Raudsepp Terje, Chowdhary Bhanu P
Department of Veterinary Integrative Biosciences, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, Texas 77843-4458; email:
New Research Complex, Qatar University, Al Tarfa, Doha 2713, Qatar; email:
Annu Rev Anim Biosci. 2016;4:15-43. doi: 10.1146/annurev-animal-021815-111239.
The association between chromosomal abnormalities and reduced fertility in domestic animals is well recorded and has been studied for decades. Chromosome aberrations directly affect meiosis, gametogenesis, and the viability of zygotes and embryos. In some instances, balanced structural rearrangements can be transmitted, causing fertility problems in subsequent generations. Here, we aim to give a comprehensive overview of the current status and future prospects of clinical cytogenetics of animal reproduction by focusing on the advances in molecular cytogenetics during the genomics era. We describe how advancing knowledge about animal genomes has improved our understanding of connections between gross structural or molecular chromosome variations and reproductive disorders. Further, we expand on a key area of reproduction genetics: cytogenetics of animal gametes and embryos. Finally, we describe how traditional cytogenetics is interfacing with advanced genomics approaches, such as array technologies and next-generation sequencing, and speculate about the future prospects.
家畜染色体异常与生育力降低之间的关联已有充分记载,并且已经研究了数十年。染色体畸变直接影响减数分裂、配子发生以及受精卵和胚胎的活力。在某些情况下,平衡的结构重排可以遗传,导致后代出现生育问题。在此,我们旨在通过关注基因组学时代分子细胞遗传学的进展,全面概述动物生殖临床细胞遗传学的现状和未来前景。我们描述了关于动物基因组的不断发展的知识如何增进了我们对染色体总体结构或分子变异与生殖障碍之间联系的理解。此外,我们详述了生殖遗传学的一个关键领域:动物配子和胚胎的细胞遗传学。最后,我们描述了传统细胞遗传学如何与先进的基因组学方法(如阵列技术和下一代测序)相结合,并对未来前景进行了推测。