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首页> 外文期刊>Journal of plankton research >Domoic acid production and elemental composition of two Pseudo-nitzschia multiseries strains, from the NW and SW Atlantic Ocean, growing in phosphorusor nitrogen-limited chemostat cultures
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Domoic acid production and elemental composition of two Pseudo-nitzschia multiseries strains, from the NW and SW Atlantic Ocean, growing in phosphorusor nitrogen-limited chemostat cultures

机译:来自西北太平洋和西南大西洋的两种假尼兹菌多系列菌株的海藻酸产量和元素组成,在磷或氮限制的化学恒温培养物中生长

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摘要

Here we compare cell physiology and domoic acid (DA) production for two strains of the diatom Pseudo-nitzschia multiseries originating from two opposite latitudes: Canada (CA) and Brazil (BR). The algae were grown as chemostat cultures at 0.2, 0.3 and 0.4 day~(-1) under nitrogen (N)- and phosphorus (P)-deficient conditions. The level of deficiency significantly affected the atomic C:N, C:P, C:Si and N:P ratios in both strains. In both strains, P per cell was 2-4× higher in the N- than in the P-deficient cultures. The opposite was not found for N in the P-deficient cultures, as shown by the N:P ratios and C:N ratios. The C:N and C:P ratios were significantly lower in the CA strain, and this did not change due to the level of deficiency. The concentration and production of DA per cell per day were significantly higher for both strains under P deficiency as expected since the toxin is rich in N. However, DA was also produced by both strains during continuous cell division under N deficiency. High or low bacterial densities associated with P. multiseries did not increase or decrease DA production. Our data imply that more attention needs to be given to the N:P ratios and concentrations in the waters where these algae occur, as both N and P deficiencies affect DA production and cellular DA concentrations.
机译:在这里,我们比较了来自两个相反纬度的两个硅藻假丝-尼茨菌多系列菌株的细胞生理学和产氢酸(DA)的产生:加拿大(CA)和巴西(BR)。在缺氮(N)和缺磷(P)的条件下,藻类在0.2、0.3和0.4天〜(-1)时作为恒化培养物生长。缺乏水平显着影响两种菌株中的原子C:N,C:P,C:Si和N:P比。在这两种菌株中,N细胞中每个细胞的P比缺磷培养物中的P高2-4倍。如N:P比和C:N比所示,在缺磷的培养物中未发现N的相反情况。在CA菌株中,C:N和C:P的比例明显较低,并且由于缺乏水平而没有改变。由于毒素富含N,这两种菌株在P缺乏条件下每细胞每天DA的浓度和产量均显着较高。但是,这两种菌株在N缺乏条件下连续细胞分裂过程中也产生了DA。与多系列疟原虫相关的细菌密度高或低并没有增加或减少DA的产生。我们的数据表明,由于藻类中N和P的缺乏都会影响DA的产生和细胞中DA的浓度,因此需要更多关注这些藻类发生的水域中N:P的比例和浓度。

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