...
首页> 外文期刊>Journal of phycology >PHOTOPHYSIOLOGY IN TWO SOUTHERN OCEAN PHYTOPLANKTON TAXA: PHOTOSYNTHESIS OF PHAEOCYSTIS ANTARCTICA (PRYMNESIOPHYCEAE) AND FRAGILARIOPSIS CYLINDRUS (BACILLARIOPHYCEAE) UNDER SIMULATED MIXED-LAYER IRRADIANCE
【24h】

PHOTOPHYSIOLOGY IN TWO SOUTHERN OCEAN PHYTOPLANKTON TAXA: PHOTOSYNTHESIS OF PHAEOCYSTIS ANTARCTICA (PRYMNESIOPHYCEAE) AND FRAGILARIOPSIS CYLINDRUS (BACILLARIOPHYCEAE) UNDER SIMULATED MIXED-LAYER IRRADIANCE

机译:模拟混合层辐照下两种南方海洋​​浮游植物塔克萨的光生理学:南极藻(Phymnesiophyceae)和扁桃体(Bacillaariophaceae)的光合作用

获取原文
获取原文并翻译 | 示例
           

摘要

In the Ross Sea, the prymnesiophyte Phaeocystis antarctica G. Karst. dominates deeply mixed water columns, while diatoms dominate shallower mixed layers. Understanding what controls the dynamics of these two phytoplankton taxa is essential because they dominate virtually all coastal polar waters, have different nutrient utilization characteristics, and support dissimilar food webs. We cultured two strains of P. antarctica and one strain of the diatom Fragilariopsis cylindrus (Grunow) Willi Krieg under three dynamic irradiance regimes that simulated different mixed-layer depths and measured their photosynthetic characteristics, cellular pigment concentrations, and cellular carbon and nitrogen content. In both species, chl a-normalized maximum carbon uptake rate (P-m* ) and specific growth rate were highest in the deeply mixed treatment that had a dark period. In all irradiance treatments, both (P-m* ) and photosynthetic efficiency (alpha*) were greater for the two P. antarctica strains than for the F. cylindrus strain. In contrast, P. antarctica strains were more susceptible to photoinhibition (beta*) than the F. cylindrus strain. When photosynthetic rates of each phytoplankton taxon were normalized by cellular particulate organic carbon (POC), the difference in the maximal photosynthetic rate () was generally reduced. In the dynamic irradiance treatment that simulated the shallowest mixed-layer irradiance, all three phytoplankton had similar ; however, the diatom had a 2-fold higher POC-normalized photosynthetic efficiency (alpha C). Finally, we performed calculations using the measured POC-normalized photosynthetic parameters to show that alpha C and can play a greater role than beta C in determining the competitive outcome between P. antarctica and F. cylindrus in both shallow and deep mixed-layer environments of the Ross Sea.
机译:在罗斯海,南极杆状藻(Phaeocystis antarctica G. Karst)。在深混合水柱中占主导地位,而硅藻则在较浅的混合层中占主导地位。了解控制这两个浮游生物类群动态的因素至关重要,因为它们几乎控制了所有沿海极地水域,具有不同的养分利用特征,并支持不同的食物网。我们在三种模拟不同混合层深度的动态辐照制度下培养了2株南极假单胞菌和1株硅藻Fragilariopsis cylindrus(Grunow)Willi Krieg菌株,并模拟了不同的混合层深度并测量了它们的光合特性,细胞色素浓度以及细胞碳和氮含量。在这两个物种中,在暗期进行的深度混合处理中,chl a归一化的最大碳吸收率(P-m *)和比生长率最高。在所有辐照处理中,两种南极毕赤酵母菌株的(P-m *)和光合作用效率(α*)均比圆柱形拟南芥菌株更大。相比之下,南极毕赤酵母菌株比圆柱形拟南芥菌株更容易受到光抑制作用(β*)。当通过细胞微粒有机碳(POC)对每个浮游植物分类单元的光合速率进行归一化时,最大光合速率的差异通常会减小。文件名=“ jpy_923_mu1.gif” type =“ gif” />)。在模拟最浅混合层辐照度的动态辐照度处理中,所有三个浮游植物都具有相似的;然而,硅藻的POC归一化光合作用效率(αC)高2倍。最后,我们使用测得的POC归一化光合参数进行了计算,结果表明,在确定P之间的竞争结果时,αC和可以比βC发挥更大的作用。罗斯海的浅层和深层混合层环境中的南极洲和圆线莲。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号