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Canthaxanthin in recent sediments as an indicator of heterocystous cyanobacteria in coastal waters

机译:近期沉积物中的角黄素可作为沿海水域异型蓝藻细菌的指标

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Summary The mean share of heterocystous cyanobacteria in total chlorophyll- a production in coastal waters, based on cyanobacterial marker carotenoid and chloropigments preserved in recent sediments (0–5 cm, ca 30 years), has been studied in the Gulf of Gdańsk (southern Baltic) and for comparison in the Oslofjord/Drammensfjord (southern Norway). First of all, Baltic cyanobacteria, both from laboratory cultures and field samples, were analysed to select marker heterocysteous cyanobacteria carotenoids for sediments. The pigment relation to diatom percentages of different salinity preferences has been tested, to confirm origin of cyanobacteria. The results indicate that canthaxanthin is the best marker of heterocystous cyanobacteria in the southern Baltic Sea. These filamentous cyanobacteria inflow to the Gulf of Gdańsk from the open sea and their abundance has increased in the last thirty years, in comparison with previous time. In that period they made up ca 4.6% of the total chlorophyll- a production in the Gulf of Gdańsk. The estimate for Oslofjord, at the same assumptions, suggests that heterocystous cyanobacteria occurred there also (up to 5.8% of the total chlorophyll- a production), were of marine origin, but their abundance has decreased during the last thirty years. Such an estimate may be used in environmental modelling and can be applied to other coastal areas, once the marker pigments of the main cyanobacteria species have been identified, and the percentage of total chlorophyll- a produced in a basin, preserved in sediments, has been determined for such area.
机译:总结在格但斯克湾(波罗的海南部),研究了近海沉积物中异型囊藻蓝细菌在平均叶绿素a生产中的平均份额,其基于最近沉积物中(0-5厘米,约30年)保存的蓝细菌标记类胡萝卜素和叶绿素。 ),并在奥斯陆峡湾/德拉门斯峡湾(挪威南部)中进行比较。首先,对实验室培养物和田间样品中的波罗的海蓝藻进行了分析,以选择用于沉积物的标记异囊蓝藻类胡萝卜素。已经测试了颜料与不同盐度偏好的硅藻百分比的关系,以确认蓝细菌的起源。结果表明,角黄素是波罗的海南部杂藻性蓝细菌的最佳标记。在过去的三十年中,与以前相比,这些丝状蓝细菌从公海流入格但斯克湾,其数量增加了。在此期间,它们约占叶绿素总量的4.6%,这是格但斯克海湾的产量。在相同的假设下,对奥斯陆峡湾的估计表明,那里也发生了异囊藻蓝藻(占总叶绿素产量的5.8%),它们是海洋来源的,但是在过去的三十年中它们的丰度有所下降。一旦确定了主要蓝细菌物种的标记色素,并确定了沉积物中保存的盆地中产生的总叶绿素a的百分比,就可以将这种估计用于环境建模,并可以应用于其他沿海地区。确定此类区域。

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