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Influence of temperature, light and nutrients on the growth rates of the macroalga Gracilaria domingensis in synthetic seawater using experimental design

机译:利用实验设计研究温度,光照和养分对合成海水中巨藻(Gracilaria domingensis)生长速率的影响

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摘要

In the present study, the daily relative growth rates (DRGR, in percent per day) of the red macroalga Gracilaria domingensis in synthetic seawater was investigated for the combined influence of five factors, i.e., light (L), temperature (T), nitrate (N), phosphate (P), and molybdate (M), using a statistical design method. The ranges of the experimental cultivation conditions were T, 18-26A degrees C; L, 74-162 mu mol photons m(-2) s(-1); N, 40-80 mu mol L-1; P, 8-16 mu mol L-1; and M, 1-5 nmol L-1. The optimal conditions, which resulted in a maximum growth rate of a parts per thousand yen6.4% d(-1) from 7 to 10 days of cultivation, were determined by analysis of variance (ANOVA) multivariate factorial analysis (with a 2(5) full factorial design) to be L, 74 mu mol photons m(-2) s(-1); T, 26A degrees C; N, 80 mu mol L-1; P, 8 mu mol L-1; and M, 1 nmol L-1. In additional, these growth rate values are close to the growth rate values in natural medium (von Stosch medium), i.e., 6.5-7.0% d(-1). The results analyzed by the ANOVA indicate that the factors N and T are highly significant linear terms, X (L), (alpha = 0.05). On the other hand, the only significant quadratic term (X (Q)) was that for L. Statistically significant interactions between two different factors were found between T vs. L and N vs. T. Finally, a two-way (linear/quadratic interaction) model provided a quite reasonable correlation between the experimental and predicted DRGR values (R (adjusted) (2) = 0.9540).
机译:在本研究中,研究了海水中红巨藻江cil的日相对增长率(DRGR,以百分比为单位)对五个因素的综合影响,即光(L),温度(T),硝酸盐(N),磷酸盐(P)和钼酸盐(M),使用统计设计方法。实验培养条件的范围为T,18-26A℃。 L,74-162μmol光子m(-2)s(-1); N,40-80μmolL-1; P,8-16μmolL-1;和M,1-5nmol L-1。通过方差分析(ANOVA)多元因子分析确定最佳条件,该条件导致从培养7天到10天最大生长速率达到千分之一日元6.4%d(-1)。 5)全因子设计)为L,74μmol光子m(-2)s(-1); T,26A摄氏度; N,80μmolL-1; P,8μmolL-1; M为1nmol L-1。另外,这些生长速率值接近天然培养基(von Stosch培养基)中的生长速率值,即6.5-7.0%d(-1)。通过方差分析分析的结果表明,因子N和T是高度有效的线性项X(L),(alpha = 0.05)。另一方面,唯一有意义的二次项(X(Q))是L。在T与L和N与T之间发现了两个不同因素之间的统计学显着相互作用。最后,出现了双向(线性/二次相互作用模型)提供了实验和预测的DRGR值之间的相当合理的相关性(R(调整后)(2)= 0.9540)。

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