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Assessing the ecological importance of climate regime shifts: An approach from the North Pacific Ocean

机译:评估气候变化对生态的重要性:北太平洋的一种方法

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We used an indicator approach to address outstanding questions concerning the ecological importance of low-frequency climate variability in the northeast Pacific Ocean. Our data consist of a previously-published set of 33 climate and 64 biology time series, updated by us for the years 1965-2011 (for climate data) and 1965-2008 (for biology data). A model-selection approach showed that the first axis of variability in large-scale climate indices (PC1_(ci)), the first and second axes for local climate parameters (PC1_(cp) and PC2_(cp)) and the second axis for biological variability (PC2_(biol)) all showed temporal variability best described by abrupt shifts. In contrast, PC1_(biol) showed gradual, rather than abrupt, temporal variability, suggesting that the leading axis of biological variability was not dominated by abrupt transitions following climate regime shifts. The leading mode of variability in detrended North Pacific sea surface temperature, the Pacific Decadal Oscillation, showed reduced amplitude from the late 1980s until the mid-2000s, and we found that this change in PDO behavior was associated with a decline in the strength of the leading pattern of basin-scale biological variability (PC1_(biol)). A reversion to a PDO-negative state in the winter of 2007/08 was associated with the largest observed annual change in the PC1_(bio)-PC2_(bio) phase space, suggesting renewed ecological importance of the PDO. However, a subset of biology time series (n = 23) for which more recent data were available did not show persistent change in PC1_(bio) or PC2_(bio) during 2008-2011, thus failing to support the hypothesis of widespread ecological response to the putative 2007/08 shift'. To further assess the possible ecological importance of low-frequency climate variability in recent years, we compared changes in the PDO-North Pacific Gyre Oscillation (NPGO) phase space for 2007/08 with ecologically important (1976/77) and less important (1988/89) climate regime shifts of the past. We found that all three shifts involved PDO-NPGO variability of similar magnitude (i.e., similar pulse disturbances), but that the 1976/77 shift was followed by a period of stability in a new climate state (i.e., strong press disturbance), while the 1988/89 shift was not followed by a period of stability (weak press disturbance). Data through 2013 suggest that the press disturbance following 2007/08 is similar to that following 1976/77, implying that the putative 2007/08 shift may eventually prove to be ecologically important. Our "pulse-press" approach provides a formal framework for distinguishing transient and persistent climate perturbations at the ends of time series.
机译:我们使用一种指标方法来解决有关东北太平洋低频气候变化的生态重要性的悬而未决的问题。我们的数据包含先前发布的一组33个气候和64个生物学时间序列,由我们在1965-2011年(对于气候数据)和1965-2008年(对于生物学数据)进行了更新。一种模型选择方法表明,大规模气候指数(PC1_(ci))的第一个变化轴,局部气候参数(PC1_(cp)和PC2_(cp))的第一个和第二个轴,以及生物变异性(PC2_(biol))都显示出时间变异性,用突变可以很好地描述。相反,PC1_(biol)表现出逐渐而不是突然的时间变异性,表明生物学变异性的主导轴并不受气候制度转变后的突然转变所支配。趋势下降的北太平洋海表温度的主导变化模式,太平洋年代际振荡,从1980年代后期到2000年代中期显示出减小的振幅,并且我们发现PDO行为的这种变化与强度的下降有关。流域规模生物变异(PC1_(biol))的主导模式。在2007/08年冬季恢复到PDO阴性状态与PC1_(bio)-PC2_(bio)相空间中观察到的最大年度变化有关,这表明PDO具有新的生态重要性。但是,可获得最新数据的生物学时间序列的一个子集(n = 23)在2008-2011年期间未显示PC1_(bio)或PC2_(bio)的持续变化,因此无法支持广泛的生态反应假说。到假定的2007/08年转变”。为了进一步评估近年来低频气候变化的可能的生态重要性,我们将PDO-北太平洋涡旋振荡(NPGO)相空间在2007/08年的变化与具有生态重要性(1976/77)和次要(1988)进行了比较。 / 89)过去的气候体制转变。我们发现,所有三个变化都涉及相似幅度(即相似的脉冲扰动)的PDO-NPGO变异性,但是在1976/77年变化之后是在新的气候状态下保持稳定的一段时间(即强烈的压榨扰动),而1988/89年的转变没有一段稳定的时期(压机干扰较小)。截至2013年的数据表明,2007/08年之后的新闻扰动与1976/77年之后的新闻扰动相似,这意味着推定的2007/08年转变可能最终被证明具有生态重要性。我们的“脉冲按压”方法提供了一个正式的框架,用于区分时间序列结束时的短暂和持续性气候扰动。

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  • 来源
    《Progress in Oceanography》 |2014年第1期|110-119|共10页
  • 作者单位

    Blue World Research, 2710 E. 20th Ave., Anchorage, AK 99508, USA,Institute for Marine and Antarctic Studies, University of Tasmania, Private Bag 129, Hobart, TAS 7001, Australia;

    School of Fisheries and Ocean Sciences, University of Alaska Fairbanks, 17101 Pt. Lena Loop Rd.Juneau, AK99801, USA;

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