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首页> 外文期刊>Aquatic Microbial Ecology >Transparent exopolymer particles (TEP) link phytoplankton and bacterial production in the Gulf of Aqaba
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Transparent exopolymer particles (TEP) link phytoplankton and bacterial production in the Gulf of Aqaba

机译:透明的外聚合物颗粒(TEP)将亚喀巴湾的浮游植物与细菌生产联系起来

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ABSTRACT: Variations in transparent exopolymer particles (TEP), bacterial biomass production (BP) and primary productivity (PP) were followed over 52 h at a deep water station in the Gulf of Aqaba (Eilat, Israel) during the spring, in April 2008. About 20 h after the start of the study, there was a short (~15 h) but intense storm event that probably caused a nutrient pulse and, subsequently, a brief outgrowth of diatoms in the euphotic layer. Concentrations of TEP and BP ranged from 23 to 228 µg gum xanthan equivalents l–1 and from 0.2 to 0.6 µg C l–1 h–1, respectively. Concentrations of TEP and BP were measured in unfiltered and in GF/C (1.2 µm)-prefiltered samples. Most of the TEP (59 ± 21% of total TEP, mean ± SD) were in the smaller (GF/C-filtered) size fraction (0.4–1.2 µm); however, after the crash of the diatom bloom, the majority of TEP were in the 1.2 µm size fraction. In the GF/C-filtered fraction, BP averaged 59 ± 12% and 93 ± 5% of total BP in the upper water column and from 300 m, respectively. Significant correlations were observed between TEP and BP, suggesting that active heterotrophic bacteria may have been associated with these particles. During the 3 d of our study, PP and BP in the euphotic zone averaged 480 and 225 mg C m–2 d–1, respectively, suggesting that about half or more of the primary produced carbon was metabolized by heterotrophic bacteria in the upper water column. Coincident with strong mixing caused by the storm, TEP concentrations decreased in the surface water and increased at depth. We suggest that TEP acted to link carbon flux between the primary producers and heterotrophic bacteria, and that the downward movement of TEP from the upper water layers may be an important process in transferring organic carbon to deeper waters of the Gulf of Aquaba. Sinking TEP could provide not only organic carbon substrates for associated bacteria but also form ‘hot spots’ of elevated microbial metabolism and nutrient cycling throughout the water column.
机译:摘要:在2008年春季,在亚喀巴湾(以色列埃拉特)的一个深水站进行了52个小时以上的透明外聚合物颗粒(TEP),细菌生物量生产(BP)和初级生产力(PP)变化的跟踪。在研究开始约20小时后,发生了短暂的(〜15小时)但强烈的暴风雨事件,可能导致了养分脉动,随后在富营养层中短暂地长出了硅藻。 TEP和BP的浓度范围为23至228 µg胶黄原当量l –1 和0.2至0.6 µg C l –1 h –1 。在未过滤的样品和经GF / C(1.2 µm)预过滤的样品中测量TEP和BP的浓度。大部分TEP(占总TEP的59±21%,平均值±SD)处于较小的尺寸(经GF / C过滤)(0.4-1.2 µm)。但是,在硅藻绽放崩溃后,大多数TEP的尺寸分数均大于1.2 µm。在经GF / C过滤的馏分中,上部水柱和300 m处的BP分别平均占总BP的59±12%和93±5%。在TEP和BP之间观察到显着相关性,表明活性异养细菌可能与这些颗粒有关。在我们研究的3 d内,富营养区的PP和BP分别平均为480和225 mg C m –2 d -1 ,这表明大约一半或更多最初产生的碳中有一半被上层水柱中的异养细菌代谢。与暴风雨引起的强烈混合相吻合,TEP浓度在地表水中下降,在深度处上升。我们认为,TEP起到了联系初级生产者和异养细菌之间的碳通量的作用,并且TEP从上层水层的向下运动可能是将有机碳转移到阿夸巴湾深水中的重要过程。下沉的TEP不仅可以为相关细菌提供有机碳底物,而且还可以形成整个水柱中微生物新陈代谢和养分循环的“热点”。

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