Grattapaglia Dario, Kirst Matias
Plant Genetics Laboratory, Embrapa - Genetic Resources and Biotechnology, Parque Estação Biológica, Brasília 70770-970 DF, Brazil.
Graduate Program in Genomic Sciences and Biotechnology, Universidade Católica de Brasília - SGAN 916 módulo B, Brasília 70790-160 DF, Brazil.
New Phytol. 2008;179(4):911-929. doi: 10.1111/j.1469-8137.2008.02503.x. Epub 2008 Jun 5.
Eucalyptus is the most widely planted hardwood crop in the tropical and subtropical world because of its superior growth, broad adaptability and multipurpose wood properties. Plantation forestry of Eucalyptus supplies high-quality woody biomass for several industrial applications while reducing the pressure on tropical forests and associated biodiversity. This review links current eucalypt breeding practices with existing and emerging genomic tools. A brief discussion provides a background to modern eucalypt breeding together with some current applications of molecular markers in support of operational breeding. Quantitative trait locus (QTL) mapping and genetical genomics are reviewed and an in-depth perspective is provided on the power of association genetics to dissect quantitative variation in this highly diverse organism. Finally, some challenges and opportunities to integrate genomic information into directional selective breeding are discussed in light of the upcoming draft of the Eucalyptus grandis genome. Given the extraordinary genetic variation that exists in the genus Eucalyptus, the ingenuity of most breeders, and the powerful genomic tools that have become available, the prospects of applied genomics in Eucalyptus forest production are encouraging.
由于桉树生长优势明显、适应性广且木材具有多种用途,它是热带和亚热带地区种植最为广泛的硬木作物。桉树人工林为多种工业应用提供了高质量的木质生物质,同时减轻了对热带森林及相关生物多样性的压力。本综述将当前桉树育种实践与现有的和新兴的基因组工具联系起来。简要讨论为现代桉树育种提供了背景知识,并介绍了分子标记在支持实际育种中的一些当前应用。对数量性状位点(QTL)定位和遗传基因组学进行了综述,并深入探讨了关联遗传学在剖析这种高度多样化生物体中的数量变异方面的作用。最后,鉴于巨桉基因组草图即将完成,讨论了将基因组信息整合到定向选择育种中的一些挑战和机遇。鉴于桉属中存在的非凡遗传变异、大多数育种者的智慧以及已有的强大基因组工具,应用基因组学在桉树林生产中的前景令人鼓舞。