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Developing Successful Breeding Programs for New Zealand Aquaculture: A Perspective on Progress and Future Genomic Opportunities

机译:为新西兰水产养殖制定成功的育种计划:关于进展和未来基因组机会的观点

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Over the past 40 years New Zealand (NZ) aquaculture has grown into a significant primary industry. Tonnage is small on a global scale, but the industry has built an international reputation for the supply of high quality seafood to many overseas markets. Since the early 1990s the industry has recognized the potential gains from selective breeding and the challenge has been to develop programs that can overcome biological obstacles (such as larval rearing and mortality) and operate cost-effectively on a relatively small scale while still providing significant gains in multiple traits of economic value. This paper provides an overview of the current status, and a perspective on genomic technology implementation, for the family based genetic improvement programs established for the two main species farmed in NZ: Chinook (king) salmon ( Oncorhynchus tshawytscha ) and Greenshell ~(TM) mussel ( Perna canaliculus ). These programs have provided significant benefit to the industry in which we are now developing genomic resources based on genotyping-by-sequencing to complement the breeding programs, enable evaluation of the genetic diversity and identify the potential benefits of genomic selection. This represents an opportunity to increase genetic gain and more effectively utilize the potential for within family selection.
机译:在过去的40年中,新西兰(NZ)水产养殖已发展成为重要的第一产业。在全球范围内,吨位很小,但由于向许多海外市场供应优质海鲜,该行业已建立了国际声誉。自1990年代初以来,该行业已认识到选择性育种的潜在收益,而挑战在于开发能够克服生物学障碍(例如幼体饲养和死亡率)并在相对较小的规模上经济高效地运行,同时仍能提供可观收益的计划具有多种经济价值。本文概述了为新西兰养殖的两个主要物种:奇努克(Kingook)鲑鱼(Oncorhynchus tshawytscha)和Greenshell〜(TM)建立的基于家庭的遗传改良计划的现状和基因组技术的应用前景。贻贝(Perna canaliculus)。这些计划为行业带来了巨大的收益,在该行业中,我们正在开发基于测序的基因分型的基因资源,以补充育种计划,评估遗传多样性并确定基因组选择的潜在利益。这代表了增加遗传增益和更有效地利用家庭选择潜力的机会。

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