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美国东南部的酸化:成因、潜在后果以及东南海洋与海岸酸化网络的作用

Acidification in the U.S. Southeast: Causes, Potential Consequences and the Role of the Southeast Ocean and Coastal Acidification Network.

作者信息

Hall Emily R, Wickes Leslie, Burnett Louis E, Scott Geoffrey I, Hernandez Debra, Yates Kimberly K, Barbero Leticia, Reimer Janet J, Baalousha Mohammed, Mintz Jennifer, Cai Wei-Jun, Craig J Kevin, DeVoe M Richard, Fisher William S, Hathaway Terri K, Jewett Elizabeth B, Johnson Zackary, Keener Paula, Mordecai Rua S, Noakes Scott, Phillips Charlie, Sandifer Paul A, Schnetzer Astrid, Styron Jay

机构信息

Mote Marine Laboratory, Sarasota, FL, United States.

Thrive Blue Consulting, Charleston, SC, United States.

出版信息

Front Mar Sci. 2020 Jul 10;7:1-548. doi: 10.3389/fmars.2020.00548.

Abstract

Coastal acidification in southeastern U.S. estuaries and coastal waters is influenced by biological activity, run-off from the land, and increasing carbon dioxide in the atmosphere. Acidification can negatively impact coastal resources such as shellfish, finfish, and coral reefs, and the communities that rely on them. Organismal responses for species located in the U.S. Southeast document large negative impacts of acidification, especially in larval stages. For example, the toxicity of pesticides increases under acidified conditions and the combination of acidification and low oxygen has profoundly negative influences on genes regulating oxygen consumption. In corals, the rate of calcification decreases with acidification and processes such as wound recovery, reproduction, and recruitment are negatively impacted. Minimizing the changes in global ocean chemistry will ultimately depend on the reduction of carbon dioxide emissions, but adaptation to these changes and mitigation of the local stressors that exacerbate global acidification can be addressed locally. The evolution of our knowledge of acidification, from basic understanding of the problem to the emergence of applied research and monitoring, has been facilitated by the development of regional Coastal Acidification Networks (CANs) across the United States. This synthesis is a product of the Southeast Coastal and Ocean Acidification Network (SOCAN). SOCAN was established to better understand acidification in the coastal waters of the U.S. Southeast and to foster communication among scientists, resource managers, businesses, and governments in the region. Here we review acidification issues in the U.S. Southeast, including the regional mechanisms of acidification and their potential impacts on biological resources and coastal communities. We recommend research and monitoring priorities and discuss the role SOCAN has in advancing acidification research and mitigation of and adaptation to these changes.

摘要

美国东南部河口和沿海水域的海岸酸化受到生物活动、陆地径流以及大气中二氧化碳增加的影响。酸化会对贝类、有鳍鱼类和珊瑚礁等沿海资源以及依赖这些资源的群落产生负面影响。美国东南部物种的生物体反应表明酸化具有巨大的负面影响,尤其是在幼体阶段。例如,在酸化条件下农药的毒性会增加,酸化和低氧的共同作用对调节氧气消耗的基因有深远的负面影响。在珊瑚中,钙化速率会随着酸化而降低,伤口愈合、繁殖和补充等过程也会受到负面影响。尽量减少全球海洋化学变化最终将取决于减少二氧化碳排放,但适应这些变化以及缓解加剧全球酸化的局部压力源可以在当地解决。美国各地区域海岸酸化网络(CANs)的发展推动了我们对酸化的认识从对问题的基本理解到应用研究和监测的出现。本综述是东南海岸和海洋酸化网络(SOCAN)的成果。SOCAN的设立是为了更好地了解美国东南部沿海水域的酸化情况,并促进该地区科学家、资源管理者、企业和政府之间的交流。在此,我们综述美国东南部的酸化问题,包括酸化的区域机制及其对生物资源和沿海社区的潜在影响。我们推荐研究和监测重点,并讨论SOCAN在推进酸化研究以及缓解和适应这些变化方面所起的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0899/7424514/849960ca133b/nihms-1611590-f0001.jpg

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