...
首页> 外文期刊>Global change biology >Synergistic effects of ocean acidification and warming on overwintering pteropods in the Arctic.
【24h】

Synergistic effects of ocean acidification and warming on overwintering pteropods in the Arctic.

机译:海洋酸化和变暖对北极越冬的翼足类动物的协同作用。

获取原文
获取原文并翻译 | 示例
           

摘要

Ocean acidification and warming will be most pronounced in the Arctic Ocean. Aragonite shell-bearing pteropods in the Arctic are expected to be among the first species to suffer from ocean acidification. Carbonate undersaturation in the Arctic will first occur in winter and because this period is also characterized by low food availability, the overwintering stages of polar pteropods may develop into a bottleneck in their life cycle. The impacts of ocean acidification and warming on growth, shell degradation (dissolution), and mortality of two thecosome pteropods, the polar Limacina helicina and the boreal L. retroversa, were studied for the first time during the Arctic winter in the Kongsfjord (Svalbard). The abundance of L. helicina and L. retroversa varied from 23.5 to 120 ind m-2 and 12 to 38 ind m-2, and the mean shell size ranged from 920 to 981 micro m and 810 to 823 micro m, respectively. Seawater was aragonite-undersaturated at the overwintering depths of pteropods on two out of ten days of our observations. A 7-day experiment [temperature levels: 2 and 7 degrees C, pCO2 levels: 350, 650 (only for L. helicina) and 880 micro atm] revealed a significant pCO2 effect on shell degradation in both species, and synergistic effects between temperature and pCO2 for L. helicina. A comparison of live and dead specimens kept under the same experimental conditions indicated that both species were capable of actively reducing the impacts of acidification on shell dissolution. A higher vulnerability to increasing pCO2 and temperature during the winter season is indicated compared with a similar study from fall 2009. Considering the species winter phenology and the seasonal changes in carbonate chemistry in Arctic waters, negative climate change effects on Arctic thecosomes are likely to show up first during winter, possibly well before ocean acidification effects become detectable during the summer season.
机译:海洋酸化和变暖在北冰洋将最为明显。预计在北极,带有文石壳的翼足类将是最早遭受海洋酸化的物种之一。北极的碳酸盐岩饱和度将首先在冬季发生,并且由于这一时期的食物供应量也很低,极肢翼足类动物的越冬阶段可能会成为其生命周期的瓶颈。在北极冬季,在孔斯峡湾(斯瓦尔巴群岛)首次研究了海洋酸化和变暖对两种共生翼足类翼足纲(Limacina helicina)和北方倒背乳杆菌(L. retroversa)生长,壳退化(溶解)和死亡率的影响。 。螺旋藻和逆转录乳杆菌的丰度从23.5至120 ind m -2 和12至38 ind m -2 不等,平均壳大小在920范围内。分别为981微米和810到823微米。在我们观察到的十分之二的时间内,在翼足纲的越冬深度处,海水的文石含量不足。一个为期7天的实验[温度水平:2和7摄氏度,pCO 2 水平:350、650(仅针对螺旋藻)和880 micro atm]显示出显着的pCO 2 < / sub>对两种物种壳降解的影响,以及温度和pCO 2 对螺旋藻的协同作用。比较在相同实验条件下保存的活体和死亡标本表明,这两种物种都能够主动减少酸化对壳层溶解的影响。与2009年秋季以来的类似研究相比,表明冬季期间pCO 2 和温度升高的脆弱性更高。考虑到物种冬季物候和北极水域碳酸盐化学的季节性变化,气候变化为负在冬季,可能最早在北极酸化酶的影响首先显现出来,可能在夏季之前就无法检测到海洋酸化作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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