Interrogating the Roles of Mutation-Selection Balance, Heterozygote Advantage, and Linked Selection in Maintaining Recessive Lethal Variation in Natural Populations.

IF 8.7 1区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Sarah B Marion, Mohamed A F Noor
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引用次数: 2

Abstract

For nearly a century, evolutionary biologists have observed chromosomes that cause lethality when made homozygous persisting at surprisingly high frequencies (>25%) in natural populations of many species. The evolutionary forces responsible for the maintenance of such detrimental mutations have been heavily debated-are some lethal mutations under balancing selection? We suggest that mutation-selection balance alone cannot explain lethal variation in nature and the possibility that other forces play a role. We review the potential that linked selection in particular may drive maintenance of lethal alleles through associative overdominance or linkage to beneficial mutations or by reducing effective population size. Over the past five decades, investigation into this mystery has tapered. During this time, key scientific advances have provided the ability to collect more accurate data and analyze them in new ways, making the underlying genetic bases and evolutionary forces of lethal alleles timely for study once more. Expected final online publication date for the Annual Review of Animal Biosciences, Volume 11 is February 2023. Please see http://www.annualreviews.org/page/journal/pubdates for revised estimates.
突变选择平衡、杂合子优势和连锁选择在自然种群中维持隐性致死变异中的作用。
近一个世纪以来,进化生物学家观察到,在许多物种的自然种群中,纯合子染色体的频率惊人地高(>25%),从而导致致命。维持这些有害突变的进化力量一直备受争议——一些致命突变是在平衡选择下发生的吗?我们认为,突变选择平衡本身不能解释自然界的致命变异和其他力量发挥作用的可能性。我们回顾了连锁选择的潜力,特别是可能通过关联显性或与有益突变的连锁或通过减少有效种群大小来驱动致命等位基因的维持。在过去的50年里,对这个谜题的调查逐渐减少。在此期间,关键的科学进步提供了收集更准确的数据并以新的方式分析它们的能力,使致命等位基因的潜在遗传基础和进化力量再次得到及时的研究。
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来源期刊
Annual Review of Animal Biosciences
Annual Review of Animal Biosciences BIOTECHNOLOGY & APPLIED MICROBIOLOGY-ZOOLOGY
CiteScore
21.30
自引率
0.80%
发文量
31
期刊介绍: The Annual Review of Animal Biosciences is primarily dedicated to the fields of biotechnology, genetics, genomics, and breeding, with a special focus on veterinary medicine. This includes veterinary pathobiology, infectious diseases and vaccine development, and conservation and zoo biology. The publication aims to address the needs of scientists studying both wild and domesticated animal species, veterinarians, conservation biologists, and geneticists.
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