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首页> 外文期刊>European Journal of Phycology >Kinetics of beta-N-methylamino-L-alanine (BMAA) and 2, 4-diaminobutyric acid (DAB) production by diatoms: the effect of nitrogen
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Kinetics of beta-N-methylamino-L-alanine (BMAA) and 2, 4-diaminobutyric acid (DAB) production by diatoms: the effect of nitrogen

机译:β-甲基氨基-L-丙氨酸(BMAA)和2,4-二氨基丁酸(DAB)产生的动力学通过硅藻:氮气的作用

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摘要

The neurotoxins beta-N-methylamino-L-alanine (BMAA) and 2,4-diaminobutyric acid (DAB) are produced by cyanobacteria, diatoms and dinoflagellates and have been detected in seafood worldwide. Our present knowledge of their metabolism or biosynthesis is limited. In this study, the production of BMAA and DAB as a function of time was monitored in five strains representing four species of diatoms, i.e. Phaeodactylum tricornutum, Thalassiosira weissflogii, Thalassiosira pseudonana and Navicula pelliculosa, previously identified as BMAA and DAB producers. Subsequently, three strains were selected and exposed to three nitrogen treatments - starvation, control (the standard concentration in f/2 medium) and enrichment, because BMAA metabolism has been suggested to be closely associated with cellular nitrogen metabolism in both cyanobacteria and diatoms. Chlorophyll a and total protein concentrations were also determined. Our results indicate that BMAA and DAB production in diatoms is species- and strain-specific. However, production might also be affected by stress, particularly as related to nitrogen starvation and cell density. Furthermore, this study shows a significant correlation between the production of the two neurotoxins which might further suggest common steps in the metabolic pathways.
机译:神经毒素β-N-甲基氨基-1-丙氨酸(BMAA)和2,4-二氨基丁酸(DAB)由蓝藻,硅藻和丁曲素生成,并在全球海鲜中检测到。我们对他们的新陈代谢或生物合成的了解是有限的。在该研究中,在代表四种硅藻的五种菌株中监测Bmaa和Dab的函数的产生,即Phaeodactylum Tricornutum,Thalassiosira Weissflogii,Thalassiosira pseudonana和Navicula Pelliculosa,以前被鉴定为BMAA和DAB生产者。随后,选择三种菌株并暴露于三种氮气处理 - 饥饿,对照(F / 2培养基中的标准浓度)和富集,因为已经提出BMAA代谢与蓝细菌和硅藻中的细胞氮代谢密切相关。还测定叶绿素A和总蛋白质浓度。我们的结果表明,硅藻中BMAA和DAB产生是物种和应变特异性的。然而,生产可能也受到应激的影响,特别是与氮饥饿和细胞密度有关。此外,该研究表明,两种神经毒素的生产之间的显着相关性,这可能进一步提示代谢途径中的常见步骤。

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