Giles Peter F, Soanes Darren M, Talbot Nicholas J
School of Biological Sciences, University of Exeter, Washington Singer Laboratories, Perry Road, Exeter EX4 4QG, UK.
Comp Funct Genomics. 2003;4(1):4-15. doi: 10.1002/cfg.236.
Fungal phytopathogens continue to cause major economic impact, either directly, through crop losses, or due to the costs of fungicide application. Attempts to understand these organisms are hampered by a lack of fungal genome sequence data. A need exists, however, to develop specific bioinformatics tools to collate and analyse the sequence data that currently is available. A web-accessible gene discovery database (http://cogeme.ex.ac.uk/biosynthesis.html) was developed as a demonstration tool for the analysis of metabolic and signal transduction pathways in pathogenic fungi using incomplete gene inventories. Using Bayesian probability to analyse the currently available gene information from pathogenic fungi, we provide evidence that the obligate pathogen Blumeria graminis possesses all amino acid biosynthetic pathways found in free-living fungi, such as Saccharomyces cerevisiae. Phylogenetic analysis was also used to deduce a gene history of succinate-semialdehyde dehydrogenase, an enzyme in the glutamate and lysine biosynthesis pathways. The database provides a tool and methodology to researchers to direct experimentation towards predicting pathway conservation in pathogenic microorganisms.
真菌植物病原体继续造成重大经济影响,要么直接通过作物损失,要么由于施用杀真菌剂的成本。由于缺乏真菌基因组序列数据,对这些生物体的了解受到阻碍。然而,需要开发特定的生物信息学工具来整理和分析目前可用的序列数据。一个可通过网络访问的基因发现数据库(http://cogeme.ex.ac.uk/biosynthesis.html)被开发出来,作为一种示范工具,用于利用不完整的基因清单分析致病真菌中的代谢和信号转导途径。利用贝叶斯概率分析来自致病真菌的现有基因信息,我们提供证据表明,专性病原体小麦白粉菌拥有在自由生活真菌(如酿酒酵母)中发现的所有氨基酸生物合成途径。系统发育分析还用于推断琥珀酸半醛脱氢酶的基因历史,该酶参与谷氨酸和赖氨酸生物合成途径。该数据库为研究人员提供了一种工具和方法,以指导实验预测致病微生物中的途径保守性。