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首页> 外文期刊>Marine ecology progress series >Heme b in marine phytoplankton and particulate material from the North Atlantic Ocean
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Heme b in marine phytoplankton and particulate material from the North Atlantic Ocean

机译:北大西洋海洋浮游植物中的血红素b和颗粒物质

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ABSTRACT: Concentrations of heme b, the iron-containing prosthetic group of many hemoproteins, were measured in 6 species of marine phytoplankton (Dunaliella tertiolecta, Emiliania huxleyi, Thalassiosira weissflogii, T. oceanica, Phaeodactylum tricornutum and Synechococcus sp. WH7803) that were subjected to variations in iron concentration. Changes in heme b in response to reduced light and nitrate were also examined for E. huxleyi and T. oceanica. Results from laboratory cultures were compared with heme b determined in particulate material in the North Atlantic. In cultures, heme b made up 18 ± 14% (SE) of the total iron pool. Reduced iron and nitrate concentrations resulted in a decreased intracellular heme b concentration, expressed as per mole carbon. Chlorophyll a (chl a) to heme b ratios in E. huxleyi and D. tertiolecta increased in response to limited light and nutrient availability, but slightly decreased or did not change in the diatoms and the cyanophyte Synechococcus sp. WH7803. The heme b:particulate organic carbon (POC) and chl a:heme b ratios in the North Atlantic were within the range observed in phytoplankton cultures. In the surface mixed layer, decreases in heme b:POC ratios were linked to decreases in nutrient concentrations. Chl a:heme b ratios increased with depth and were thus primarily affected by light availability. Relative relationships between heme b, chl a and POC in the North Atlantic likely represented a change in the ability of cells to undertake cellular processes driven by chl a (light harvesting) and heme b (e.g. electron transport) according to ambient light and nutrient conditions.
机译:摘要:测定了6种海洋浮游植物( Emiliania huxleyi i>, Thalassiosira weissflogii , T。oceanica , Phaeodactylum tricornutum 和 Synechococcus sp。WH7803)铁浓度的变化。还检查了 E对血红素和硝酸盐减少引起的血红素 b 的变化。 huxleyi 和 T。大洋洲。将实验室培养的结果与在北大西洋的颗粒物质中测定的血红素 b 进行了比较。在文化中,血红素 b 占总铁库的18±14%(SE)。铁和硝酸盐浓度降低导致细胞内血红素 b 浓度降低,以每摩尔碳表示。叶绿素 a (chl a )与血红素 b 的比率。 huxleyi 和 D。在有限的光照和养分供应情况下,tertiolecta 会增加,但硅藻和蓝藻的硅藻却略有下降或没有变化。 WH7803。北大西洋的血红素 b :颗粒有机碳(POC)和chl a :血红素 b 的比率在浮游植物培养中观察到的范围内。在表面混合层中,血红素 b :POC比值的降低与营养物浓度的降低有关。 Chl a :血红素 b 的比率随深度增加而增加,因此主要受光的可用性影响。北大西洋血红素 b ,chl a 和POC之间的相对关系很可能代表了细胞进行由chl a驱动的细胞过程的能力的变化(光收集)和血红素 b (例如电子传输)根据环境光和营养条件而定。

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