Aquaculture Research Station, Louisiana State University Agricultural Center, Baton Rouge, 70803, USA.
Comp Biochem Physiol C Toxicol Pharmacol. 2011 Aug;154(2):76-81. doi: 10.1016/j.cbpc.2011.03.004. Epub 2011 Apr 1.
With the development of genomic research technologies, comparative genome studies among vertebrate species are becoming commonplace for human biomedical research. Fish offer unlimited versatility for biomedical research. Extensive studies are done using these fish models, yielding tens of thousands of specific strains and lines, and the number is increasing every day. Thus, high-throughput sperm cryopreservation is urgently needed to preserve these genetic resources. Although high-throughput processing has been widely applied for sperm cryopreservation in livestock for decades, application in biomedical model fishes is still in the concept-development stage because of the limited sample volumes and the biological characteristics of fish sperm. High-throughput processing in livestock was developed based on advances made in the laboratory and was scaled up for increased processing speed, capability for mass production, and uniformity and quality assurance. Cryopreserved germplasm combined with high-throughput processing constitutes an independent industry encompassing animal breeding, preservation of genetic diversity, and medical research. Currently, there is no specifically engineered system available for high-throughput of cryopreserved germplasm for aquatic species. This review is to discuss the concepts and needs for high-throughput technology for model fishes, propose approaches for technical development, and overview future directions of this approach.
随着基因组研究技术的发展,脊椎动物物种的比较基因组研究在人类生物医学研究中变得越来越普遍。鱼类为生物医学研究提供了无限的多功能性。广泛使用这些鱼类模型进行了大量研究,产生了数万种特定的品系和系,而且这个数字每天都在增加。因此,迫切需要高通量精子冷冻保存来保存这些遗传资源。尽管几十年来,高通量处理已广泛应用于牲畜的精子冷冻保存,但由于样本量有限和鱼类精子的生物学特性,其在生物医学模型鱼类中的应用仍处于概念开发阶段。家畜中的高通量处理是基于实验室的进展而开发的,并针对提高处理速度、大规模生产能力、均匀性和质量保证进行了扩展。冷冻保存的种质资源与高通量处理相结合,构成了一个独立的产业,涵盖了动物育种、遗传多样性保护和医学研究。目前,还没有专门为水生物种的冷冻保存种质资源设计的高通量系统。本文综述了模型鱼类高通量技术的概念和需求,提出了技术发展的方法,并概述了该方法的未来方向。