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首页> 外文期刊>Journal of Oceanography >Sensitive determination of enzymatically labile dissolved organic phosphorus and its vertical profiles in the oligotrophic western North Pacific and East China Sea
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Sensitive determination of enzymatically labile dissolved organic phosphorus and its vertical profiles in the oligotrophic western North Pacific and East China Sea

机译:富营养化北太平洋西部和东海中酶促不稳定的溶解性有机磷及其垂直分布的灵敏测定

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Trace concentrations of labile dissolved organic phosphorus (LDOP) in oligotrophic seawater were measured by use of an enzymatic procedure and a nanomolar phosphate analytical system consisting of a gas-segmented continuous flow analyzer with a liquid waveguide capillary cell. LDOP, defined as DOP hydrolyzed by alkaline phosphatase (AP) from Escherichia coli, was quantified as the difference between the phosphate concentrations of the seawater sample with and without AP treatment. For sensitive measurement of LDOP, we found that phosphate contamination derived from commercially available AP must be corrected, and azide treatment before AP treatment proved effective in removing biological effect that occurs during DOP hydrolysis. Field observations at six stations of the western North Pacific and the East China Sea during the boreal summer revealed that, in the upper 200 m of the water column, LDOP concentrations ranged from the detection limit (3 nM) to 243 nM, and phosphate concentrations ranged from 5 to 374 nM. The spatial distribution patterns of LDOP were similar to those of phosphate. Most of the depth profiles for LDOP and phosphate showed concentrations were extremely low, <25 nM, between the surface and the deep chlorophyll maximum layer (DCML) and increased below the DCML. Strongly depleted LDOP and phosphate above the DCML suggest that LDOP is actively hydrolyzed under phosphate-depleted conditions and utilized by microbes.
机译:通过使用酶促程序和纳摩尔磷酸盐分析系统(由气体分段连续流分析仪和液体波导毛细管池组成),测量了寡营养海水中的痕量不稳定溶解有机磷(LDOP)浓度。 LDOP定义为被大肠杆菌碱性磷酸酶(AP)水解的DOP,其定量为经过和未经过AP处理的海水样品中磷酸盐浓度之间的差异。对于LDOP的灵敏测量,我们发现必须对源自市售AP的磷酸盐污染进行校正,并且在AP处理之前进行的叠氮化物处理可有效去除DOP水解过程中发生的生物效应。在北半球夏季,在北太平洋西部和东海的六个站点进行的野外观测表明,在水柱的上方200 m,LDOP浓度范围从检测极限(3 nM)到243 nM,磷酸盐浓度范围从5到374nM。 LDOP的空间分布模式与磷酸盐相似。 LDOP和磷酸盐的大多数深度剖面图显示,表面和深叶绿素最大层(DCML)之间的浓度极低,<25 nM,并在DCML以下增加。 LDOP和DCML上方的磷酸盐大量消耗表明LDOP在磷酸盐消耗少的条件下被积极水解,并被微生物利用。

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