血统书中使用映射的标记,确定了可能位于该致病基因的五个染色体区域。犬基因组用于鉴定山羊Pisrt1的犬同源物,从而确定犬和山羊Sry阴性XX性逆转在遗传上是异质的。我们研究的第二个目标是确定突变引起睾丸诱导的分子机制。到目前为止,我们已经报道了正常胚胎中的性腺Sry和Sox9表达模式,其时空模式与人类,绵羊和猪中报告的相似。一旦识别出导致此类遗传性疾病的基因突变,DNA检测将成为普通兽医实践的一部分,从而推动诊断技术和预防医学的发展。

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