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The relationship between the dissolved inorganic carbon concentration and growth rate in marine phytoplankton

机译:海洋浮游植物中溶解性无机碳浓度与生长速率的关系

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摘要

A range of marine phytoplankton was grown in closed systems in order to investigate the kinetics of dissolved inorganic carbon (DIC) use and the influence of the nitrogen source under conditions of constant pH. The kinetics of DIC use could be described by a rectangular hyperbolic curve, yielding estimations of K-G(DIC) (the half saturation constant for carbon-specific growth, i.e. C mu) and mu(max) (the theoretical maximum C mu) All species attained a K-G(DIC) within the range of 30-750 mu M DIC. For most species, NH4+ use enabled growth with a lower K-G(DIC) and/or, for two species, an increase in mu(max). At DIC concentrations of > 1.6mM, C mu was > 90% saturated for all species relative to the rate at the natural seawater DIC concentration of 2.0 mM. The results suggest that neither the rate nor the extent of primary productivity will be significantly limited by the DIC in the quasi-steady-state conditions associated with oligotrophic oceans. The method needs to be applied in the conditions associated with dynamic coastal (eutrophic) systems for clarification of a potential DIC rate limitation where cells may grow to higher densities and under variable pH and nitrogen supply. [References: 57]
机译:为了研究溶解的无机碳(DIC)的使用动力学以及恒定pH条件下氮源的影响,在封闭系统中生长了一系列海洋浮游植物。使用DIC的动力学可以通过矩形双曲线来描述,得出KG(DIC)(碳特定生长的半饱和常数,即C mu)和mu(max)(理论上最大C mu)的估计值所有物种达到30-750μMDIC范围内的KG(DIC)。对于大多数物种,使用NH4 +可使K-G(DIC)降低,和/或对于两种物种而言,mu(max)的增加。在DIC浓度> 1.6mM时,相对于天然海水DIC浓度为2.0 mM时的速率,所有物种的C mu均> 90%饱和。结果表明,在与贫营养海洋有关的准稳态条件下,DIC不会显着限制初级生产力的速率或程度。该方法需要在与动态沿海(富营养)系统相关的条件下应用,以阐明潜在的DIC速率限制,其中细胞可能生长至更高的密度以及在可变的pH和氮供应下。 [参考:57]

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