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首页> 外文期刊>Global change biology >Phenological shifts of three interacting zooplankton groups in relation to climate change
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Phenological shifts of three interacting zooplankton groups in relation to climate change

机译:三种相互影响的浮游动物群体的物候变化与气候变化的关系

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Over the past several decades, global warming has been linked to shifts in the distributions and abundances of species. In the southern North Sea, temperatures have increased in the last three decades and this will likely have consequences on the seasonality of marine organisms living in the area. Ctenophores such as Beroe gracilis and Pleurobrachia pileus could be particularly affected by changes in their own phenology and that of their prey, thus causing shifts in ecosystem function. Despite their global relevance and their potentially deleterious effect on the fishing industry, only a few long-term records of ctenophore abundance exist, and most of these records are semiquantitative in nature. Therefore, our knowledge of the influence of environmental factors on their population development is presently very limited. In this study, the long-term abundance dynamics of B. gracilis, P. pileus and their food calanoid copepods were analysed for a highly temporally resolved time series in the German Bight at Helgoland Roads. Special attention was focused on the response of these organisms to climate warming. Bayesian statistics showed that the phenology of the two ctenophores shifted in a step-like mode in the year 1987/1988 to permanent earlier appearances. The seasonal change in the population blooms of P. pileus and B. gracilis correlated remarkably well with a step-like increase in winter and spring sea surface temperatures of the southern North Sea. Possible explanations for the changes observed in these organisms include higher reproductive rates, increased winter survival rates or both. Interannual variations in ctenophore abundances correlated best with the interannual changes in spring temperatures, although the impact of temperature on B. gracilis appeared less pronounced. The changes in copepods abundance were not consistent with changes in P. pileus and B. gracilis. P. pileus showed longer periods of high abundance after the permanent seasonal advancement. These longer periods were correlated with a decline in the average autumn abundance of copepods. Changes in the phenology of these organisms raise the concerns on the declining state of fish stocks, which could potentially be exacerbated by gelatinous zooplankton outbreaks. These conditions may ultimately lead to trophic dead ends by channelling the flow of energy away from higher trophic levels.
机译:在过去的几十年中,全球变暖与物种分布和丰富度的变化有关。在北海南部,近三十年来温度一直在上升,这很可能会对居住在该地区的海洋生物的季节性产生影响。诸如Beroe gracilis和Pleurobrachia的梭状变种可能会受到其物候和猎物物候变化的特别影响,从而引起生态系统功能的变化。尽管它们在全球具有相关性,并且对捕捞业具有潜在的有害影响,但仅存在很少的c鳍丰度的长期记录,并且这些记录中的大多数本质上都是半定量的。因此,我们对环境因素对其人口发展的影响的知识目前非常有限。在这项研究中,分析了B. gracilis,P.puleus及其食物类拟南芥co足类动物的长期丰度动态,以分析在Helgoland Roads的German Bight中的高度时间分辨的时间序列。特别关注的是这些生物对气候变暖的反应。贝叶斯统计表明,这两个特征的物候学在1987/1988年以阶梯状的方式转变为永久的早期出现。 P.pileus和B.gracilis种群花期的季节性变化与北海南部冬季和春季海面温度呈阶梯状上升有着明显的相关性。这些生物中观察到的变化的可能解释包括较高的繁殖率,增加的冬季存活率或两者兼有。尽管温度对细纹芽孢杆菌的影响似乎不那么明显,但ten鳍丰度的年际变化与春季温度的年际变化最相关。 pe足类的丰度变化与P.pilus和B. gracilis的变化不一致。永久性季节发展后,P.pilus显示出较长的高丰度期。这些较长的时期与co足类动物的平均秋季丰度下降相关。这些生物的物候变化会引起人们对鱼类种群数量下降的担忧,而胶状浮游动物的爆发有可能加剧这种情况。这些条件可能通过引导能量流离开较高的营养水平而最终导致营养的死胡同。

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