Foote Tracie N, Griffiths Simon, Allouis Sebastien, Moore Graham
John Innes Centre, Norwich Research Park, Colney, Norwich, NR4 7UH, UK.
Funct Integr Genomics. 2004 Mar;4(1):26-33. doi: 10.1007/s10142-003-0101-y. Epub 2004 Jan 16.
A BAC library of 30,228 clones with an average insert size of 102 kb was constructed in the grass Brachypodium sylvaticum. Brachypodium has a simple genome, similar in size and repetitive DNA content to that of rice, and is more closely related than rice both to the major temperate cereals wheat and barley, and to the forage grasses. The library represents 6.6 genome equivalents, implying a 99.9% probability of recovering any specific sequence. The library was arrayed onto two high-density colony filters, which were screened with heterologous DNA probes from rice chromosome nine and from syntenous regions of wheat, barley, maize and oat. The construction of Brachypodium BAC contigs revealed that synteny between rice, wheat and Brachypodium was largely maintained over several regions of rice chromosome nine. This suggests that Brachypodium will be a useful tool in the elucidation of gene content in agronomically important cereal crops, complementing rice as a "grass genome model".
在短柄草中构建了一个包含30228个克隆的细菌人工染色体(BAC)文库,平均插入片段大小为102 kb。短柄草基因组简单,大小和重复DNA含量与水稻相似,并且与主要的温带谷类作物小麦和大麦以及牧草的亲缘关系比水稻更近。该文库代表6.6个基因组当量,这意味着获得任何特定序列的概率为99.9%。该文库被排列在两个高密度菌落滤膜上,并用来自水稻第9号染色体以及小麦、大麦、玉米和燕麦同源区域的异源DNA探针进行筛选。短柄草BAC重叠群的构建表明,水稻、小麦和短柄草之间的同线性在水稻第9号染色体的几个区域中基本保持。这表明短柄草将成为阐明重要农作物基因含量的有用工具,作为“禾本科基因组模型”补充水稻的作用。