Vezzi A, Campanaro S, D'Angelo M, Simonato F, Vitulo N, Lauro F M, Cestaro A, Malacrida G, Simionati B, Cannata N, Romualdi C, Bartlett D H, Valle G
CRIBI Biotechnology Centre and Department of Biology, Università di Padova, via Bassi 58/B, 35131 Padova, Italy.
Science. 2005 Mar 4;307(5714):1459-61. doi: 10.1126/science.1103341.
Deep-sea life requires adaptation to high pressure, an extreme yet common condition given that oceans cover 70% of Earth's surface and have an average depth of 3800 meters. Survival at such depths requires specific adaptation but, compared with other extreme conditions, high pressure has received little attention. Recently, Photobacterium profundum strain SS9 has been adopted as a model for piezophily. Here we report its genome sequence (6.4 megabase pairs) and transcriptome analysis. The results provide a first glimpse into the molecular basis for life in the largest portion of the biosphere, revealing high metabolic versatility.
深海生物需要适应高压环境,鉴于海洋覆盖了地球表面的70%,平均深度达3800米,这是一种极端但常见的条件。在如此深度生存需要特定的适应性,但与其他极端条件相比,高压受到的关注较少。最近,深海发光杆菌菌株SS9已被用作嗜压性的模型。在此我们报告其基因组序列(640万个碱基对)和转录组分析。这些结果首次揭示了生物圈最大部分中生命的分子基础,显示出高度的代谢多样性。