Hiendleder S, Bauersachs S, Boulesteix A, Blum H, Arnold G J, Fröhlich T, Wolf E
Institute of Molecular Animal Breeding and Biotechnology, Gene Center of the Ludwig-Maximilian University, Feodor-Lynen-Strasse 25, 81377 Munich, Germany.
Rev Sci Tech. 2005 Apr;24(1):355-77.
The first genome sequence assemblies of farm animal species are now accessible through public domain databases, and further sequencing projects are in rapid progress. In addition, large collections of expressed sequences have been obtained, which will aid in constructing annotated transcript maps for many economically important species. Thus, the breeding of farm animals is entering the post-genome era. Functional genomics, defined as applying global experimental approaches to assess gene function, by using the information and reagents provided by structural genomics (i.e. mapping and sequencing), has become the focus of interest. Combining a holistic view of phenotypes at the molecular level with genetic marker data seems a particularly promising approach for improving health and welfare traits in farm animals. These traits are often difficult to define. They suffer from low heritabilities and a corresponding lack of genetic gain in conventional selection and breeding programmes. At the same time, genomic information from micro-organisms and parasites offers the potential for new vaccines and therapeutics. This review describes major functional genomics tools, lists genomic resources available for farm animals and discusses the prospects and challenges of functional genomics in improving the health and welfare of farm animals.
现在可以通过公共领域数据库获取家畜物种的首个基因组序列组装结果,并且更多的测序项目正在快速推进。此外,已经获得了大量的表达序列集合,这将有助于构建许多经济上重要物种的注释转录图谱。因此,家畜育种正在进入后基因组时代。功能基因组学被定义为通过利用结构基因组学(即图谱绘制和测序)提供的信息和试剂,应用全局实验方法来评估基因功能,已成为人们关注的焦点。将分子水平上对表型的整体看法与遗传标记数据相结合,似乎是改善家畜健康和福利性状的一种特别有前景的方法。这些性状通常难以定义。它们的遗传力较低,并且在传统的选择和育种计划中相应地缺乏遗传进展。同时,来自微生物和寄生虫的基因组信息为新型疫苗和治疗方法提供了潜力。本综述描述了主要的功能基因组学工具,列出了可用于家畜的基因组资源,并讨论了功能基因组学在改善家畜健康和福利方面的前景与挑战。