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首页> 外文期刊>Polar biology >Impacts of combined temperature and salinity stress on the endemic Arctic brown seaweed Laminaria solidungula J. Agardh
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Impacts of combined temperature and salinity stress on the endemic Arctic brown seaweed Laminaria solidungula J. Agardh

机译:综合温度和盐度应力对特及北极棕海海藻Laminaria soridungula J. Agardh的影响

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摘要

Macroalgae such as kelp are important ecosystem engineers in the Polar Regions and potentially affected by freshening and ocean warming. The endemic Arctic kelp Laminaria solidungula might be particularly imperiled and become locally extinct from Arctic fjord systems in the future, since temperature increase is most pronounced in the Polar Regions. Additionally, increased temperatures cause glacier and sea ice melting and enhancing terrestrial run-off from snowfields, which eventually can result in hyposaline conditions in fjord systems. We conducted a multiple-stressor experiment at four temperatures (0, 5, 10, 15 degrees C) and two salinities (S-A 25, 35) to investigate the combined effects of increasing temperature and decreasing salinities on the physiological and biochemical status of young L. solidungula sporophytes. Both drivers had significant and interacting impacts, either in an additive or antagonistic way, dependent on the respective response variable. The maximum quantum yield of photosystem II (F-v/F-m) significantly declined with temperature increase and low salinity. Even though the absolute pigment content was not affected, the deepoxydation state of the xanthophyll cycle increased with intensified stress. Higher temperatures affected the C:N ratio significantly, mainly due to reduced nitrogen uptake, while S-A 25 supported the nitrogen uptake, resulting in an attenuation of the effect. The concentration of mannitol decreased at S-A 25. At control S-A 35 mannitol level remained steady between 0 and 10 degrees C but significantly decreased at 15 degrees C. Conclusively, our results show that L. solidungula is very susceptible to both drivers of climate change, especially when they are combined. Implications to species ecology are discussed.
机译:诸如海带的宏观格子是极地地区的重要生态系统工程师,潜在受清新和海洋变暖的影响。特有的北极海藻Laminaria sorfungula可能特别危险,并在未来从北极峡湾系统彻底灭绝,因为温度升高在极地地区最为明显。此外,增加的温度会导致冰川和海冰融化和从雪地中加强陆地径流,最终可能导致峡湾系统中的高血糖条件。我们在四个温度(0,5,10,15摄氏度)和两种盐度(SA 25,35)进行了多重压力源实验,以研究增加温度和降低盐度对年轻L的生理和生化状态的综合影响。牙型孢子体。两个司机的影响都具有重要的和相互作用的影响,无论是一种添加剂还是对抗方式,取决于各个响应变量。光系统II(F-V / F-M)的最大量子产率随温度升高和低盐度明显下降。即使绝对颜料含量不受影响,叶黄素循环的偏氧质状态也随着强度而增加。较高的温度影响C:N比显着,主要是由于氮吸收降低,而S-A 25支持氮吸收,导致效果衰减。甘露醇浓度在SA 25下降。在对照SA下,35甘露醇水平保持稳定在0至10摄氏度之间,但在15摄氏度下显着降低,我们的结果表明L. signulula非常容易受到气候变化的司徒,特别是当它们被组合时。讨论了对物种生态学的影响。

著录项

  • 来源
    《Polar biology》 |2020年第6期|647-656|共10页
  • 作者单位

    Univ Bremen Fac Biol & Chem Marine Bot D-28359 Bremen Germany;

    Univ Rostock Inst Biol Sci Appl Ecol & Phycol D-18059 Rostock Germany;

    Univ Bremen Fac Biol & Chem Marine Bot D-28359 Bremen Germany;

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

    Kelp; Multiple-stressor; Mannitol; F-v; F-m; C; N; DPS;

    机译:海带;多重压力源;甘露醇;f-v;f-m;c;n;dps;

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