Yasuhara Moriaki, Cronin Thomas M, Demenocal Peter B, Okahashi Hisayo, Linsley Braddock K
U.S. Geological Survey, 926A National Center, Reston, VA 20192, USA.
Proc Natl Acad Sci U S A. 2008 Feb 5;105(5):1556-60. doi: 10.1073/pnas.0705486105. Epub 2008 Jan 28.
We investigated the deep-sea fossil record of benthic ostracodes during periods of rapid climate and oceanographic change over the past 20,000 years in a core from intermediate depth in the northwestern Atlantic. Results show that deep-sea benthic community "collapses" occur with faunal turnover of up to 50% during major climatically driven oceanographic changes. Species diversity as measured by the Shannon-Wiener index falls from 3 to as low as 1.6 during these events. Major disruptions in the benthic communities commenced with Heinrich Event 1, the Inter-Allerød Cold Period (IACP: 13.1 ka), the Younger Dryas (YD: 12.9-11.5 ka), and several Holocene Bond events when changes in deep-water circulation occurred. The largest collapse is associated with the YD/IACP and is characterized by an abrupt two-step decrease in both the upper North Atlantic Deep Water assemblage and species diversity at 13.1 ka and at 12.2 ka. The ostracode fauna at this site did not fully recover until approximately 8 ka, with the establishment of Labrador Sea Water ventilation. Ecologically opportunistic slope species prospered during this community collapse. Other abrupt community collapses during the past 20 ka generally correspond to millennial climate events. These results indicate that deep-sea ecosystems are not immune to the effects of rapid climate changes occurring over centuries or less.
我们研究了来自西北大西洋中部深度岩芯中过去20000年气候和海洋学快速变化时期底栖有孔虫的深海化石记录。结果表明,在主要由气候驱动的海洋学变化期间,深海底栖生物群落“崩溃”,动物群更替率高达50%。在这些事件中,用香农-维纳指数衡量的物种多样性从3降至低至1.6。底栖生物群落的重大破坏始于海因里希事件1、阿勒罗德间冰期冷期(IACP:13.1 ka)、新仙女木期(YD:12.9 - 11.5 ka)以及几个全新世邦德事件,当时深水环流发生了变化。最大的崩溃与新仙女木期/阿勒罗德间冰期冷期相关,其特征是在13.1 ka和12.2 ka时,北大西洋上层深水组合和物种多样性突然出现两步下降。直到大约8 ka拉布拉多海水通风建立,该地点的有孔虫动物群才完全恢复。在这个群落崩溃期间,生态机会主义的斜坡物种繁荣起来。过去20 ka期间的其他突然群落崩溃通常与千年气候事件相对应。这些结果表明,深海生态系统无法免受几个世纪或更短时间内快速气候变化的影响。