首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Evaluation of intracellular and extracellular domoic acid content in Pseudo-nitzschia multiseries cell cultures under different light regimes
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Evaluation of intracellular and extracellular domoic acid content in Pseudo-nitzschia multiseries cell cultures under different light regimes

机译:不同光长下Pseudo-Nitzschia多学细胞培养中细胞内和细胞外甲酸含量的评价

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Pseudo-nitzschia multiseries is a diatom species associated with the production of domoic acid (DA), a water soluble neurotoxin that is easily transferred up in the food web, causing devastating effects on top marine organisms and humans. Despite studies on Pseudo-nitzschia are relevant to human health safety, partitioning of marine toxins between intracellular and extracellular fractions are poorly documented. This study aimed to determine the growth rates and DA content, both intracellular and extracellular, of Pseudo-nitzschia multiseries cultures at three different light settings (15, 120 and 560 mu mol m(-2) S-1). The optimal conditions for cell growth were observed at 120 and 560 mu mol m(-2) s(-1), whereas DA production was observed in P. multiseries at 15 and 120 mu mol m(-2) s(-1), ranging between 0.18-2.56 and 0.16-3.5 pg DA cell(-1), respectively. Higher intracellular DA concentrations were found during the senescence phase at low light intensity and during the exponential phase at medium light intensity, while higher concentrations of dissolved DA were found at low and medium light intensities in the senescence phase reaching 3 and long DA mL(-1) respectively. The amount of toxin released into the culture medium represents the most important fraction ranging between 63 and 98% during the exponential phase and nearly 99% during the senescence phase. In contrast, under low light intensity, dissolved DA was detected in the culture medium only during the senescence phase. This study confirms the importance of light intensity on DA production and clearly shows that dissolved domoic acid is an important fraction in Pseudo-nitzschia cultures, suggesting with the careful assumptions of results from static cultures extrapolated to bloom situations that waterborne exposure of marine organism should be considered during blooms of Pseudo-nitzschia multiseries.
机译:伪奈茨西亚多学员是与大多奇酸(DA)的生产相关的硅藻物种,一种水溶性神经毒素,其易于在食品网中转移,导致对顶级海洋生物和人类的破坏性影响。尽管对伪尼科茨的研究与人体健康安全有关,但细胞内和细胞外级分之间的海洋毒素的分区记录不佳。本研究旨在确定在三种不同光照环境(15,120和560μm(-2)S-1)的伪奈茨的多学用培养物中的生长速率和达肠含量,内部和细胞外。观察到细胞生长的最佳条件在120和560μmM摩尔m(-2)s(-1),而在15至120μmmolm(-2)(-1)的P.多体体中观察到DA生产,分别在0.18-2.56和0.16-3.5 pg da细胞(-1)之间。在低光强度的衰老相和在介质光强度期间在衰老相期间发现较高的细胞内DA浓度,而在衰老相中的衰老相中的低和中光强度下,发现较高浓度的溶解DA在达到3和长DA ML( - 1)分别。释放到培养基中的毒素的量代表指数阶段期间的63至98%之间的最重要的分数,并且在衰老期期间近99%。相反,在低光强度下,仅在衰老相期间在培养基中检测溶解的DA。本研究证实了光强度对DA生产的重要性,并且清楚地表明溶解的大肠酸是伪奈茨西亚培养物中的一个重要组成部分,表明静态培养物的仔细假设外推到盛开的海洋生物体的盛开情况的情况下应该是在伪奈茨西亚多体的盛开期间考虑。

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