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通过转基因改变动物的营养利用。

Altering nutrient utilization in animals through transgenesis.

作者信息

Ward K A

机构信息

Commonwealth Scientific and Industrial Research Organization Animal Production, Locked Bag 1, Delivery Center, Blacktown, NSW 2148, Australia.

出版信息

Nutr Res Rev. 1999 Jun;12(1):179-99. doi: 10.1079/095442299108728893.

Abstract

Improved domestic animal productivity is necessary in order to provide for an increasing world population over the next two to three decades and such improvement would be aided by an increase in the efficiency of nutrient utilization. This can be achieved by conventional genetic selection protocols but progress by this approach is slow. A more rapid but as yet largely unproven technique is the direct modification of the genome which can be achieved by the transfer of recombinant DNA to the nuclei of early embryos. This new technology is potentially powerful because it allows the direct transfer of genes without regard to inter-species barriers to breeding. However, it raises a new set of problems associated with the integration and expression of the foreign genetic information in the new genome. In this review the application of the technology to increasing nutrient utilization and increased productivity are discussed. Two areas have received substantial attention in the 15 years since the technique was first applied to domestic animals. First, the current status of the modification of growth hormone levels to improve productivity and feed utilization efficiency is reviewed, with current results suggesting that several of the projects may soon be approaching field trial status. Second, the introduction of novel biochemical pathways to domestic animals to provide them with different sources of the substrates required for growth and production is discussed. Recent results obtained in the introduction of a cysteine biosynthetic pathway to animals is reviewed. While this line of research remains some distance from commercial application, it provides a useful example of the powerful possibilities inherent in the new technology. However, it also serves to highlight some of the difficulties that might be expected as new genes are expressed to produce enzymes that must fit compatibly with existing animal biochemistry.

摘要

为了在未来二三十年里养活不断增长的世界人口,提高家畜的生产力是必要的,而养分利用效率的提高将有助于实现这一目标。这可以通过传统的基因选择方案来实现,但这种方法进展缓慢。一种更快但尚未得到充分验证的技术是直接对基因组进行改造,这可以通过将重组DNA转移到早期胚胎的细胞核中来实现。这项新技术具有潜在的强大力量,因为它允许直接转移基因,而无需考虑物种间的繁殖障碍。然而,它也带来了一系列与外源遗传信息在新基因组中的整合和表达相关的新问题。在这篇综述中,讨论了该技术在提高养分利用和生产力方面的应用。自该技术首次应用于家畜以来的15年里,有两个领域受到了广泛关注。首先,综述了通过改变生长激素水平来提高生产力和饲料利用效率的现状,目前的结果表明,其中几个项目可能很快就会进入田间试验阶段。其次,讨论了在家畜中引入新的生化途径,为它们提供生长和生产所需底物的不同来源。综述了在家畜中引入半胱氨酸生物合成途径的最新结果。虽然这一系列研究距离商业应用还有一段距离,但它提供了一个有用的例子,说明了这项新技术所固有的强大可能性。然而,它也凸显了一些可能出现的困难,即新基因表达产生的酶必须与现有的动物生物化学相兼容。

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