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Interaction Effects of Light Temperature and Nutrient Limitations (N P and Si) on Growth Stoichiometry and Photosynthetic Parameters of the Cold-Water Diatom Chaetoceros wighamii

机译:光温度和养分限制(NP和Si)对冷水硅藻Chaetoceros wighamii的生长化学计量和光合参数的相互作用

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摘要

Light (20-450 μmol photons m-2 s-1), temperature (3-11°C) and inorganic nutrient composition (nutrient replete and N, P and Si limitation) were manipulated to study their combined influence on growth, stoichiometry (C:N:P:Chl a) and primary production of the cold water diatom Chaetoceros wighamii. During exponential growth, the maximum growth rate (~0.8 d-1) was observed at high temperture and light; at 3°C the growth rate was ~30% lower under similar light conditions. The interaction effect of light and temperature were clearly visible from growth and cellular stoichiometry. The average C:N:P molar ratio was 80:13:1 during exponential growth, but the range, due to different light acclimation, was widest at the lowest temperature, reaching very low C:P (~50) and N:P ratios (~8) at low light and temperature. The C:Chl a ratio had also a wider range at the lowest temperature during exponential growth, ranging 16-48 (weight ratio) at 3°C compared with 17-33 at 11°C. During exponential growth, there was no clear trend in the Chl a normalized, initial slope (α*) of the photosynthesis-irradiance (PE) curve, but the maximum photosynthetic production (Pm) was highest for cultures acclimated to the highest light and temperature. During the stationary growth phase, the stoichiometric relationship depended on the limiting nutrient, but with generally increasing C:N:P ratio. The average photosynthetic quotient (PQ) during exponential growth was 1.26 but decreased to <1 under nutrient and light limitation, probably due to photorespiration. The results clearly demonstrate that there are interaction effects between light, temperature and nutrient limitation, and the data suggests greater variability of key parameters at low temperature. Understanding these dynamics will be important for improving models of aquatic primary production and biogeochemical cycles in a warming climate.
机译:光照(20-450μmol光子m -2 s -1 ),温度(3-11°C)和无机营养成分(营养物质和氮,磷和硅)限制),以研究它们对冷水硅藻Chaetoceros wighamii的生长,化学计量(C:N:P:Chl a)和初级生产的综合影响。在指数生长期间,在高温高光下观察到最大生长速率(〜0.8 d -1 );在3°C下,在相似的光照条件下,生长速率降低了约30%。从生长和细胞化学计量可以清楚地看到光与温度的相互作用。指数生长期间平均C:N:P摩尔比为80:13:1,但是由于不同的光适应,该范围在最低温度下最宽,达到非常低的C:P(〜50)和N:P在弱光和高温下的比率(〜8)。 C:Chl a比值在指数增长过程中的最低温度下也具有较宽的范围,在3°C下为16-48(重量比),而在11°C下为17-33。在指数增长过程中,光合作用-辐照度(PE)曲线的Chl归一化初始斜率(α*)没有明显趋势,但是在适应最高光照和温度的培养物中,最大光合作用产量(Pm)最高。 。在静止生长阶段,化学计量关系取决于有限的养分,但通常会增加C:N:P的比例。指数增长期间的平均光合商(PQ)为1.26,但在养分和光照限制下下降至<1,这可能是由于光呼吸所致。结果清楚地表明,光,温度和养分限制之间存在相互作用,并且数据表明关键参数在低温下具有更大的可变性。了解这些动态对改善气候变暖中的水生初级生产和生物地球化学循环模型至关重要。

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