首页> 外文期刊>Marine Environmental Research >Study of the effect of temperature, irradiance and salinity on growth and yessotoxin production by the dinoflagellate Protoceratium reticulatum in culture by using a kinetic and factorial approach
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Study of the effect of temperature, irradiance and salinity on growth and yessotoxin production by the dinoflagellate Protoceratium reticulatum in culture by using a kinetic and factorial approach

机译:利用动力学和因子分析方法研究温度,辐照度和盐度对网状鞭毛原角藻原球藻生长和产生异毒素的影响

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摘要

A complete first order orthogonal plan was used to optimize the growth and the production of yessotoxin (YTX) by the dinoflagellate Protoceratium reticulatum in culture by controlling salinity, temperature and irradiance. Initially, an approach to the kinetic data of cellular density and YTX production for each one of the experimental design conditions was performed. The P. reticulatum growth and YTX production were fitted to logistical equations and to a first-order kinetic model, respectively. The parameters obtained from this adjustment were used as dependent variables for the formulation of the empirical equations of the factorial design tested. The results showed that in practically all the cases for both, P. reticulatum growth and YTX production, irradiance is the primary independent variable and has a positive effect in the range 50-90 μmol photons m~(-2) s~(-1). Additionally, in certain specific cases, temperature reveals significant positive effects when maintained between 15 and 23 ℃ and salinity in the range of 20-34 displays negative effects. Despite the narrow ranges used in the work, results showed the suitability of factorial analysis to evaluate the optimal conditions for growth and yessotoxin production by the dinoflagellate P. reticulatum.
机译:使用完整的一阶正交计划,通过控制盐度,温度和辐照度,优化了鞭毛原藻网状菌在培养物中对异毒素(YTX)的生长和产量的优化。最初,对每种实验设计条件的细胞密度和YTX产生的动力学数据进行了研究。网纹假单胞菌的生长和YTX的产生分别拟合到逻辑方程和一阶动力学模型。从该调整中获得的参数用作因变量,用于制定所测试的析因设计的经验方程式。结果表明,在网状假单胞菌生长和YTX产生的几乎所有情况下,辐照度都是主要的独立变量,并且在50-90μmol光子m〜(-2)s〜(-1)范围内具有积极作用)。此外,在某些特定情况下,温度保持在15到23℃之间时,会显示出明显的积极影响,而盐度在20-34之间时则会显示出负面影响。尽管在研究中使用的范围很窄,但结果显示因子分析适用于评价网状鞭毛虫的生长和异毒素生产的最佳条件。

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