Institute of Biology and Nordic Center for Earth Evolution, University of Southern Denmark, Campusvej 55, 5230 Odense M, Denmark.
Science. 2010 Dec 3;330(6009):1375-8. doi: 10.1126/science.1196889. Epub 2010 Nov 11.
Nitrogen cycling is normally thought to dominate the biogeochemistry and microbial ecology of oxygen-minimum zones in marine environments. Through a combination of molecular techniques and process rate measurements, we showed that both sulfate reduction and sulfide oxidation contribute to energy flux and elemental cycling in oxygen-free waters off the coast of northern Chile. These processes may have been overlooked because in nature, the sulfide produced by sulfate reduction immediately oxidizes back to sulfate. This cryptic sulfur cycle is linked to anammox and other nitrogen cycling processes, suggesting that it may influence biogeochemical cycling in the global ocean.
氮循环通常被认为主导着海洋环境中低氧区的生物地球化学和微生物生态。通过分子技术和过程速率测量的结合,我们表明硫酸盐还原和硫化物氧化都有助于智利北部沿海无氧气水域的能量通量和元素循环。这些过程可能被忽视了,因为在自然界中,硫酸盐还原产生的硫化物会立即氧化回硫酸盐。这种隐匿的硫循环与厌氧氨氧化和其他氮循环过程有关,表明它可能会影响全球海洋的生物地球化学循环。