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Seasonal variation in ratios of community respiration to gross photosynthesis determined by stable isotopes and concentrations of dissolved oxygen in Grand Traverse Bay, Lake Michigan.

机译:密歇根湖大特拉弗斯湾的稳定同位素和溶解氧浓度决定了群落呼吸与总光合作用比率的季节性变化。

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Dissolved oxygen concentrations (O2) were used in conjunction with stable oxygen isotopes (delta18O-O2) to determine the ratio of community respiration to gross photosynthesis (R:P ratios) in 2000 and 2001 in Grand Traverse Bay (GTB), Lake Michigan. Average R:P ratios in 2000 (1.2 +/- 0.03 SE) and 2001 (1.1 +/- 0.04 SE) indicate that GTB is net heterotrophic on an annual basis and requires an allochthonous source or non-contemporaneous autochthonous source of organic carbon to support excess heterotrophic activity. On a seasonal basis, the system fluctuated between periods of net heterotrophy (R:P > 1) in early spring and late fall and net autotrophy (R:P 1) in late spring and early summer. Periods of net autotrophy coincided with the onset of stratification. As stratification progressed, R:P ratios near unity were observed in the epilimnion indicating that heterotrophic activity in GTB is strongly dependent upon autochthonous inputs of organic carbon during periods of stratification. We suggest that the temporal discontinuity between the introduction and utilization of organic carbon drives metabolism towards net heterotrophy.
机译:溶解氧浓度(O2)与稳定氧同位素(delta18O-O2)一起用于确定密歇根湖大特拉弗斯湾(GTB)在2000年和2001年的群落呼吸与总光合作用的比率(R:P比率)。 2000年(1.2 +/- 0.03 SE)和2001年(1.1 +/- 0.04 SE)的平均R:P比值表明,GTB每年都是净异养生物,需要异源或非同时生的有机碳源支持多余的异养活性。在季节的基础上,该系统在早春和秋季末的净异养(R:P> 1)和春末和夏初的净自养(R:P <1)之间波动。净自养时期与分层发作同时发生。随着分层的进行,在上层岩中观察到R:P比率接近于1,这表明GTB中的异养活动在很大程度上取决于分层期间有机碳的自生输入。我们建议有机碳的引入和利用之间的时间不连续性驱动新陈代谢趋向净异养。

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