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Winter and summer upwelling modes and their biological importance in the California Current Ecosystem

机译:加利福尼亚州当前生态系统中的冬季和夏季上升模式及其生物学重要性

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摘要

Analysis of monthly coastal upwelling intensities revealed two seasonal and biologically relevant upwelling 'modes' in the California Current Ecosystem (CCE). The first mode reflected upwelling during the summer months and was characterized by low-frequency (multidecadal) processes, including significant (P<0.01) linear trends at some latitudes. In contrast, the second mode reflected wintertime upwelling and was defined by higher-frequency variability associated with the North Pacific High and El Nino Southern Oscillation events. These modes were compared with multidecadal time series of splitnose rockfish (Sebastes diploproa) otolith growth, yelloweye rockfish (S. ruberrimus) otolith growth, Chinook salmon (Oncorhynchus tshawytscha) scale growth, and indices of Cassin's auklet (Ptychoramphus aleuticus) and common murre (Uria aalge) reproduction in the central-northern CCE. In redundancy and correlation analyses, salmon growth and Cassin's auklet fledgling success associated with the summer upwelling mode while all other time series associated with the winter upwelling mode, indicating that CCE biology was differentially sensitive to these seasonal upwelling patterns. Thus, upwelling occurred in unrelated seasonal modes with contrasting trends, atmospheric forcing mechanisms, and impacts on the biology of the CCE, underscoring the importance of seasonality when evaluating ecosystem response to climate variability and change.
机译:对每月沿海上升强度的分析揭示了加利福尼亚当前生态系统(CCE)的两种季节性和生物学相关的上升“模式”。第一种模式反映了夏季的上升趋势,其特征是低频(多年代际)过程,包括某些纬度上明显的(P <0.01)线性趋势。相比之下,第二种模式反映了冬季的上升趋势,并由与北太平洋高压和厄尔尼诺南部涛动事件相关的高频变化确定。将这些模式与裂齿石鱼(Sebastes diploproa)耳石生长,黄眼石鱼(S. ruberrimus)耳石生长,奇努克鲑鱼(Oncorhynchus tshawytscha)鳞片生长的多年代时间序列进行比较,并比较卡辛(Cassin)的Auklet(Ptychoramphus aleuticus)和常见鱼的指数。 Uria aalge)在中北部CCE中繁殖。在冗余度和相关性分析中,鲑鱼的生长和卡辛的雏鸟雏形的成功与夏季上升模式有关,而所有其他时间序列与冬季上升模式有关,表明CCE生物学对这些季节性上升模式具有不同的敏感性。因此,上升趋势发生在不相关的季节模式中,具有相反的趋势,大气强迫机制以及对CCE生物学的影响,强调了在评估生态系统对气候变化和变化的响应时季节性的重要性。

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