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(亚热带)大西洋中层和深层水域中绿弯菌型SAR202浮游细菌的丰度和活性

Abundance and activity of Chloroflexi-type SAR202 bacterioplankton in the meso- and bathypelagic waters of the (sub)tropical Atlantic.

作者信息

Varela Marta M, van Aken Hendrik M, Herndl Gerhard J

机构信息

Department of Biological Oceanography, NOIZ Royal Netherlands Institute for Sea Research, PO BOX 59, 1790 AB Den Burg, the Netherlands.

出版信息

Environ Microbiol. 2008 Jul;10(7):1903-11. doi: 10.1111/j.1462-2920.2008.01627.x. Epub 2008 Apr 15.

Abstract

The contribution of Chloroflexi-type SAR202 cells to total picoplankton and bacterial abundance and uptake of D- and L-aspartic acids (Asp) was determined in the different meso- and bathypelagic water masses of the (sub)tropical Atlantic (from 35 degrees N to 5 degrees S). Fluorescence in situ hybridization (FISH) revealed that the overall abundance of SAR202 was < or = 1 x 10(3) cells ml(-1) in subsurface waters (100 m layer), increasing in the mesopelagic zone to 3 x 10(3) cells ml(-1) and remaining fairly constant down to 4000 m depth. Overall, the percentage of total picoplankton identified as SAR202 increased from < 1% in subsurface waters to 10-20% in the bathypelagic waters. On average, members of the SAR202 cluster accounted for about 30% of the Bacteria in the bathypelagic waters, whereas in the mesopelagic and subsurface waters, SAR202 cells contributed < 5% to total bacterial abundance. The ratio of D-Asp : L-Asp uptake by the bulk picoplankton community increased from the subsurface layer (D-Asp : L-Asp uptake ratio approximately 0.03) to the deeper layers reaching a ratio of approximately 1 at 4000 m depth. Combining FISH with microautoradiography to determine the proportion of SAR202 cells taking up D-Asp versus L-Asp, we found that approximately 30% of the SAR202 cells were taking up L-Asp throughout the water column while D-Asp was essentially not taken up by SAR202. This D-Asp : L-Asp uptake pattern of SAR202 cells is in contrast to that of the bulk bacterial and crenarchaeal community in the bathypelagic ocean, both sustaining a higher fraction of D-Asp-positive cells than L-Asp-positive cells. Thus, although the Chloroflexi-type SAR202 constitutes a major bathypelagic bacterial cluster, it does not contribute to the large fraction of d-Asp utilizing prokaryotic community in the meso- and bathypelagic waters of the North Atlantic, but rather utilizes preferentially L-amino acids.

摘要

在(亚热带)大西洋不同的中层和深层水团(北纬35度至南纬5度)中,测定了绿弯菌型SAR202细胞对总微微型浮游生物、细菌丰度以及D-和L-天冬氨酸(Asp)摄取的贡献。荧光原位杂交(FISH)显示,在次表层水(100米水层)中,SAR202的总体丰度≤1×10³个细胞/毫升,在中层带增加到3×10³个细胞/毫升,并在4000米深度保持相对稳定。总体而言,被鉴定为SAR202的总微微型浮游生物百分比从次表层水的<1%增加到深层水的10%-20%。平均而言,SAR202类群的成员在深层水中约占细菌的30%,而在中层水和次表层水中,SAR202细胞对细菌总丰度的贡献<5%。整个微微型浮游生物群落对D-Asp:L-Asp的摄取比例从次表层水(D-Asp:L-Asp摄取比例约为0.03)增加到较深层水,在4000米深度达到约1的比例。结合FISH和微放射自显影来确定摄取D-Asp与L-Asp的SAR202细胞比例,我们发现,在整个水柱中,约30%的SAR202细胞摄取L-Asp,而SAR202基本上不摄取D-Asp。SAR202细胞的这种D-Asp:L-Asp摄取模式与深层海洋中的总细菌和泉古菌群落相反,这两个群落中摄取D-Asp的阳性细胞比例均高于摄取L-Asp的阳性细胞。因此,尽管绿弯菌型SAR202构成了一个主要的深层细菌类群,但它对北大西洋中层和深层水中利用D-Asp的原核生物群落的大部分没有贡献,而是优先利用L-氨基酸。

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