Department of Pharmaceutical Sciences, Oregon State University, Corvallis, Oregon 97331, USA.
J Nat Prod. 2010 Mar 26;73(3):489-99. doi: 10.1021/np900662k.
Deep-sea hydrothermal vents are among the most extreme and dynamic environments on Earth. However, islands of highly dense and biologically diverse communities exist in the immediate vicinity of hydrothermal vent flows, in stark contrast to the surrounding bare seafloor. These communities comprise organisms with distinct metabolisms based on chemosynthesis and growth rates comparable to those from shallow water tropical environments, which have been rich sources of biologically active natural products. The geological setting and geochemical nature of deep-sea vents that impact the biogeography of vent organisms, chemosynthesis, and the known biological and metabolic diversity of Eukarya, Bacteria, and Archaea, including the handful of natural products isolated to date from deep-sea vent organisms, are considered here in an assessment of deep-sea hydrothermal vents as potential hot spots for natural products investigations. Of critical importance too are the logistics of collecting deep vent organisms, opportunities for re-collection considering the stability and longevity of vent sites, and the ability to culture natural product-producing deep vent organisms in the laboratory. New cost-effective technologies in deep-sea research and more advanced molecular techniques aimed at screening a more inclusive genetic assembly are poised to accelerate natural product discoveries from these microbial diversity hot spots.
深海热液喷口是地球上最极端和最具活力的环境之一。然而,在热液喷流的附近存在着高密度和生物多样性极高的岛屿,与周围空旷的海底形成鲜明对比。这些生物群落包含了基于化能合成的具有独特代谢途径的生物,其生长速度与来自浅海热带环境的生物相当,这些生物是具有生物活性的天然产物的丰富来源。深海热液喷口的地质背景和地球化学性质影响着热液生物的生物地理学、化能合成以及真核生物、细菌和古菌的已知生物和代谢多样性,包括迄今为止从深海热液生物中分离出的少数几种天然产物。本文评估了深海热液喷口作为天然产物研究的潜在热点,考虑到喷口地点的稳定性和耐久性,以及在实验室中培养产生天然产物的深海喷口生物的能力,收集深海喷口生物的后勤工作、重新采集的机会也非常重要。深海研究的新技术和更先进的分子技术旨在筛选更全面的遗传组合,这将有助于加快从这些微生物多样性热点地区发现天然产物。