US Department of Energy Joint Genome Institute, Walnut Creek, CA 94598, USA.
Proc Natl Acad Sci U S A. 2013 Jan 15;110(3):1053-8. doi: 10.1073/pnas.1217107110. Epub 2012 Dec 31.
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.
蓝藻门包含了形态和生态范围广泛的产氧光合原核生物;它们在全球碳氮循环中起着关键作用。所有光合真核生物的叶绿体都可以追溯到蓝藻。蓝藻也因其作为“绿色”生物技术和生物燃料的平台而引起了相当大的兴趣。为了探索它们不同表型和生化能力的分子基础,我们对 54 株具有系统发育和表型多样性的蓝藻菌株进行了基因组测序。蓝藻基因组的比较揭示了蓝藻生理生态多样性的许多方面的分子基础,以及在不获得新蛋白质的情况下复杂形态的趋同。这项全谱系研究强调了多样性驱动的基因组测序的好处,鉴定了超过 21000 种蓝藻蛋白质,与已知蛋白质没有可检测的相似性,并突出了光收集蛋白和次生代谢产物生物合成基因簇的多样性。此外,我们的研究结果还揭示了蓝藻基因在真核核基因组中的分布情况。此外,这项研究使蓝藻基因组序列数据的数量和系统发育多样性都增加了一倍。鉴于测序基因组的数量呈指数级增长,这种多样性驱动的研究展示了通过在全谱系范围内比较不同但相关的基因组来获得的视角,以及从中获得的见解。