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Compensatory growth of the bloom-forming dinoflagellate Prorocentrum donghaiense induced by nitrogen stress

机译:氮胁迫诱导东华花草形成鞭毛的补偿生长

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Although the phenomenon of compensatory growth has been documented in some animals and higher plants, little information is available on its manifestation in marine microalgae. We have conducted the first study on the compensatory growth of the red tide causative dinoflagellate Prorocentrum donghaiense after its recovery from different nitrogen concentrations. The results showed that NaNO"3 concentrations of 0 and 7.5mgl^-^1 significantly reduced the growth of P. donghaiense, as compared to 37.5 and 75mgl^-^1. When the microalgal cells were returned to 75mgl^-^1, they exhibited subsequent compensatory growth. The most significant compensatory growth was found in those cells previously experiencing 0mgl^-^1, followed by 7.5mgl^-^1, indicating that compensatory growth depended on the extent of nitrogen stress they had been subjected to. Our results suggest that compensatory growth can be induced in the marine microalga P. donghaiense after its recovery from nitrogen fluctuation, and that this should be taken into consideration in the prevalence of P. donghaiense blooms in coastal waters.
机译:尽管已经在某些动物和高等植物中记录了补偿性生长的现象,但有关其在海洋微藻中的表现的信息很少。我们已经对红潮致病性鞭毛虫东海原虫从不同氮浓度中恢复后的补偿性生长进行了首次研究。结果表明,与37.5和75mgl ^-^ 1相比,NaNO“ 3浓度为0和7.5mgl ^-^ 1显着降低了东海假单胞菌的生长。当微藻细胞恢复到75mgl ^-^ 1时,它们表现出随后的代偿性生长,其中最显着的代偿性生长出现在那些先前经历0mgl ^-^ 1,然后是7.5mgl ^-^ 1的细胞中,这表明代偿性生长取决于它们受到的氮胁迫程度。我们的结果表明,海洋微藻从东海松藻中吸收氮后可以诱导补偿性生长,因此在沿海水域东海松藻的盛行中应考虑到补偿性生长。

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