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The effect of environmental factors on filtration and the oxygen consumption rate of the rotifer Brachionus plicatilis: A primary exploration of red tide control

机译:环境因素对轮虫Brachionus plicatilis的过滤和耗氧率的影响:赤潮控制的初步探索

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摘要

To evaluate the potential to control red tides using the mass-cultured heterotrophic grazer, rotifer Brachionus plicatilis, the effects of environmental factors (water temperature and salinity) on physical activities (filtration and oxygen consumption rate) of B. plicatilis were estimated. Experiments were conducted at different water temperatures (15, 20, 25, 30 and 35°C) and salinities (20, 25, 30, 35 and 40 PSU), in 25 different combinations (5 temperatures × 5 salinities). Results showed that water temperature and salinity had significant effects on the filtration rate of B. plicatilis (F=41.66, P<0.05). The results of multiple regression analysis yielded the following functional dependence of filtration rate (F) on water temperature (T) and salinity (S): F=-1.658+0.917 T+0.63S (R2=0.769, P<0.001). The highest filtration rate (4.23 ±0.74 μl rot~(-1) h~(-1)) was obtained at 30°C and salinity 35 PSU, and the lowest one (0.869 ±0.13 μl rot~(-1) h~(-1)) was observed at 15°C and salinity 20 PSU. Both water temperature and salinity had significant effects on the oxygen consumption rate of B. plicatilis (F=34.08, P<0.05). The results of multiple regression analysis yielded the following functional dependence of oxygen consumption rate (O) on water temperature (T) and salinity (S): O=-3.133+0.165T+0.81S (R~2=0.938, P<0.001). The highest oxygen consumption rate (5.38 ±0.66 ng rot~(-1) h~(-1)) was observed at 35°C and salinity 40 PSU, and the lowest one (1.01 ±0.15 ng rot~(-1) h~(-1)) was observed at 15°C and salinity 20 PSU. Results from this present study indicated that the filtration and oxygen consumption rate of the rotifer were significantly influenced by the water temperature and salinity. The utilization of rotifer for red tide control has to consider the influence of environmental factors.
机译:为了评估使用大规模培养的异养掠食者轮虫Brachionus plicatilis控制赤潮的潜力,估计了环境因素(水温和盐度)对B. plicatilis身体活动(过滤和耗氧率)的影响。在25种不同的组合(5个温度×5个盐度)下,在不同的水温(15、20、25、30和35℃)和盐度(20、25、30、35和40 PSU)下进行了实验。结果表明,水温和盐度对褶皱双歧杆菌的过滤率有显着影响(F = 41.66,P <0.05)。多元回归分析的结果得出了过滤率(F)对水温(T)和盐度(S)的以下函数依赖性:F = -1.658 + 0.917 T + 0.63S(R2 = 0.769,P <0.001)。在30°C和盐度35 PSU下获得最高过滤速率(4.23±0.74μlrot〜(-1)h〜(-1)h〜(-1)h〜 (-1))在15°C和盐度20 PSU下观察到。水温和盐度均对褶皱双歧杆菌的耗氧率有显着影响(F = 34.08,P <0.05)。多元回归分析的结果表明,耗氧率(O)对水温(T)和盐度(S)具有以下功能依赖性:O = -3.133 + 0.165T + 0.81S(R〜2 = 0.938,P <0.001 )。在35°C和盐度40 PSU下观察到最高耗氧率(5.38±0.66 ng rot〜(-1)h〜(-1)h,最低的耗氧率(1.01±0.15 ng rot〜(-1)h在15°C和盐度20 PSU下观察到〜(-1))。本研究的结果表明,轮虫的过滤和耗氧率受水温和盐度的显着影响。利用轮虫控制赤潮必须考虑环境因素的影响。

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