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A Simple High-Precision High-Sensitivity Tracer Assay for N(inf2) Fixation

机译:用于N(inf2)固定的简单高精度高灵敏度示踪剂测定

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摘要

We describe a simple, precise, and sensitive experimental protocol for direct measurement of N(inf2) fixation using the conversion of (sup15)N(inf2) to organic N. Our protocol greatly reduces the limit of detection for N(inf2) fixation by taking advantage of the high sensitivity of a modern, multiple-collector isotope ratio mass spectrometer. This instrument allowed measurement of N(inf2) fixation by natural assemblages of plankton in incubations lasting several hours in the presence of relatively low-level (ca. 10 atom%) tracer additions of (sup15)N(inf2) to the ambient pool of N(inf2). The sensitivity and precision of this tracer method are comparable to or better than those associated with the C(inf2)H(inf2) reduction assay. Data obtained in a series of experiments in the Gotland Basin of the Baltic Sea showed excellent agreement between (sup15)N(inf2) tracer and C(inf2)H(inf2) reduction measurements, with the largest discrepancies between the methods occurring at very low fixation rates. The ratio of C(inf2)H(inf2) reduced to N(inf2) fixed was 4.68 (plusmn) 0.11 (mean (plusmn) standard error, n = 39). In these experiments, the rate of C(inf2)H(inf2) reduction was relatively insensitive to assay volume. Our results, the first for planktonic diazotroph populations of the Baltic, confirm the validity of the C(inf2)H(inf2) reduction method as a quantitative measure of N(inf2) fixation in this system. Our (sup15)N(inf2) protocols are comparable to standard C(inf2)H(inf2) reduction procedures, which should promote use of direct (sup15)N(inf2) fixation measurements in other systems.
机译:我们描述了一种简单,精确和灵敏的实验规程,用于通过将(sup15)N(inf2)转化为有机N来直接测量N(inf2)固定。我们的规程大大降低了N(inf2)固定的检测限利用现代的多收集器同位素比质谱仪的高灵敏度。该仪器允许在相对低水平(约10原子%)示踪剂向(Sup15)N(inf2)添加相对低水平(约10原子%)的情况下,通过持续数小时的孵育过程中的浮游生物的自然组装来测量N(inf2)的固定。 N(inf2)。该示踪剂方法的灵敏度和精密度与C(inf2)H(inf2)还原测定法相关或相当。在波罗的海哥得兰盆地的一系列实验中获得的数据表明,(sup15)N(inf2)示踪剂与C(inf2)H(inf2)减少量测量值之间具有极好的一致性,两种方法之间的最大差异发生在非常低​​的位置固定率。固定的C(inf2)H(inf2)与N(inf2)的比率为4.68(正)0.11(平均(正)标准误,n = 39)。在这些实验中,C(inf2)H(inf2)的还原速率对测定体积相对不敏感。我们的结果是波罗的海浮游重氮种群的第一个结果,证实了C(inf2)H(inf2)还原方法作为该系统中N(inf2)固定的定量方法的有效性。我们的(sup15)N(inf2)协议可与标准C(inf2)H(inf2)还原程序相媲美,该规程应促进在其他系统中使用直接(sup15)N(inf2)固定测量。

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