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鱼类染色体组操作与转基因技术的整合

Integration of chromosome set manipulation and transgenic technologies for fishes.

作者信息

Thorgaard G H, Scheerer P D, Zhang J

机构信息

Department of Zoology, Washington State University, Pullman 99164-4236.

出版信息

Mol Mar Biol Biotechnol. 1992 Aug-Oct;1(4-5):251-6.

PMID:1308814
Abstract

Chromosome set manipulation techniques have significant implications for research of transgenic fish. Gynogenesis can be used to generate isogenic lines, to map genes in relation to their centromeres, and to produce fish carrying extra chromosome fragments of foreign origin. Androgenesis can be used to produce isogenic lines and to recover strains from cryopreserved sperm. Triploidy can be induced in fish with heat or pressure treatment of fertilized eggs and by crossing tetraploid individuals with normal diploids. Triploid fish are typically effectively sterile. Triploid interspecific hybrids are usually more viable than the corresponding diploid hybrids. Given concerns about potential reproduction of transgenic fish in the wild, induced triploidy could facilitate application of transgenic technologies in some situations.

摘要

染色体组操作技术对转基因鱼类的研究具有重要意义。雌核发育可用于产生同基因系,将基因与其着丝粒相关联进行定位,以及培育携带外源额外染色体片段的鱼类。雄核发育可用于产生同基因系,并从冷冻保存的精子中恢复品系。通过对受精卵进行热或压力处理以及使四倍体个体与正常二倍体杂交,可在鱼类中诱导产生三倍体。三倍体鱼类通常实际上是不育的。三倍体种间杂种通常比相应的二倍体杂种更具生存能力。鉴于对转基因鱼类在野外可能繁殖的担忧,诱导三倍体在某些情况下可能有助于转基因技术的应用。

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