首页> 外文期刊>Applied and Environmental Microbiology >Genomic Interspecies Microarray Hybridization: Rapid Discovery of Three Thousand Genes in the Maize Endophyte,Klebsiella pneumoniae 342, by Microarray Hybridization with Escherichia coli K-12 Open Reading Frames
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Genomic Interspecies Microarray Hybridization: Rapid Discovery of Three Thousand Genes in the Maize Endophyte,Klebsiella pneumoniae 342, by Microarray Hybridization with Escherichia coli K-12 Open Reading Frames

机译:基因组间种微阵列杂交:通过与大肠杆菌K-12开放阅读框的微阵列杂交,快速发现玉米内生细菌肺炎克雷伯氏菌342中的三个基因

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In an effort to efficiently discover genes in the diazotrophic endophyte of maize, Klebsiella pneumoniae 342, DNA from strain 342 was hybridized to a microarray containing 96% (n = 4,098) of the annotated open reading frames fromEscherichia coli K-12. Using a criterion of 55% identity or greater, 3,000 (70%) of the E. coli K-12 open reading frames were also found to be present in strain 342. Approximately 24% (n = 1,030) of the E. coli K-12 open reading frames are absent in strain 342. For 1.6% (n= 68) of the open reading frames, the signal was too low to make a determination regarding the presence or absence of the gene. Genes with high identity between the two organisms are those involved in energy metabolism, amino acid metabolism, fatty acid metabolism, cofactor synthesis, cell division, DNA replication, transcription, translation, transport, and regulatory proteins. Functions that were less highly conserved included carbon compound metabolism, membrane proteins, structural proteins, putative transport proteins, cell processes such as adaptation and protection, and central intermediary metabolism. Open reading frames of E. coli K-12 with little or no identity in strain 342 included putative regulatory proteins, putative chaperones, surface structure proteins, mobility proteins, putative enzymes, hypothetical proteins, and proteins of unknown function, as well as genes presumed to have been acquired by lateral transfer from sources such as phage, plasmids, or transposons. The results were in agreement with the physiological properties of the two strains. Whole genome comparisons by genomic interspecies microarray hybridization are shown to rapidly identify thousands of genes in a previously uncharacterized bacterial genome provided that the genome of a close relative has been fully sequenced. This approach will become increasingly more useful as more full genome sequences become available.
机译:为了有效地发现玉米的重氮营养内生菌肺炎克雷伯氏菌(Klebsiella pneumoniae)342中的基因,将菌株342的DNA与包含96%(n = 4,098)带有注释的大肠杆菌K-12开放阅读框的微阵列杂交。使用同一性为55%或更高的标准,在342株中还发现了3,000(70%)的大肠杆菌K-12开放阅读框。大约24%(n = 1,030)的大肠杆菌在菌株342中没有大肠杆菌K-12开放阅读框。对于1.6%(n = 68)的开放阅读框,信号太低以至于无法确定基因的存在与否。两种生物之间具有高度同一性的基因是那些参与能量代谢,氨基酸代谢,脂肪酸代谢,辅因子合成,细胞分裂,DNA复制,转录,翻译,转运和调节蛋白的基因。保守程度较低的功能包括碳化合物代谢,膜蛋白,结构蛋白,推定的转运蛋白,细胞过程(如适应和保护)和中枢中间代谢。在342株中几乎没有一致性的E. coli K-12的开放阅读框包括推定的调节蛋白,推定的伴侣蛋白,表面结构蛋白,迁移性蛋白,推定的酶,假设的蛋白和功能未知的蛋白,以及推测的基因通过从诸如噬菌体,质粒或转座子之类的来源的侧向转移获得的DNA。结果与两个菌株的生理特性一致。通过近缘基因组微阵列杂交的全基因组比较显示,只要近亲的基因组已被完全测序,就可以快速鉴定以前未鉴定的细菌基因组中的数千个基因。随着可获得更多的完整基因组序列,这种方法将变得越来越有用。

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