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Effects of temperature and salinity on the growth and biochemical composition of the brown alga Sargassum fusiforme (Fucales, Phaeophyceae)

机译:温度和盐度对棕榈藻酸纤维成分(Fucales,Phaeophycee)生长和生化组成的影响

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Temperature and salinity are well-known environmental factors that affect the growth and biochemical composition of brown algae. In this study, we conducted a culture experiment to test the effects of temperature (10, 15, and 20 degrees C) and salinity (10, 20, 30, and 40 psu) on specific growth rates (SGR) and five compounds (carbon, nitrogen, chlorophyll (Chl) a, Chl c, and fucoxanthin) of Sargassum fusiforme, an ecologically and commercially important species. The results showed that both temperature and salinity had significant effects on SGR and the tissue contents of carbon and nitrogen. Maximal SGR of 6.04% day(-1) was achieved at 20 degrees C and 30 psu. The highest tissue content of carbon (38.19 +/- 1.01%) was obtained at 10 degrees C and 30 psu, while that of nitrogen (2.78 +/- 0.09%) was at 15 degrees C and 10 psu. Significant positive effects of increased temperature were found on both Chl a and Chl c contents. A significant positive effect of increased salinity was only found on the Chl a content. The Chl a and Chl c contents were maximized at 0.50 +/- 0.03 and 0.16 +/- 0.03 mg g(-1) at 15 degrees C and 20 psu. In addition, significant positive effect of increased temperature and significant negative effect of increased salinity were detected for the fucoxanthin content; this was at a maximum of 2.62 +/- 0.04 mg g(-1) at 15 degrees C and 10 psu. These physiological data provide valuable information related to the enhancement of S. fusiforme composition when in cultivation under controlled conditions.
机译:温度和盐度是众所周知的环境因素,影响褐藻的生长和生化组成。在这项研究中,我们进行了一种培养实验,以测试温度(10,15和20℃)和盐度(10,20,30和40psu)对特异性生长速率(SGR)和五种化合物(碳)的影响Sargassum fusiforme,生态和商业上重要物种的氮,叶绿素(CHL)A,CHL C和Fucoxanthin)。结果表明,温度和盐度均对SGR和碳和氮的组织含量具有显着影响。在20摄氏度和30psu上实现了6.04%日(-1)的最大SGR。在10℃和30psu获得碳的最高组织含量(38.19 +/- 1.01%),而氮气(2.78 +/- 0.09%)为15摄氏度和10psu。在CHL A和CHL C含量上发现了温度增加的显着正效。仅在CHL含量上发现盐度的显着积极效果。 CHL A和CHL C的含量在15摄氏度和20psu的0.50 +/- 0.03和0.16 +/- 0.03mg(-1)中最大化。此外,对于岩豆花蛋白含量,检测到增加温度增加和增加盐度的显着负面影响的显着效果;这是15摄氏度和10psu的最多2.62 +/- 0.04 mg(-1)。这些生理数据提供了与在受控条件下培养时增强的有价值的信息。

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