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Enriching Rotifers with 'Premium' Microalgae: Rhodomonas lens

机译:用“Premium”微藻富集轮虫:Rhodomonas镜头

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The nutritional value of the marine cryptophyte Rhodomonas lens for the filter feeder Brachionus plicatilis as well as its biotechnological potential as a source of phycoerythrin (PE) and polyunsaturated fatty acids (PUFA) were evaluated in semi-continuous cultures maintained with different daily renewal rates (RR), from 10% (R10) to 50% (R50) of the total volume. Steady-state cell density decreased from 22 to 7 x 10(6) cells mL(-1) with increasing RR, with the maximum cell productivity, nearly 0.4 g L-1 day(-1), observed with R40. PE cell content attained the highest values with the highest RR (circa 9 pg cell(-1)). All treatments of R. lens maintained under nitrate-saturated conditions (R20-R50) showed a similar high content of PUFAs, > 60% of total fatty acids (FA), with linolenic acid (18:3n-3) and 18:4n-3, representing 12 and 29% of total FA respectively. The PUFA level in the nitrogen-limited R10 cultures was significantly lower (37%). R. lens promoted higher weight gain in the rotifer B. plicatilis than Tisochrysis lutea (T-ISO), a species commonly used for rotifer culture and enrichment. Significant differences were found in the protein content and in the ratio n-3/n-6 fatty acids among rotifers fed with R. lens from different RRs, with higher values being found in those fed with R. lens from higher RRs. The enrichment of the rotifers for short periods of 3 h was sufficient to modify the biochemical composition of the rotifers, but it was evidenced as too short for the accumulation of PUFAs, when compared to long-term (24 h) enrichment. The rotifers reflected the higher protein and PUFA content of R. lens cultivated with nutrient sufficient microalgae (R40) after only 3 h of enrichment. These results demonstrate that semi-continuous culture of R. lens under appropriate conditions can strongly enhance the nutritional value of this species, being reflected in the growth and biochemical composition of the filter feeder, even in short exposure periods.
机译:用于过滤器饲养者Bracionus Plicatilis的海洋加密rhodomonas镜片的营养价值以及作为植物系(PE)和多不饱和脂肪酸(PUFA)的生物技术潜力在半连续培养物中,以不同的每日更新率维持( RR),10%(R10)至50%(R50)的总体积。稳态细胞密度从22-7×10(6)个细胞m1(-1)降低,随着RR的增加,最大细胞生产率,近0.4g L-1天(-1),用R40观察。 PE细胞内容达到最高RR的最高值(大约9pg细胞(-1))。在硝酸盐饱和条件下保持的所有治疗方法(R20-R50)均显示出类似的高含量的PUFA,> 60%的总脂肪酸(FA),亚麻酸(18:3N-3)和18:4N -3,分别表示12和29%的FA。氮气限制R10培养物中的PUFA水平显着较低(37%)。 R.镜片在TISOCHRYSIS LUTEA(T-ISO)中促进了Rotifer B. Plicatilis的重量增加,常用于转炉培养和富集的物种。在蛋白质含量中发现显着的差异,并且在与不同RRS的R.透镜进料的旋转器中的旋转器中的N-3 / N-6脂肪酸中的比例差异,在饲喂R.镜片的那些中发现较高的值。短时间为3小时的轮转器的富集足以改变转子的生化组合物,但随着长期(24小时)富集相比,Pufas的积累被证明太短暂。转子反射了在仅3小时的富集后培养的R.栽培的R.栽培的蛋白质和PUFA含量。这些结果表明,在适当条件下,R.晶状体的半连续培养物可以强烈提高该物种的营养价值,即使在短的暴露期间也反映在过滤喂料器的生长和生化组合物中。

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