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首页> 外文期刊>Aquaculture >Enriching rotifers with ''premium'' microalgae. Isochrysis aff. galbana clone T-ISO
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Enriching rotifers with ''premium'' microalgae. Isochrysis aff. galbana clone T-ISO

机译:富含“优质”微藻的轮虫。等渗galbana克隆T-ISO

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The effect of semi-continuous culture on the nutritional value of microalgae was tested in the rotifer Brachionus plicatilis in short-term enrichment experiments. Isochrysis aff. galbana clone T-ISO was cultured semi-continuously with renewal rates from 10 to 50% of the volume of the culture per day and used to feed the rotifers. After 24 h, dramatic differences in dry weight and protein, lipid and carbohydrate contents were observed in the rotifers depending on the renewal rate applied to the microalgal culture. Rotifers fed T-ISO cultured with low renewal rates showed low dry weight and organic content, whereas rotifers fed microalgae from nutrient-sufficient, high renewal rate cultures showed higher dry weight and increases up to 60% in protein, 35% in lipid and 100% in carbohydrate contents. Feed conversion rate (FCR) and organic FCR decreased with increasing renewal rates, indicating a more efficient assimilation of the microalgal biomass obtained at high growth rates. The fatty acid profile of rotifers reflected that of T-ISO, with maximum content of polyunsaturated fatty acids (PUFAs), n-3 fatty acids and docosahexaenoic acid (DHA) being found in the rotifers fed microalgae from the renewal rate of 40%. Results demonstrate that the biochemical composition of B. plicatilis is strongly modified through the use of semi-continuous cultures of microalgae in short-term enrichment processes. This technique provides an excellent tool to improve the nutritional value of the live feed used in fish larvae cultures.
机译:在短期浓缩实验中,在轮虫Brachionus plicatilis中测试了半连续培养对微藻营养价值的影响。等渗半连续培养galbana克隆T-ISO,更新速率为每天培养物体积的10%至5​​0%,并用于喂养轮虫。 24小时后,轮虫中观察到干重和蛋白质,脂质和碳水化合物含量的显着差异,这取决于应用于微藻培养物的更新速率。饲喂低更新率的T-ISO的轮虫显示出较低的干重和有机物含量,而饲喂来自营养充足,更新率高的培养物中的微藻的轮虫显示出较高的干重,并增加了60%的蛋白质,35%的脂质和100%的蛋白质。碳水化合物含量的%。饲料转化率(FCR)和有机FCR随着更新率的提高而降低,表明以较高的生长速率获得的微藻生物质的吸收效率更高。轮虫的脂肪酸特征反映了T-ISO的特征,从40%的更新率来看,在饲喂微藻的轮虫中发现了最大含量的多不饱和脂肪酸(PUFA),n-3脂肪酸和二十二碳六烯酸(DHA)。结果表明,通过在短期富集过程中使用微藻类的半连续培养物,极大地改变了B. plicatilis的生化组成。这项技术提供了一种出色的工具,可以提高鱼幼体养殖中使用的活饲料的营养价值。

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