...
首页> 外文期刊>Frontiers in Marine Science >Experimental assessment of cumulative temperature and UV-B radiation effects on Mediterranean plankton metabolism
【24h】

Experimental assessment of cumulative temperature and UV-B radiation effects on Mediterranean plankton metabolism

机译:累积温度和UV-B辐射对地中海浮游生物代谢影响的实验评估

获取原文
           

摘要

The Mediterranean Sea is a vulnerable region for climate change, warming at higher rates compare to the global ocean. Warming leads to increased stratification of the water column and enhanced the oligotrophic nature of the Mediterranean Sea. The oligotrophic waters are already highly transparent, however, exposure of Mediterranean plankton to ultraviolet radiation (UV-B and UV-A) may increase further if the waters become more oligotrophic, thereby, allowing a deeper UV radiation penetration and likely enhancing impacts to biota. Here we experimentally elucidate the cumulative effects of warming and natural UV-B radiation on the net community production (NCP) of plankton communities. We conducted five experiments at monthly intervals, from June to October 2013, and evaluated the responses of NCP to ambient UV-B radiation and warming (+3oC), alone and in combination, in a coastal area of the northwest Mediterranean Sea. UV-B radiation and warming lead to reduced net community production and resulted in a heterotrophic (NCP<0) metabolic balance. Both UV-B radiation and temperature, showed a significant individual effect in NCP across treatments and time. However, their joint effect showed to be synergistic as the interaction between them (UV x Temp) was statistically significant in most of the experiments performed. Our results showed that both drivers, would affect the gas exchange of CO2-O2 from and to the atmosphere and the role of plankton communities in the Mediterranean carbon cycle.
机译:地中海是气候变化的脆弱地区,与全球海洋相比,升温速度更快。变暖导致水柱分层增加,并增强了地中海的贫营养性。贫营养水已经是高度透明的,但是,如果水变得更富营养,地中海浮游生物在紫外线(UV-B和UV-A)的照射下可能会进一步增加,从而允许更深的紫外线辐射渗透并可能增强对生物群的影响。在这里,我们通过实验阐明了变暖和自然UV-B辐射对浮游生物群落净群落生产(NCP)的累积影响。从2013年6月至2013年10月,我们每月进行5次实验,并评估了NCP在西北地中海沿岸地区单独或组合对环境UV-B辐射和变暖(+ 3oC)的响应。 UV-B辐射和变暖导致净社区产量减少,并导致异养(NCP <0)代谢平衡。 UV-B辐射和温度在整个治疗过程和时间中均显示出NCP的显着个体效应。但是,它们的联合效应显示出协同作用,因为它们之间的相互作用(UV x Temp)在大多数执行的实验中具有统计学意义。我们的研究结果表明,这两个驱动因素都会影响到大气中的CO2-O2气体交换以及浮游生物在地中海碳循环中的作用。

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