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Ocean freshening and acidification differentially influence mortality and behavior of the Antarctic amphipod Gondoeeneia antarctica

机译:海洋新鲜化和酸化差异影响南极两栖动物Gondoeeneia antarctica的死亡率和行为

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摘要

The Western Antarctic Peninsula (WAP) has experienced rapid atmospheric and ocean warming over the past few decades and many marine-terminating glaciers have considerably retreated. Glacial retreat is accompanied by fresh meltwater intrusion, which may result in the freshening and acidification of coastal waters. Marian Cove (MC), on King George Island in the WAP, undergoes one of the highest rates of glacial retreat. Intertidal and shallow subtidal waters are likely more susceptible to these processes, and sensitive biological responses are expected from the organisms inhabiting this area. The gammarid amphipod Gondogeneia antarctica is one of the most abundant species in the shallow, nearshore Antarctic waters, and it occupies an essential ecological niche in the coastal marine WAP ecosystem. In this study, we tested the sensitivity of G. antarctica to lowered salinity and pH by meltwater intrusion following glacial retreat. We exposed G. antarctica to four different treatments combining two salinities (34 and 27 psu) and pH (8.0 and 7.6) levels for 26 days. Mortality, excluding cannibalized individuals, increased under low pH but decreased under low salinity conditions. Meanwhile, low salinity increased cannibalism, whereas low pH reduced food detection. Shelter use during the daytime decreased under each low salinity and pH condition, indicating that the two stressors act as disruptors of amphipod behavior. Under low salinity conditions, swimming increased during the daytime but decreased at night. Although interactions between low salinity and low pH were not observed during the experiment, the results suggest that each stressor, likely induced by glacial melting, causes altered behaviors in amphipods. These environmental factors may threaten population persistence in Marian Cove and possibly other similar glacial embayments.
机译:在过去的几十年中,南极西部半岛(Western Antarctic Peninsula,WAP)经历了迅速的大气和海洋变暖,并且许多终止于海洋的冰川已经退缩。冰川退缩伴随着新鲜的融水入侵,这可能导致沿海水域的新鲜化和酸化。 WAP中的乔治国王岛上的玛丽安·科夫(MC)经历了最高的冰川退缩速度之一。潮间带和浅潮带下面的水可能更容易受到这些过程的影响,预计居住在该区域的生物体会产生敏感的生物反应。 γ角虫两栖动物南极洲Gondogeneia是南极浅水近海中最丰富的物种之一,在沿海海洋WAP生态系统中占有重要的生态位。在这项研究中,我们测试了冰川退缩后南极变形杆菌对融化水入侵降低盐度和pH值的敏感性。我们将南极G.暴露于四种不同的处理中,这些处理结合了两种盐度(34和27 psu)和pH(8.0和7.6)水平达26天。死亡率(不包括被食人的个体除外)在低pH下增加,但在低盐度条件下降低。同时,低盐度会增加食人性,而低pH值会减少食物检测。在每种低盐度和pH条件下,白天的庇护所使用量都减少了,这表明这两种应激源可作为两栖动物行为的干扰源。在低盐度条件下,白天游泳增加,但晚上减少。尽管在实验过程中未观察到低盐度和低pH值之间的相互作用,但结果表明,可能由冰川融化引起的每个应激源都引起了两栖动物行为的改变。这些环境因素可能会威胁到玛丽安湾的居民持续生存,并可能威胁其他类似的冰川屏障。

著录项

  • 来源
    《Marine Environmental Research》 |2020年第2期|104847.1-104847.10|共10页
  • 作者单位

    Inha Univ Dept Ocean Sci 100 Inha Ro Incheon 22212 South Korea;

    Korea Polar Res Inst Div Polar Ocean Sci 26 Songdomirae Ro Incheon 21990 South Korea;

    Natl Marine Biodivers Inst Korea Dept Taxon & Systemat 101-75 Jangsan Ro Seocheon Gun 33662 Chungcheongnam South Korea;

    NIFS Fisheries Resources & Environm Res Div East Sea Fisheries Res Inst 1194 Haean Ro Gangneung Si 25435 Gangwon Do South Korea;

  • 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

    Amphipod; Cannibalism; Food detection; Glacial retreat; Marian Cove; Molting; Swimming;

    机译:两栖动物;食人主义食品检测;冰川退缩;玛丽安湾蜕皮游泳的;
  • 入库时间 2022-08-18 05:12:08

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