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A Road Map for 21st Century Genetic Restoration: Gene Pool Enrichment of the Black-Footed Ferret

机译:21世纪遗传修复的路线图:黑脚雪貂的基因库富集

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Interspecies somatic cell nuclear transfer (iSCNT) could benefit recovery programs of critically endangered species but must be weighed with the risks of failure. To weigh the risks and benefits, a decision-making process that evaluates progress is needed. Experiments that evaluate the efficiency and efficacy of blastocyst, fetal, and post-parturition development are necessary to determine the success or failure or species-specific iSCNT programs. Here, we use the black-footed ferret (Mustela nigripes) as a case study for evaluating this emerging biomedical technology as a tool for genetic restoration. The black-footed ferret has depleted genetic variation yet genome resource banks contain genetic material of individuals not currently represented in the extant lineage. Thus, genetic restoration of the species is in theory possible and could help reduce the persistent erosion of genetic diversity from drift. Extensive genetic, genomic, and reproductive science tools have previously been developed in black-footed ferrets and would aid in the process of developing an iSCNT protocol for this species. Nonetheless, developing reproductive cloning will require years of experiments and a coordinated effort among recovery partners. The information gained from a well-planned research effort with the goal of genetic restoration via reproductive cloning could establish a 21st century model for evaluating and implementing conservation breeding that would be applicable to other genetically impoverished species.
机译:种间体细胞核转移(iSCNT)可能会使极度濒危物种的恢复计划受益,但必须权衡失败的风险。为了权衡风险和收益,需要一个评估进度的决策过程。评估囊胚,胎儿和分娩后发育的效率和功效的实验对于确定成功或失败或特定物种的iSCNT程序是必要的。在这里,我们以黑脚雪貂(Mustela nigripes)为案例研究,以评估这种新兴的生物医学技术作为基因恢复的工具。黑脚雪貂已经耗尽了遗传变异,但是基因组资源库包含了目前尚无现存谱系的个体的遗传物质。因此,从理论上讲,该物种的遗传恢复是可能的,并且可以帮助减少漂流对遗传多样性的持续侵蚀。先前已经在黑脚雪貂中开发了广泛的遗传,基因组和生殖科学工具,这些工具将有助于为该物种开发iSCNT方案。尽管如此,开发生殖克隆仍需要多年的实验,并且需要恢复伙伴之间的共同努力。通过精心计划的研究工作获得的信息,其目的是通过生殖克隆进行基因恢复,从而可以建立一个评估和实施保护育种的21世纪模型,该模型将适用于其他遗传贫困的物种。

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