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Yooseph S Nealson KH Rusch DB McCrow JP Dupont CL Kim M Johnson J Montgomery R Ferriera S Beeson K Williamson SJ Tovchigrechko A Allen AE Zeigler LA Sutton G Eisenstadt E Rogers YH Friedman R Frazier M Venter JC 《Nature》2010,468(7320):60-66
The understanding of marine microbial ecology and metabolism has been hampered by the paucity of sequenced reference genomes. To this end, we report the sequencing of 137 diverse marine isolates collected from around the world. We analysed these sequences, along with previously published marine prokaryotic genomes, in the context of marine metagenomic data, to gain insights into the ecology of the surface ocean prokaryotic picoplankton (0.1-3.0?μm size range). The results suggest that the sequenced genomes define two microbial groups: one composed of only a few taxa that are nearly always abundant in picoplanktonic communities, and the other consisting of many microbial taxa that are rarely abundant. The genomic content of the second group suggests that these microbes are capable of slow growth and survival in energy-limited environments, and rapid growth in energy-rich environments. By contrast, the abundant and cosmopolitan picoplanktonic prokaryotes for which there is genomic representation have smaller genomes, are probably capable of only slow growth and seem to be relatively unable to sense or rapidly acclimate to energy-rich conditions. Their genomic features also lead us to propose that one method used to avoid predation by viruses and/or bacterivores is by means of slow growth and the maintenance of low biomass. 相似文献
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A systematic, genome-wide, phenotype-driven mutagenesis programme for gene function studies in the mouse 总被引:37,自引:0,他引:37
Nolan PM Peters J Strivens M Rogers D Hagan J Spurr N Gray IC Vizor L Brooker D Whitehill E Washbourne R Hough T Greenaway S Hewitt M Liu X McCormack S Pickford K Selley R Wells C Tymowska-Lalanne Z Roby P Glenister P Thornton C Thaung C Stevenson JA Arkell R Mburu P Hardisty R Kiernan A Erven A Steel KP Voegeling S Guenet JL Nickols C Sadri R Nasse M Isaacs A Davies K Browne M Fisher EM Martin J Rastan S Brown SD Hunter J 《Nature genetics》2000,25(4):440-443
As the human genome project approaches completion, the challenge for mammalian geneticists is to develop approaches for the systematic determination of mammalian gene function. Mouse mutagenesis will be a key element of studies of gene function. Phenotype-driven approaches using the chemical mutagen ethylnitrosourea (ENU) represent a potentially efficient route for the generation of large numbers of mutant mice that can be screened for novel phenotypes. The advantage of this approach is that, in assessing gene function, no a priori assumptions are made about the genes involved in any pathway. Phenotype-driven mutagenesis is thus an effective method for the identification of novel genes and pathways. We have undertaken a genome-wide, phenotype-driven screen for dominant mutations in the mouse. We generated and screened over 26,000 mice, and recovered some 500 new mouse mutants. Our work, along with the programme reported in the accompanying paper, has led to a substantial increase in the mouse mutant resource and represents a first step towards systematic studies of gene function in mammalian genetics. 相似文献
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The identification of labelled structures on autoradiographs 总被引:2,自引:0,他引:2
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Exon shuffling and intron insertion in serine protease genes 总被引:3,自引:0,他引:3
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Zusammenfassung Bei Ratten mit Riboflavin-Mangel wurde eine normale Aktivität der NADH-abhängigen Methämoglobinreduktase festgestellt. 相似文献
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Yamanouchi J Rainbow D Serra P Howlett S Hunter K Garner VE Gonzalez-Munoz A Clark J Veijola R Cubbon R Chen SL Rosa R Cumiskey AM Serreze DV Gregory S Rogers J Lyons PA Healy B Smink LJ Todd JA Peterson LB Wicker LS Santamaria P 《Nature genetics》2007,39(3):329-337
Autoimmune diseases are thought to result from imbalances in normal immune physiology and regulation. Here, we show that autoimmune disease susceptibility and resistance alleles on mouse chromosome 3 (Idd3) correlate with differential expression of the key immunoregulatory cytokine interleukin-2 (IL-2). In order to test directly that an approximately twofold reduction in IL-2 underpins the Idd3-linked destabilization of immune homeostasis, we show that engineered haplodeficiency of Il2 gene expression not only reduces T cell IL-2 production by twofold but also mimics the autoimmune dysregulatory effects of the naturally occurring susceptibility alleles of Il2. Reduced IL-2 production achieved by either genetic mechanism correlates with reduced function of CD4(+) CD25(+) regulatory T cells, which are critical for maintaining immune homeostasis. 相似文献