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首页> 外文期刊>Journal of plankton research >Nitrogen uptake by size-fractionated plankton in permanently well-mixed temperate coastal waters
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Nitrogen uptake by size-fractionated plankton in permanently well-mixed temperate coastal waters

机译:在永久性良好的温带温带沿海水域中由尺寸分级浮游生物的氮气吸收

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Nitrogen uptake by net- (15-200 mum), nano- (1-15 mum) and picoplankton (<1 mum) was measured over seasonal cycles at two stations with different patterns of biological and chemical cycles in the Morlaix Bay (western English Channel). Though assimilable dissolved N nutrient pool at both stations was nitrate-dominated, characteristics of biomass and N uptake by netplankton differed from conventional patterns in two respects. In the first, biomass (26-30%) and N uptake (36-43%) were less important than those of nanoplankton. In the second, the netplankton did not show any marked preference for nitrate over ammonium (nitrate to ammonium uptake ratios of 0.98 and 1.08). In contrast, nanoplankton had a preference for ammonium over nitrate (ammonium to nitrate uptake ratios of 2 and 1.2). N uptake by picoplankton was only 8% of total N uptake at both stations and was supported mainly by regenerated N (66% ammonium and 17% urea), with nitrate uptake detectable in only one instance and nitrite uptake in none. Substrate-dependent uptake of ammonium in all fractions and a higher ammonium uptake in the nanoplankton fraction in summer at both stations when ambient ammonium concentrations were high indicated that while nitrate may satisfy a part of N requirements, availability of ammonium and its flux through nanoplankton determine the magnitude of total N uptake in these waters. Most of the N uptake in picoplankton appears to be autotrophic, suggesting that a substantial part of heterotrophic uptake, if any, could be localized in the fractions >1 mum, and mediated by free-living and particle-bound bacteria.
机译:通过Net-(15-200毫米),纳米 - (1-15米)和Picollankton(<1妈妈)的氮气吸收在两个站的季节循环中测量,在Morlaix湾(西式英语)的不同生物和化学循环模式渠道)。尽管两个站的可吸收溶解的N营养池是硝酸盐占主导地位的,但NetPlankton的生物质和N吸收的特征在两个方面与常规模式不同。首先,生物量(26-30%)和N吸收(36-43%)比纳米代纳的那些更重要。在第二个中,Netplankton没有显示出硝酸盐上硝酸铵(硝酸铵到0.98和1.08)的任何明显的偏好。相比之下,纳米克洛克顿对硝酸铵(硝酸铵吸收比为2和1.2)的偏好。 N由Picoplankton的吸收仅为两个站的N总吸收的8%,主要由再生N(66%铵和17%尿素)支持,仅在一个案例中可检测到硝酸盐摄取和无亚硝酸盐摄取。当环境铵浓度高表示时,在夏季,在夏季纳米代汞级分中的氨基烯烃依赖于纳米铵馏分的吸收,但硝酸盐可以满足N要求的一部分,铵通过纳米代纳米铵确定这些水中的N总吸收的幅度。 Picollankton的大部分N次摄取似乎是自养的,这表明如果有的话,如果有的话,如果有的话,可以在分数中局部> 1妈妈,并且由自由致命和颗粒结合的细菌介导。

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