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Ecogenomic sensor reveals controls on N2-fixing microorganisms in the North Pacific Ocean

机译:Ecogenomic传感器揭示了对北太平洋N2固定微生物的控制

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摘要

Nitrogen-fixing microorganisms (diazotrophs) are keystone species that reduce atmospheric dinitrogen (N2) gas to fixed nitrogen (N), thereby accounting for much of N-based new production annually in the oligotrophic North Pacific. However, current approaches to study N2 fixation provide relatively limited spatiotemporal sampling resolution; hence, little is known about the ecological controls on these microorganisms or the scales over which they change. In the present study, we used a drifting robotic gene sensor to obtain high-resolution data on the distributions and abundances of N2-fixing populations over small spatiotemporal scales. The resulting measurements demonstrate that concentrations of N2 fixers can be highly variable, changing in abundance by nearly three orders of magnitude in less than 2 days and 30 km. Concurrent shipboard measurements and long-term time-series sampling uncovered a striking and previously unrecognized correlation between phosphate, which is undergoing long-term change in the region, and N2-fixing cyanobacterial abundances. These results underscore the value of high-resolution sampling and its applications for modeling the effects of global change.
机译:固氮微生物(固氮体)是将大气中的二氧化氮(N2)气体还原为固氮(N)的关键物种,因此占贫营养化北太平洋每年基于N的新产量的大部分。但是,目前研究N2固定的方法只能提供相对有限的时空采样分辨率。因此,对于这些微生物的生态控制或它们改变的规模知之甚少。在本研究中,我们使用了一个漂移的机器人基因传感器来获得关于小时空尺度上固定N2的种群的分布和丰度的高分辨率数据。所得的测量结果表明,N2固定剂的浓度可以高度变化,在不到2天的时间和30km内,丰度变化了近三个数量级。船上同时进行的测量和长期的时间序列采样发现,该区域正在发生长期变化的磷酸盐与固定N2的蓝细菌丰度之间存在显着且以前无法识别的相关性。这些结果强调了高分辨率采样的价值及其在模拟全球变化影响方面的应用。

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