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Effects of climate changes on the microbial activities and prokaryotic abundances in the euphotic layer of the Central Mediterranean Sea

机译:气候变化对中央地中海欧二文体的微生物活动和原核丰度的影响

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Prokaryotic microorganisms are at the base of marine food web and are sensitive to climate changes. In the Mediterranean Sea, an important link between surface water warming and microbial activities is hypothesized to exist on a seasonal and inter-annual scale, with high amounts of organic matter utilized by prokaryotes and recycled in warm periods. To test this hypothesis, from 1998 to 2013, the prokaryotic abundance and microbial activities (enzymatic activities, prokaryotic heterotrophic production, and respiration), together with trophic parameters (chlorophyll, particulate organic carbon, and nitrogen), were measured in the euphotic layer of the Ionian Sea (Central Mediterranean). A statistical simultaneous analysis of the environmental and prokaryotic data was performed with the aim of depicting the evolution of microbial activities and their implications in the biogeochemical cycles. Results showed that despite the large spatial and temporal variability, temperature was the main factor affecting the variability of microbial abundance and metabolism with significant differences on both seasonal and inter-annual scales. Particularly interesting is the increase of production in summer and of the respiration in winter. In spite of low levels of chlorophyll and organic carbon, an increase of prokaryotic heterotrophic production, coupled with that of alkaline phosphatase, was found. As a consequence, the increase of prokaryotic biomass was bottom-up sustained. Most of prokaryotic activities and respiration rates were significantly correlated to organic carbon pools; the process of organic matter decomposition was frequently enhanced at higher temperature, and both prokaryotic production and growth efficiency increased in summer. In view of climate changes, the rise in temperature was associated to the increase of heterotrophic activities and this trend can have a predictive value to describe the microbial processes in the Central Mediterranean Sea.
机译:原核微生物在海洋食品网的基础上,对气候变化敏感。在地中海,表面水温和微生物活动之间的一个重要联系被假设为季节性和年间规模存在,用原核生物利用的有机物高量的有机物,并在温暖的时期中再循环。从1998年到2013年开始,在Euphotic层中测量原核丰富和微生物和微生物活性(酶活性,原核异养,呼吸),以及营养参数(叶绿素,颗粒化有机碳和氮气)。爱奥尼亚海(中美洲地中海)。对环境和原核数据的统计同时分析是针对微生物活性的演变及其在生物地良细胞循环中的影响的目的进行。结果表明,尽管存在大的空间和时间变异性,但温度是影响微生物丰度和代谢变异性的主要因素,而季节性和年间尺度的显着差异。特别是有趣的是夏季和冬季呼吸生产的增加。尽管有低水平的叶绿素和有机碳,但发现了原核异养生产的增加,与碱性磷酸酶的原核异养生产增加。结果,原核生物量的增加是自下而上的持续性。大多数原核活动和呼吸率与有机碳池有明显相关;在较高温度下经常增强有机质分解的过程,夏季原发性生产和生长效率增加。鉴于气候变化,温度升高与异养活动的增加有关,这种趋势可以具有描述中部地中海中的微生物过程的预测价值。

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