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Adenosine 5′-Triphosphate Flux Through the North Inlet Marsh System

机译:腺苷5'-三磷酸通量通过北入口沼泽系统

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The distribution, fluctuation, and short-term transport of total microbial biomass (measured as adenosine 5′-triphosphate [ATP]) was investigated in a large salt marsh creek. Hourly samples were collected synoptically for 25 h from 10 boats positioned across the 320-m width of the creek. Samples were collected from three depths ranging from 0.2 to 8.0 m. Hourly data obtained from each station were graphed, plotting depth against ATP. Subsequently, interpolated ATP values were generated for every one-tenth depth from the surface to the bottom with the use of an 11-point proportional divider. A total of 2,750 values were generated, and a mean value of 0.865 mg of ATP per m3 was determined. Maximum levels of ATP were found at high tide and minimal values were found at low tide. The distribution of ATP concentrations was found to be complex, with no suggestion of vertical stratification; however, horizontal divisions were apparent. ATP values corrected for direction of flow or velocity indicated two ebb-directed channels; however, when considered in total, there was a net import of ATP through the interface. The total import of ATP for this 25-h sampling period was calculated to be 3.58 kg, corresponding to a net transport of 39.8 mg of ATP per s through the cross section. Results suggest that detailed characterization of a creek transect in terms of ATP or any similar parameter requires the simultaneous measurements of both the concentration of the parameter in question and the velocity at the time and point from which the sample was taken.
机译:在一个大型盐沼小溪中研究了总微生物生物量(以5'-三磷酸腺苷[ATP]衡量)的分布,波动和短期运输。从位于小河320米宽处的10艘船上,每小时进行25小时的同情采样。从0.2到8.0 m的三个深度收集样品。将从每个站点获得的每小时数据绘制成图表,绘制深度与ATP的关系。随后,使用11点比例除法器从表面到底部每十分之一深度生成内插ATP值。总共生成了2750个值,测定的平均值为每立方米0.865 mg ATP。在涨潮时发现最大水平的ATP,在退潮时发现最小的水平。发现ATP浓度的分布很复杂,没有垂直分层的迹象。但是,水平划分是显而易见的。为流速或速度方向校正的ATP值指示了两个退潮通道;但是,从总体上考虑,该接口有ATP净进口。在这25小时的采样期内,ATP的总进口量为3.58 kg,相当于每秒钟通过横截面的净运输量为39.8 mg ATP。结果表明,根据ATP或任何类似参数来详细描述小河样断面需要同时测量所涉及参数的浓度以及在采集样品的时间和点的速度。

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