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Uptake of Dissolved Organic Carbon by Gammaproteobacterial Subgroups in Coastal Waters of the West Antarctic Peninsula

机译:南极西部半岛沿海水域的γ-变形细菌亚组对溶解有机碳的吸收

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Heterotrophic bacteria are well known to be key players in the turnover of dissolved organic material (DOM) in the oceans, but the relationship between DOM uptake and bacterial clades is still not well understood. Here we explore the turnover and single-cell use of glucose, an amino acid mixture, N -acetylglucosamine (NAG), and protein by gammaproteobacterial clades in coastal waters of the West Antarctic Peninsula in summer and fall. More than 60% of the cells within two closely related gammaproteobacterial clades, Ant4D3 and Arctic96B-16, were active in using the amino acid mixture, protein, and NAG. In contrast, an average of only 7% of all SAR86 cells used amino acids and protein even in summer when DOM use was high. In addition to DOM uptake within a group, we explored the contribution of the three gammaproteobacterial groups to total community uptake of a compound. SAR86 contributed 5- to 10-fold less than the other gammaproteobacterial subgroups to the uptake of all compounds. We found that the overall contribution of the Ant4D3 clade to DOM uptake was highest, whereas the SAR86 clade contributed the least to DOM turnover in West Antarctic Peninsula waters. Our results suggest that the low growth activity of a bacterial clade leads to low abundance, fewer active cells and a low contribution to the turnover of DOM components.
机译:众所周知,异养细菌是海洋中溶解性有机物质(DOM)转换的关键参与者,但对DOM摄取与细菌进化枝之间的关系仍然知之甚少。在这里,我们探讨了夏季和秋季,南极半岛西部沿海水域的γ-变形细菌进化支配的葡萄糖,氨基酸混合物,N-乙酰氨基葡萄糖(NAG)和蛋白质的周转率和单细胞使用情况。使用氨基酸混合物,蛋白质和NAG,两个紧密相关的γ-变形细菌分支(Ant4D3和Arctic96B-16)中有60%以上的细胞活跃。相反,即使在夏季DOM使用率很高的情况下,平均也只有7%的SAR86细胞使用氨基酸和蛋白质。除了组内的DOM吸收外,我们还探索了三个γ-变形细菌组对化合物总体群落吸收的贡献。 SAR86对所有化合物的吸收比其他γ-变形细菌亚组少5至10倍。我们发现,Ant4D3进化枝对DOM吸收的总体贡献最高,而SAR86进化枝对南极半岛西部水域DOM转化的贡献最小。我们的结果表明,细菌进化枝的低生长活性导致低丰度,较少的活性细胞和对DOM组分的转化的低贡献。

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