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A review on the effects of environmental conditions on growth and toxin production of Ostreopsis ovata

机译:环境条件对卵形拟南芥生长和毒素产生的影响的综述

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Since the end of the 1990s the occurrence of blooms of the benthic dinoflagellates Ostreopsis spp. is spreading in many tropical and temperate regions worldwide, sometimes causing benthonic biocenosis suffering and occasional human distress. Ostreopsis ovata has been found to produce palytoxin-like compounds, a class of highly potent toxins. As general, the highest abundances of Ostreopsis spp. are recorded during warmer periods characterized by high temperature, salinity, and water column stability. Moreover, as these cells are easily resuspended in the water column, the role of hydrodynamism in the blooms development and decline has been highlighted. The environmental conditions appear, therefore, to be one of the main factors determining the proliferation of these species as testified by several field surveys. Laboratory studies on the effect of environmental parameters on growth and toxicity of O. ovata are rather scarce. With regard to the effects of temperature, culture results indicate that different strains blooming along Italian coasts displayed different optima, in accordance to blooming periods, and that higher toxin levels correlated with best growth conditions. Additionally, in relation to an Adriatic strain, cell growth positively correlated with the increase in salinity, while toxicity was lowest at the highest salinity value (i.e. 40). For the same strain, both nitrogen and phosphorus limitation determined a decrease in cell toxicity showing different behaviour with respect to many other toxic dinoflagellates
机译:自1990年代末以来,底栖鞭毛鞭毛藻(Ostreopsis spp)发生了水华。该病在全球许多热带和温带地区蔓延,有时造成底栖生物疫病之苦,并偶有人类遇难。已发现卵形骨败血病可产生类似于类毒素的化合物,这是一类高度有效的毒素。通常,骨质疏松菌的丰度最高。在以高温,盐度和水柱稳定性为特征的较温暖时期记录的水汽含量。此外,由于这些细胞很容易重悬在水柱中,因此,水动力在水华发展和衰落中的作用已得到强调。因此,环境条件似乎是决定这些物种繁殖的主要因素之一,这已通过几次现场调查证实。有关环境参数对卵形小球藻生长和毒性影响的实验室研究非常少。关于温度的影响,培养结果表明,根据开花时期,沿着意大利海岸开花的不同菌株显示出不同的最佳状态,并且较高的毒素水平与最佳生长条件相关。另外,对于亚得里亚菌株,细胞生长与盐度增加呈正相关,而毒性在最高盐度值(即40)下最低。对于同一菌株,氮和磷的限制决定了细胞毒性的降低,相对于许多其他有毒的鞭毛藻而言,表现出不同的行为

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