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Variability in primary productivity and bio-optical properties in the Indian sector of the Southern Ocean during an austral summer

机译:澳大利亚夏季南海印度部门初级生产力和生物光学特性的可变性

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摘要

The Southern Ocean (SO), in spite of its major contribution to global primary productivity (PP), remains underexplored in this aspect. Light being the most limiting parameter affecting primary production, it is crucial to study the ambient light field to understand PP and associated processes. The current study makes a dual effort to present PP estimates as well as understand the bio-optical variability in the Indian sector of the Southern Ocean (ISSO). Results suggest that PP was highest at Sub-Tropical Front (STF) and lowest at Polar Front-2 (PF2). Most PP profiles were characterized by subsurface maxima, indicating probable photoinhibition or micronutrient limitation at surface layer. Strong correlation between measured and satellite-based integrated PP (R-2 = 0.94,RMSE = 77.48,p 0.01) indicated the efficacy of global models in their original formulation in bio-optically complex SO waters. The maximum photochemical efficiency of phytoplankton (F-v/F-m) measured by fast repetition rate fluorometry varied from 0.1-0.4, implying reduced phytoplankton photosynthetic efficiency in ISSO. The ratio between remote sensing reflectance (R-rs)-derived phytoplankton absorption (a(ph)) at blue-red band (B/R ratio) indicated dominance of smaller phytoplankton in surface and larger phytoplankton at subsurface. Higher Chl-a specific phytoplankton absorption (aph*) than phytoplankton absorption (a(ph)) suggested an adaptation of dominant phytoplankton species to low light, yet a better light harvest efficiency. However, low contribution ofa(ph)suggested a strong influence of non-phytoplankton materials to the total absorption budget. We therefore infer that, the surrounding physical environment in terms of nutrients and bio-optical variability modulated phytoplankton size class and thereby productivity more critically in the surface than in the deeper layers of ISSO.
机译:南海(SO),尽管其对全球初级生产力(PP)的主要贡献,但在这方面仍未实现了曝光率。光线是影响初级生产的最限制参数,研究环境光场至关重要,以了解PP和相关过程。目前的研究对PP估计进行了双重努力,了解南海(ISSO)的印度部门的生物光学变异。结果表明,PP在亚热带前部(STF)最高,极性前2(PF2)最低。大多数PP型材的特征在于地下最大值,表明在表面层处的较可能的光抑制或微量营养素限制。测量和卫星集成PP之间的强关系(R-2 = 0.94,RMSE = 77.48,P <0.01)表明了全球模型在生物光学复杂的原始配方中的效果。通过快速重复率荧光测量测量的浮游植物(F-V / F-M)的最大光化学效率从0.1-0.4变化,暗示ISSO的浮游植物光合效率降低。蓝红色带(B / R比的遥感反射率(R-R级)的植物浮游植物(A(pH))之间的比率表示在地下表面和较大浮游植物中的较小浮游植物的优势。较高的CHL-A特异性植物浮游植物(APH *)比浮游植物吸收(A(pH))提出了优势浮游植物的适应性,但较好的收获效率。然而,低贡献(pH)表明非浮游植物材料对全部吸收预算的强烈影响。因此,我们推断,在营养成分和生物光学变异性方面的周围物理环境调制浮游植物大小等级,从而在表面中更为严重的生产率比在isso的更深层中。

著录项

  • 来源
    《Polar biology》 |2020年第10期|1469-1492|共24页
  • 作者单位

    Minist Earth Sci Natl Ctr Polar & Ocean Res NCPOR Vasco Da Gama 403804 Goa India|Goa Univ Sch Earth Ocean & Atmospher Sci Taleigao Plateau 403206 Goa India;

    Minist Earth Sci Natl Ctr Polar & Ocean Res NCPOR Vasco Da Gama 403804 Goa India;

    Cent Inst Fisheries Technol ICAR Kochi 682029 Kerala India;

    ISRO Natl Remote Sensing Ctr Hyderabad 500037 India;

    Minist Earth Sci Natl Ctr Polar & Ocean Res NCPOR Vasco Da Gama 403804 Goa India;

    Minist Earth Sci Natl Ctr Coastal Res NIOT Campus Chennai 600100 Tamil Nadu India;

    Minist Earth Sci Natl Ctr Polar & Ocean Res NCPOR Vasco Da Gama 403804 Goa India;

    Minist Earth Sci Natl Ctr Polar & Ocean Res NCPOR Vasco Da Gama 403804 Goa India|Kuwait Inst Sci Res Ctr Environm & Life Sci Res Ctr Al Jaheth St Shuwaikh 13109 Kuwait;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Light absorption; Package effect; Photosynthetic parameters; Phytoplankton productivity; Southern ocean;

    机译:光吸收;包装效果;光合参数;浮游植物生产率;南海;

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