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Chemical, isotopic and enzymatic monitoring of free and enclosed seawater : implications for primary production estimates in incubation bottles

机译:自由和封闭海水的化学,同位素和酶学监测:孵化瓶中初级生产估计的影响

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摘要

Enclosing seawater samples in incubation bottles had 3 main effects on the phytoplankton: first, a large (5-fold in 12 h) increase of phytoplankton biomass, due to the release of grazing pressure by herbivores, Second, an increase (2-fold in 6 h) in ribulose biphosphate carboxylase specific activity (per unit chlorophyll a), which could be due to a smaller dependence on regenerated production (less heterotrophy on excreted compounds). This was also supported by a tight relationship between phosphoenol pyruvate carboxykinase activity and dissolved ammonium. Finally, the large changes in the carbon isotopic composition of the incubated particulate matter, which were highly dependent on the dissolved inorganic nitrogen concentration, were due mainly to physiological processes such as biochemical fractionation rather than physical processes such as CO2 limitation. For environments with high phytoplankton growth rate and high grazing pressure, a duration of incubation greater than 3 h may significantly change the physiology of the organisms and lead to different estimates of carbon assimilation by autotrophs than bulk water estimates.
机译:将海水样品放入保温瓶中对浮游植物有3个主要影响:首先,由于草食动物释放放牧压力,浮游植物生物量大幅度增加(在12小时内增加了5倍),其次,增加了(2倍) 6 h)中核果糖二磷酸羧化酶的比活性(每单位叶绿素a),这可能是由于对再生产物的依赖性较小(对排泄化合物的异养作用较小)。磷酸烯醇丙酮酸羧激酶活性与溶解的铵之间的紧密关系也支持了这一点。最后,温育颗粒物碳同位素组成的巨大变化很大程度上取决于溶解的无机氮浓度,这主要是由于生理过程(如生化分馏)而不是物理过程(如CO2限制)引起的。对于浮游植物生长速率高和放牧压力高的环境,温育时间大于3小时可能会显着改变生物体的生理状况,并导致自养生物对碳同化的估计与对大量水的估计不同。

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