College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Freshwater Aquaculture Collaborative Innovation Center of Hubei Province, Huazhong Agricultural University, Wuhan, 430070, China.
Sci China Life Sci. 2015 Feb;58(2):124-36. doi: 10.1007/s11427-014-4797-9. Epub 2015 Jan 6.
Aquaculture has made an enormous contribution to the world food production, especially to the sustainable supply of animal proteins. The utility of diverse reproduction strategies in fish, such as the exploiting use of unisexual gynogenesis, has created a typical case of fish genetic breeding. A number of fish species show substantial sexual dimorphism that is closely linked to multiple economic traits including growth rate and body size, and the efficient development of sex-linked genetic markers and sex control biotechnologies has provided significant approaches to increase the production and value for commercial purposes. Along with the rapid development of genomics and molecular genetic techniques, the genetic basis of sexual dimorphism has been gradually deciphered, and great progress has been made in the mechanisms of fish sex determination and identification of sex-determining genes. This review summarizes the progress to provide some directive and objective thinking for further research in this field.
水产养殖为世界粮食生产做出了巨大贡献,特别是为动物蛋白质的可持续供应做出了贡献。鱼类多样化繁殖策略的应用,如利用单性雌核生殖,创造了鱼类遗传育种的典型案例。许多鱼类表现出显著的性别二态性,这与包括生长速度和体型在内的多种经济性状密切相关,性连锁遗传标记和性别控制生物技术的有效开发为提高生产和商业价值提供了重要途径。随着基因组学和分子遗传技术的快速发展,性别二态性的遗传基础逐渐被揭示,鱼类性别决定机制和性别决定基因的鉴定也取得了很大进展。本文综述了这方面的进展,为该领域的进一步研究提供了一些有指导意义和客观的思路。