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从小鱼身上学习:斑马鱼作为水产养殖鱼类的遗传模式生物。

Learning from small fry: the zebrafish as a genetic model organism for aquaculture fish species.

作者信息

Dahm Ralf, Geisler Robert

机构信息

Department of Genetics, Max-Planck-Institute for Developmental Biology, D-72076, Tübingen, Germany.

出版信息

Mar Biotechnol (NY). 2006 Jul-Aug;8(4):329-45. doi: 10.1007/s10126-006-5139-0. Epub 2006 Apr 25.

Abstract

In recent years, the zebrafish has become one of the most prominent vertebrate model organisms used to study the genetics underlying development, normal body function, and disease. The growing interest in zebrafish research was paralleled by an increase in tools and methods available to study zebrafish. While zebrafish research initially centered on mutagenesis screens (forward genetics), recent years saw the establishment of reverse genetic methods (morpholino knock-down, TILLING). In addition, increasingly sophisticated protocols for generating transgenic zebrafish have been developed and microarrays are now available to characterize gene expression on a near genome-wide scale. The identification of loci underlying specific traits is aided by genetic, physical, and radiation hybrid maps of the zebrafish genome and the zebrafish genome project. As genomic resources for aquacultural species are increasingly being generated, a meaningful interaction between zebrafish and aquacultural research now appears to be possible and beneficial for both sides. In particular, research on nutrition and growth, stress, and disease resistance in the zebrafish can be expected to produce results applicable to aquacultural fish, for example, by improving husbandry and formulated feeds. Forward and reverse genetics approaches in the zebrafish, together with the known conservation of synteny between the species, offer the potential to identify and verify candidate genes for quantitative trait loci (QTLs) to be used in marker-assisted breeding. Moreover, some technologies from the zebrafish field such as TILLING may be directly transferable to aquacultural research and production.

摘要

近年来,斑马鱼已成为用于研究发育、正常身体功能及疾病背后遗传学的最突出的脊椎动物模式生物之一。对斑马鱼研究兴趣的不断增加,与用于研究斑马鱼的工具和方法的增多同步。虽然斑马鱼研究最初集中在诱变筛选(正向遗传学)上,但近年来出现了反向遗传方法(吗啉代敲低、定向诱导基因组局部突变)。此外,已经开发出越来越复杂的生成转基因斑马鱼的方案,现在也有微阵列可用于在近乎全基因组范围内表征基因表达。斑马鱼基因组的遗传、物理和辐射杂种图谱以及斑马鱼基因组计划有助于识别特定性状背后的基因座。随着越来越多水产养殖物种的基因组资源被生成,斑马鱼研究与水产养殖研究之间有意义的互动现在看来是可能的,且对双方都有益。特别是,预计斑马鱼在营养与生长、应激和抗病性方面的研究成果可应用于水产养殖鱼类,例如通过改善养殖管理和配制饲料。斑马鱼中的正向和反向遗传学方法,连同已知的物种间同线性保守性,为识别和验证用于标记辅助育种的数量性状位点(QTL)的候选基因提供了潜力。此外,斑马鱼领域的一些技术,如定向诱导基因组局部突变,可能直接可转移到水产养殖研究和生产中。

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