Transgenic livestock.

J. Simons, R. B. Land
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引用次数: 10

Abstract

Single genes can now be added routinely to the genome of mice by molecular manipulation as simple Mendelian dominants; this complements the normal process of reproduction to give 'transgenic' animals. Success in ruminants is limited to a few examples in sheep and although gene expression has yet to be documented, there is every reason to expect that it will be achieved. The application of this technology to livestock improvement depends on the identification of circumstances in which the phenotype is limited by the deficiency of a single protein. While there is little evidence to indicate that single dominant genes are in general likely to have favourable effects, it is argued that there are likely to be exceptions. These include particular combinations of promoter and structural gene sequences to alter feedback control, for example through a change in tissue specificity, and the alteration of definitive proteins such as those of milk. A mouse model has been established to study the molecular manipulation of sheep milk proteins. The sheep beta lactoglobulin gene has been incorporated and the sheep whey protein is secreted by the mammary gland of transgenic mice. For the future, means to delete or reduce the expression of existing genes are likely to be important, as are more effective means of incorporation such as retroviral based methods and the incorporation of multigene constructs. The resources required to test transgenic livestock will, however, be greater than those required to create them.
转基因家畜。
单基因现在可以通过分子操作常规地添加到小鼠基因组中,作为简单的孟德尔显性;这是对正常繁殖过程的补充,以获得“转基因”动物。在反刍动物身上的成功仅限于羊身上的几个例子,尽管基因表达尚未被记录在案,但有充分的理由期待它将被实现。该技术在牲畜改良中的应用取决于对表型因缺乏单一蛋白质而受到限制的情况的确定。虽然几乎没有证据表明单一显性基因通常可能有有利的影响,但有人认为可能有例外。这些包括启动子和结构基因序列的特定组合,以改变反馈控制,例如通过改变组织特异性,以及改变决定性蛋白质(如牛奶中的蛋白质)。建立了小鼠模型来研究羊奶蛋白的分子操作。在转基因小鼠的乳腺中掺入了羊-乳球蛋白基因并分泌了羊乳清蛋白。在未来,删除或减少现有基因表达的手段可能很重要,更有效的整合手段,如基于逆转录病毒的方法和多基因结构的整合也很重要。然而,测试转基因牲畜所需的资源将比创造它们所需的资源要多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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