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首页> 外文期刊>Frontiers in Marine Science >Bacterial response to permafrost derived organic matter input in an Arctic fjord
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Bacterial response to permafrost derived organic matter input in an Arctic fjord

机译:北极峡湾中多年冻土来源有机物的细菌响应

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The warming of the Arctic causes increased riverine discharge, coastal erosion, and the thawing of permafrost. Together, this is leading to an increased wash out of terrestrial dissolved organic matter (tDOM) into the coastal Arctic ecosystems. This tDOM may be anticipated to affect both carbon and nutrient flow in the microbial food web and microbial community composition, but there are few studies detailing this in Arctic marine ecosystems. We tested the effects of tDOM on the bacterial community composition and net-growth by extracting DOM from the active layer of permafrost soil and adding the aged tDOM concentrate to a natural microbial fjord community (Kongsfjorden, NW Svalbard). This resulted in an increased carbon load of 128 μM in the tDOM treatment relative to the control of 83 μM DOC. We observed changes in community composition and activity in incubations already within 12 hours where tDOM was added. Flow cytometry revealed that predominantly large bacteria increased in the tDOM treated incubations. The increase of this group correlated with the increase in relative abundance of the genus Glaciecola (Gammaproteobacteria). Glaciecola were initially not abundant in the bacterial community (0.6%), but their subsequent increase up to 47% after four days upon tDOM addition compared to 8% in control incubations indicates that they are likely capable of degrading permafrost derived DOM. Further, according to our experimental results we hypothesize that the tDOM addition increased bacterivorous grazing by small protists and thus tDOM might indirectly also effect higher trophic levels of the microbial food web.
机译:北极的变暖导致河流排放增加,沿海侵蚀和多年冻土融化。总之,这导致越来越多的陆地溶解有机物(tDOM)被冲刷到沿海北极生态系统中。该tDOM可能会影响微生物食物网中的碳和养分流以及微生物群落组成,但是在北极海洋生态系统中很少有研究对此进行详细介绍。我们通过从永冻土的活性层中提取DOM并将老化的tDOM浓缩物添加到天然微生物峡湾社区(Kongsfjorden,NW Svalbard)中,测试了tDOM对细菌群落组成和净增长的影响。相对于83μMDOC的对照,tDOM处理中的碳负荷增加了128μM。我们观察到在添加tDOM的12小时内,孵化中社区组成和活动的变化。流式细胞仪显示,在tDOM处理的培养中,主要是大细菌增加。该组的增加与Glaciecola(Gammaproteobacteria)属的相对丰度增加相关。 Glaciecola最初在细菌群落中并不丰富(0.6%),但是在添加tDOM后四天,它们的随后增加高达47%,而对照培养中则为8%,表明它们很可能能够降解多年冻土产生的DOM。此外,根据我们的实验结果,我们假设添加tDOM会增加小原生生物的细菌性放牧,因此tDOM可能也间接影响了微生物食物网的较高营养水平。

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