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Summer and winter MgCO_3 levels in the skeletons of Arctic bryozoans

机译:夏季和冬季Mgco_3水平在北极纹理的骨架中

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摘要

In the Arctic, seasonal patterns in seawater biochemical conditions are shaped by physical, chemical, and bio-logical processes related to the alternation of seasons, i.e. winter polar night and summer midnight sun. In summertime, CO2 concentration is driven by photosynthetic activity of autotrophs which raises seawater pH and carbonate saturation state (Omega). In addition, restriction of photosynthetic activity to the euphotic zone and establishment of seasonal stratification often leads to depth gradients in pH and Omega. In winter, however, severely reduced primary production along with respiration processes lead to higher CO2 concentrations which consequently decrease seawater pH and Omega.Many calcifying invertebrates incorporate other metals, in addition to calcium, into their skeletons, with potential consequences for stability of the mineral matrix and vulnerability to abrasion of predators. We tested whether changes in seawater chemistry due to light-driven activities of marine biota can influence the uptake of Mg into calcified skeletons of Arctic Bryozoa, a dominant faunal group in polar hard-bottom habitats. Our results indicate no clear differences between summer and winter levels of skeletal MgCO3 in five bryozoan species despite differences in Omega between these two seasons. Furthermore, we could not detect any depth-related differences in MgCO3 content in skeletons of selected bryozoans. These results may indicate that Arctic bryozoans are able to control MgCO3 skeletal concentrations biologically. Yet recorded spatial variability in MgCO3 content in skeletons from stations exhibiting different seawater parameters suggests that environmental factors can also, to some extent, shape the skeletal chemistry of Arctic bryozoans.
机译:在北极,海水生物化学条件下的季节性模式由与季节交替相关的物理,化学和生物逻辑流程,即冬季夜晚和夏季午夜阳光。在夏季,CO 2浓度由自触发的光合活性驱动,其提高海水pH和碳酸酯饱和状态(ω)。此外,限制光合作用对Euphotic区和季节性分层的建立通常导致pH和ω的深度梯度。然而,在冬季,严重降低的初级生产以及呼吸过程导致较高的CO 2浓度,从而降低海水pH和ω.many钙化,除了钙,骨骼中,除了矿物质的稳定性外,还掺入其他金属,具有巨大的矿物质的潜在后果捕食者磨损的矩阵和脆弱性。我们测试了海水化学因海水生物群的光照活动的变化是否会影响MG的摄取到北极斑块的钙化骨架中,这是极地硬底栖栖息地的主要粪族群。尽管这两个赛季之间的欧米茄差异,但我们的结果表明夏季和冬季MgCo3的夏季和冬季水平之间的明显差异。此外,我们无法检测所选盐结构骨架中MgCO3含量的任何深度相关差异。这些结果可能表明,北极晶体能够在生物学上控制MgCO 3骨架浓度。然而,在表现出不同海水参数的车站的骷髅中的MgCO 3含量中的空间可变性表明,环境因素也可以在一定程度上塑造北极盐结构的骨骼化学。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第12期|105166.1-105166.14|共14页
  • 作者单位

    Univ Gdansk Lab Biosystemat & Ecol Aquat Invertebrates Dept Genet & Biosystemat Fac Biol Wita Stwosza 59 PL-80308 Gdansk Poland;

    Polish Acad Sci Inst Oceanol Marine Ecol Dept Powstancow Warszawy 55 PL-81712 Sopot Poland;

    Univ Ctr Svalbard N-9171 Longyearbyen Norway|Akvaplan Niva Fram Ctr N-9296 Tromso Norway;

    Univ Ctr Svalbard N-9171 Longyearbyen Norway|UiT Arctic Univ Norway Fac Biosci Fisheries & Econ Dept Arctic & Marine Biol N-9037 Tromso Norway|Norwegian Univ Sci & Technol Dept Biol Ctr Autonomous Marine Operat & Syst N-7491 Trondheim Norway;

    Norwegian Polar Res Inst Fram Ctr N-9296 Tromso Norway;

    Polish Acad Sci Inst Oceanol Marine Ecol Dept Powstancow Warszawy 55 PL-81712 Sopot Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polar night; Polar day; Mg-calcite; Marine calcifier; Light-driven changes; Ocean acidification;

    机译:极地之夜;极地的一天;Mg-Calipite;海洋钙化剂;亮相变化;海洋酸化;

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