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世界珊瑚礁 1985-2012 年的变暖趋势和漂白压力。

Warming Trends and Bleaching Stress of the World's Coral Reefs 1985-2012.

机构信息

NOAA Coral Reef Watch, NESDIS Center for Satellite Applications and Research, 5830 University Research Ct., E/RA3, College Park, MD 20740, USA.

Global Science and Technology, Inc., Greenbelt, MD 20770, USA.

出版信息

Sci Rep. 2016 Dec 6;6:38402. doi: 10.1038/srep38402.

Abstract

Coral reefs across the world's oceans are in the midst of the longest bleaching event on record (from 2014 to at least 2016). As many of the world's reefs are remote, there is limited information on how past thermal conditions have influenced reef composition and current stress responses. Using satellite temperature data for 1985-2012, the analysis we present is the first to quantify, for global reef locations, spatial variations in warming trends, thermal stress events and temperature variability at reef-scale (~4 km). Among over 60,000 reef pixels globally, 97% show positive SST trends during the study period with 60% warming significantly. Annual trends exceeded summertime trends at most locations. This indicates that the period of summer-like temperatures has become longer through the record, with a corresponding shortening of the 'winter' reprieve from warm temperatures. The frequency of bleaching-level thermal stress increased three-fold between 1985-91 and 2006-12 - a trend climate model projections suggest will continue. The thermal history data products developed enable needed studies relating thermal history to bleaching resistance and community composition. Such analyses can help identify reefs more resilient to thermal stress.

摘要

全球海洋中的珊瑚礁正处于有记录以来最长的白化事件之中(从 2014 年至少持续到 2016 年)。由于世界上许多珊瑚礁都很偏远,关于过去的热条件如何影响珊瑚礁的组成和当前的压力反应,我们所掌握的信息有限。利用 1985-2012 年的卫星温度数据,我们的分析首次定量评估了全球珊瑚礁位置的变暖趋势、热应力事件和温度变化在珊瑚礁尺度(~4 公里)上的空间变化。在全球超过 60,000 个珊瑚礁像素中,97%在研究期间表现出正的 SST 趋势,其中 60%显著变暖。大多数地方的年趋势超过了夏季趋势。这表明,在记录中,类似夏季的温度期变得更长,而温暖期的“冬季”缓解期相应缩短。在 1985-91 年和 2006-12 年之间,白化级别的热应力频率增加了两倍——气候模型预测的这一趋势将继续下去。所开发的热历史数据产品使我们能够进行将热历史与抗白化能力和群落组成联系起来的相关研究。此类分析有助于识别对热应激更具弹性的珊瑚礁。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fb6/5138844/bc99e169e936/srep38402-f1.jpg

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