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首页> 外文期刊>Biogeosciences >Reduced growth with increased quotas of particulate organic and inorganic carbon in the coccolithophore Emiliania huxleyi under future ocean climate change conditions
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Reduced growth with increased quotas of particulate organic and inorganic carbon in the coccolithophore Emiliania huxleyi under future ocean climate change conditions

机译:在未来海洋气候变化条件下,Coccolthophore emiliania Huxleyi中的颗粒状有机和无机碳的可配额减少了增长

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摘要

Effects of ocean acidification and warming on marine primary producers can be modulated by other environmental factors, such as levels of nutrients and light. Here, we investigated the interactive effects of five oceanic environmental drivers ( CO 2 , temperature, light, dissolved inorganic nitrogen and phosphate) on the growth rate, particulate organic carbon (POC) and particulate inorganic carbon (PIC) quotas of the cosmopolitan coccolithophore Emiliania huxleyi . The population growth rate increased with increasing temperature (16 to 20? ° C ) and light intensities (60 to 240? μ mol photons m - 2 s - 1 ) but decreased with elevated p CO 2 concentrations (370 to 960? μatm ) and reduced availability of nitrate (24.3 to 7.8? μmol?L ?1 ) and phosphate (1.5 to 0.5? μmol?L ?1 ). POC quotas were predominantly enhanced by the combined effects of increased p CO 2 and decreased availability of phosphate. PIC quotas increased with decreased availability of nitrate and phosphate. Our results show that concurrent changes in nutrient concentrations and p CO 2 levels predominantly affected the growth, photosynthetic carbon fixation and calcification of E.?huxleyi and imply that plastic responses to progressive ocean acidification, warming, and decreasing availability of nitrate and phosphate reduce the population growth rate while increasing cellular quotas of particulate organic and inorganic carbon of E.?huxleyi , ultimately affecting coccolithophore-related ecological and biogeochemical processes.
机译:海洋酸化和升温对海洋初级生产者的影响可以通过其他环境因素调节,例如营养素和光水平。在这里,我们研究了五个海洋环境司机(CO 2,温度,光,溶解的无机氮和磷酸盐)对大都会Coccolithophoremiania的生长速率,颗粒有机碳(Poc)和颗粒状无机碳(PIC)配额的互动效应Huxleyi。随着温度(16至20℃)和光强度(60至240℃,光子M-2 S-1)增加而增加,群体生长速率增加,但用升高的P CO 2浓度(370至960Ω·μATm)降低将硝酸盐的可用性降低(24.3至7.8?μmol?1?1)和磷酸盐(1.5至0.5≤μmol≤1)。通过增加的P CO 2的组合效应和磷酸盐的可用性降低,主要增强了POC配额。 PIC配额随着硝酸盐和磷酸盐的可用性而增加。我们的研究结果表明,营养浓度和P CO 2水平的并发变化主要影响了E.?Huxleyi的生长,光合碳固定和钙化,并暗示塑料应对渐进海洋酸化,加热和降低硝酸盐和磷酸盐的可用性人口增长率同时增加了E.?Huxleyi的颗粒状有机和无机碳的细胞配额,最终影响了与Coccolethophor相关的生态和生物地球化学过程。

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