Jones Meriel G
The University of Liverpool, School of Biological Sciences, Biosciences Building, Crown Street, Liverpool L69 7ZB, UK.
Microbiology (Reading). 2007 Jan;153(Pt 1):1-6. doi: 10.1099/mic.0.2006/001479-0.
The published Aspergillus genome sequences (A. nidulans, A. fumigatus, A. oryzae) and further sequence data from A. clavatus, Neosartorya fischeri, A. flavus, A. niger, A. parasiticus and A. terreus are the first from a group of related filamentous fungi. They indicate the gains possible from genomic approaches, but also problems that arise after the sequences are finished. Benefits include a greater understanding of genome structure and evolution, insights into gene regulation, predictions of new factors that may be relevant to pathogenicity and the discovery of novel enzymes with biotechnological value. Areas where further developments are needed include gene and structure-function predictions, methods for comparative genome analysis and the interfaces for access to genome information. In addition, strategies for continued maintenance and updating need to be developed at the start of the post-genomic era to increase the value of genome sequences into the future.
已公布的曲霉基因组序列(构巢曲霉、烟曲霉、米曲霉)以及来自棒曲霉、费氏新萨托菌、黄曲霉、黑曲霉、寄生曲霉和土曲霉的更多序列数据,是一组相关丝状真菌中的首批数据。它们显示了基因组方法可能带来的收获,但也表明了序列完成后出现的问题。益处包括对基因组结构和进化有更深入的了解、对基因调控的洞察、对可能与致病性相关的新因子的预测以及发现具有生物技术价值的新酶。需要进一步发展的领域包括基因和结构功能预测、比较基因组分析方法以及获取基因组信息的界面。此外,在后基因组时代开始时,需要制定持续维护和更新的策略,以增加基因组序列在未来的价值。