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Phosphorus cycling in the North and South Atlantic Ocean subtropical gyres

机译:北大西洋和南大西洋亚热带环流中的磷循环

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Despite similar physical properties, the Northern and Southern Atlantic subtropical gyres have different biogeochemical regimes. The Northern subtropical gyre, which is subject to iron deposition from Saharan dust(1), is depleted in the nutrient phosphate, possibly as a result of iron-enhanced nitrogen fixation(2). Although phosphate depleted, rates of carbon fixation in the euphotic zone of the North Atlantic subtropical gyre are comparable to those of the South Atlantic subtropical gyre(3), which is not phosphate limited. Here we use the activity of the phosphorus-specific enzyme alkaline phosphatase to show potentially enhanced utilization of dissolved organic phosphorus occurring over much of the North Atlantic subtropical gyre. We find that during the boreal spring up to 30% of primary production in the North Atlantic gyre is supported by dissolved organic phosphorus. Our diagnostics and composite map of the surface distribution of dissolved organic phosphorus in the subtropical Atlantic Ocean reveal shorter residence times in the North Atlantic gyre than the South Atlantic gyre. We interpret the asymmetry of dissolved organic phosphorus cycling in the two gyres as a consequence of enhanced nitrogen fixation in the North Atlantic Ocean(4), which forces the system towards phosphorus limitation. We suggest that dissolved organic phosphorus utilization may contribute to primary production in other phosphorus-limited ocean settings as well.
机译:尽管物理性质相似,但北大西洋和南大西洋的亚热带回旋带具有不同的生物地球化学机制。受撒哈拉尘埃沉积的铁的北部亚热带回旋藻(1)中的营养磷酸盐缺乏,这可能是由于强化铁固氮的结果(2)。尽管磷酸盐被消耗掉了,但北大西洋亚热带回旋带的富营养区中的固碳速率与南大西洋亚热带回旋带的固碳速率相当(3),但不受磷酸盐的限制。在这里,我们使用磷特异性酶碱性磷酸酶的活性来显示在北大西洋副热带地区大部分地区发生的溶解有机磷的潜在利用增强。我们发现,在北半球春季,北大西洋回旋区高达30%的初级产量受到溶解有机磷的支持。我们对亚热带大西洋中溶解有机磷表面分布的诊断和综合图显示,北大西洋回旋区的停留时间比南大西洋回旋区的停留时间短。我们解释了由于北大西洋强化固氮的作用,两个回转体中溶解有机磷循环的不对称性(4),迫使系统趋向磷限制。我们建议溶解的有机磷利用也可能对其他磷限制海洋环境中的初级生产有贡献。

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