首页> 外文期刊>Journal of phycology >Akinete Production of Anabaena lemmermannii and A. cylindrica(Cyanophyceae) in Natural Populations of N- and P-limited CoastalMesocosms
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Akinete Production of Anabaena lemmermannii and A. cylindrica(Cyanophyceae) in Natural Populations of N- and P-limited CoastalMesocosms

机译:N-和P-限沿海近郊自然种群自然种群中的淡水鱼腥藻和圆环曲霉的裸藻生产

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A strong biomass increase of two Anabaena species was observed in natural plankton community enclosed into nine large mesocosms (51 m super(3)) and manipulated with mineral nutrients and an organic carbon source during a 3-week period in the coastal Baltic Sea. The water column and settled material from the bottom of the mesocosms were sampled at 2-day intervals. Planktonic populations of Anabaena lemmermannii Richter and A. cylindrica Lemmermann and sedimentation rates of akinetes to the bottom were quantified. Comparing mesocosms with artificially induced nitrogen and phosphorus limitation, we found that during the third week of the experiment, the population size of A. lemmermannii was clearly higher in nitrogen-limited units (by a factor of 2.4), whereas the production rate of akinetes was higher in the phosphorus-limited units (by a factor of 2.5). Input of freshly produced A. lemmermannii akinetes to the benthos was on average 15 x 10 super(6) and 6 x 10 super(6) cells. m super(-2).d super(-1) in the P super(-) and N super(-) limited mesocosms, respectively. Our estimates of specific akinete production rate of A. lemmermannii in P super(-) and N super(-) limited mesocosms revealed an even larger divergence (a factor of 5.5), being on average 2.4 and 0.4 akinetes.10 super(-3) vegetative cells super(-1).d super(-1), respectively. The phosphorus addition effectively reduced akinete production of A. lemmermannii. Differences in the nutrient manipulation had no apparent effect on the biomass and akinete production of A. cylindrica. The akinete production pattern of A. cylindrica revealed a 1-week delay compared with the vegetative population peak, whereas such a delay was not obvious in A. lemmermannii.
机译:在波罗的海沿岸的三周时间内,被封闭在九个大型中观空间(51 m super(3))中的天然浮游生物群落中观察到两个鱼腥藻物种的生物量大量增加,并利用矿物质营养素和有机碳源进行操纵。每隔2天取样一次水柱和从中膜底部沉淀的物质。定量分析了蓝藻鱼腥藻和圆环拟南芥Lemmermann的浮游生物种群和of鱼到底部的沉积速率。将介观膜与人工诱导的氮和磷限制进行比较,我们发现在实验的第三周内,lemmermannii的种群大小在氮限制单位中明显更高(提高了2.4倍),而鱼的生产率在磷限制单位中更高(提高了2.5倍)。新鲜生产的A. lemmermannii akinetes向底栖动物的输入平均为15 x 10 super(6)和6 x 10 super(6)细胞。分别在P个super(-)和N个super(-)受限的介体中包含m super(-2).d super(-1)。我们对在P super(-)和N super(-)有限的介观膜中A. lemmermannii的特定akinete生产率的估计显示出更大的差异(5.5的因子),平均为2.4和0.4akinetes。10super(-3 )营养细胞super(-1).d super(-1)。磷的添加有效地减少了莱姆曼不动杆菌的秋葵产生。在养分操作上的差异对圆环曲霉的生物量和秋葵的产生没有明显影响。与营养种群的高峰相比,圆环曲霉的akinete生产模式显示延迟了1周,而在莱姆曼氏曲霉中这种延迟并不明显。

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