首页> 外文期刊>Scientific reports. >Heatwaves?diminish the survival of a subtidal gastropod through reduction in energy budget and depletion of energy reserves
【24h】

Heatwaves?diminish the survival of a subtidal gastropod through reduction in energy budget and depletion of energy reserves

机译:热波通过减少能量预算和消耗能量储备来减少潮下腹足动物的生存

获取原文
           

摘要

Extreme climatic events, such as heatwaves, are predicted to be more prevalent in future due to global climate change. The devastating impacts of heatwaves on the survival of marine organisms may be further intensified by ocean acidification. Here, we tested the hypothesis that prolonged exposure to heatwave temperatures (24?°C, +3?°C summer seawater temperature) would diminish energy budget, body condition and ultimately survival of a subtidal gastropod (Thalotia conica) by pushing close to its critical thermal maximum (CTmax). We also tested whether ocean acidification (pCO2: 1000 ppm) affects energy budget, CTmax and hence survival of this gastropod. Following the 8-week experimental period, mortality was markedly higher at 24?°C irrespective of pCO2 level, probably attributed to energy deficit (negative scope for growth) and concomitant depletion of energy reserves (reduced organ weight to flesh weight ratio). CTmax of T. conica appeared at 27?°C and was unaffected by ocean acidification. Our findings imply that prolonged exposure to heatwaves can compromise the survival of marine organisms below CTmax via disruption in energy homeostasis, which possibly explains their mass mortality in the past heatwave events. Therefore, heatwaves would have more profound effects than ocean acidification on future marine ecosystems.
机译:由于全球气候变化,预计诸如热浪之类的极端气候事件在未来会更加普遍。海洋酸化可能会进一步加剧热浪对海洋生物生存的破坏性影响。在这里,我们测试了这样一个假设:长时间暴露于热浪温度(24°C,+ 3°C夏季海水温度),将其推至接近其温度,会降低能量预算,身体状况,并最终降低潮下腹足动物(Thalotia conica)的生存。临界热最大值(CTmax)。我们还测试了海洋酸化(pCO2:1000 ppm)是否会影响能量收支,CTmax以及由此腹足动物的生存。经过8周的试验期后,无论pCO2水平如何,死亡率都在24°C时显着升高,这可能归因于能量缺乏(生长的负范围)和伴随的能量储备耗竭(器官重量与肉重的比例降低)。圆锥锥虫的CTmax出现在27℃,不受海洋酸化的影响。我们的发现表明,长时间暴露在热浪中会破坏能量稳态,从而破坏CTmax以下海洋生物的生存,这可能解释了它们在过去热浪事件中的大量死亡。因此,热浪将对未来的海洋生态系统产生比海洋酸化更大的影响。

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