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空缺微生物基因组的功能分析:氧化亚铁硫杆菌的氨基酸代谢

Functional analysis of gapped microbial genomes: amino acid metabolism of Thiobacillus ferrooxidans.

作者信息

Selkov E, Overbeek R, Kogan Y, Chu L, Vonstein V, Holmes D, Silver S, Haselkorn R, Fonstein M

机构信息

Integrated Genomics, 2201 W. Campbell Park Drive, Chicago, IL 60612, USA.

出版信息

Proc Natl Acad Sci U S A. 2000 Mar 28;97(7):3509-14. doi: 10.1073/pnas.97.7.3509.

Abstract

A gapped genome sequence of the biomining bacterium Thiobacillus ferrooxidans strain ATCC23270 was assembled from sheared DNA fragments (3.2-times coverage) into 1,912 contigs. A total of 2,712 potential genes (ORFs) were identified in 2.6 Mbp (megabase pairs) of Thiobacillus genomic sequence. Of these genes, 2,159 could be assigned functions by using the WIT-Pro/EMP genome analysis system, most with a high degree of certainty. Nine hundred of the genes have been assigned roles in metabolic pathways, producing an overview of cellular biosynthesis, bioenergetics, and catabolism. Sequence similarities, relative gene positions on the chromosome, and metabolic reconstruction (placement of gene products in metabolic pathways) were all used to aid gene assignments and for development of a functional overview. Amino acid biosynthesis was chosen to demonstrate the analytical capabilities of this approach. Only 10 expected enzymatic activities, of the nearly 150 involved in the biosynthesis of all 20 amino acids, are currently unassigned in the Thiobacillus genome. This result compares favorably with 10 missing genes for amino acid biosynthesis in the complete Escherichia coli genome. Gapped genome analysis can therefore give a decent picture of the central metabolism of a microorganism, equivalent to that of a complete sequence, at significantly lower cost.

摘要

利用剪切的DNA片段(覆盖度为3.2倍)组装了生物采矿细菌氧化亚铁硫杆菌菌株ATCC23270的间隙基因组序列,得到1912个重叠群。在2.6兆碱基对(百万碱基对)的氧化亚铁硫杆菌基因组序列中总共鉴定出2712个潜在基因(开放阅读框)。在这些基因中,2159个基因可通过使用WIT-Pro/EMP基因组分析系统来指定功能,大多数具有高度的确定性。其中900个基因已被指定在代谢途径中发挥作用,从而对细胞生物合成、生物能量学和分解代谢有了一个总体认识。序列相似性、染色体上的相对基因位置以及代谢重建(基因产物在代谢途径中的定位)都被用于辅助基因指定和构建功能概述。选择氨基酸生物合成来展示这种方法的分析能力。在氧化亚铁硫杆菌基因组中,目前在所有20种氨基酸生物合成所涉及的近150种预期酶活性中,只有10种未被指定。这个结果与完整的大肠杆菌基因组中10个缺失的氨基酸生物合成基因相比具有优势。因此,间隙基因组分析能够以显著更低的成本,给出与完整序列相当的微生物中心代谢的清晰图景。

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