4.8 Article

Improving the coverage of the cyanobacterial phylum using diversity-driven genome sequencing

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NATL ACAD SCIENCES
DOI: 10.1073/pnas.1217107110

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资金

  1. Office of Science of the US Department of Energy [DE-AC02-05CH11231]
  2. Institut Pasteur
  3. Centre National de la Recherche Scientifique Unite de Recherche Associee [2172]
  4. National Science Foundation [MCB-0851070]
  5. Direct For Biological Sciences [0851094] Funding Source: National Science Foundation
  6. Div Of Molecular and Cellular Bioscience [0851094] Funding Source: National Science Foundation

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The cyanobacterial phylum encompasses oxygenic photosynthetic prokaryotes of a great breadth of morphologies and ecologies; they play key roles in global carbon and nitrogen cycles. The chloroplasts of all photosynthetic eukaryotes can trace their ancestry to cyanobacteria. Cyanobacteria also attract considerable interest as platforms for green biotechnology and biofuels. To explore the molecular basis of their different phenotypes and biochemical capabilities, we sequenced the genomes of 54 phylogenetically and phenotypically diverse cyanobacterial strains. Comparison of cyanobacterial genomes reveals the molecular basis for many aspects of cyanobacterial ecophysiological diversity, as well as the convergence of complex morphologies without the acquisition of novel proteins. This phylum-wide study highlights the benefits of diversity-driven genome sequencing, identifying more than 21,000 cyanobacterial proteins with no detectable similarity to known proteins, and foregrounds the diversity of light-harvesting proteins and gene clusters for secondary metabolite biosynthesis. Additionally, our results provide insight into the distribution of genes of cyanobacterial origin in eukaryotic nuclear genomes. Moreover, this study doubles both the amount and the phylogenetic diversity of cyanobacterial genome sequence data. Given the exponentially growing number of sequenced genomes, this diversity-driven study demonstrates the perspective gained by comparing disparate yet related genomes in a phylum-wide context and the insights that are gained from it.

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