首页> 外文期刊>Latin american journal of aquatic research >Nutritional contribution of fish meal and microalgal biomass produced from two endemic microalgae to the growth of shrimp Penaeus vannamei
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Nutritional contribution of fish meal and microalgal biomass produced from two endemic microalgae to the growth of shrimp Penaeus vannamei

机译:两种地方性微藻产生的鱼粉和微藻生物质对虾南美白对虾生长的营养贡献

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Different sources of microbial biomass have drawn attention as novel ingredients for aquaculture feeds. In the present study, isotopic measurements were applied to determine the contribution of dietary nitrogen supplied by two sources of microalgal biomass and fish meal, to the growth of shrimp Penaeus vannamei. Microalgae Schizochytrium sp. and Grammatophora sp. were isolated from the Sea of Cortez and massively cultured to obtain sufficient biomass. Experimental diets were formulated with low levels of microalgal biomass replacing 5 and 10% of fish meal nitrogen. Nitrogen stable isotope values were determined in ingredients, diets, and shrimp to estimate the relative contributions of the dietary nitrogen and dry matter supplied by these ingredients to the somatic growth. At the end of a feeding trial, significant differences were observed in mean final weight gain. Dietary nitrogen contributions from microalgae were similar to established dietary proportions, but when estimated on a dry matter basis, nutritional contributions were different for a diet containing 10% of Schizochytrium, which contributed 24% of dry matter to growth. Results demonstrate that low dietary inclusion levels of microalgal biomass elicit similar or higher growth rates than diets based on a fish meal only. Isotopic data indicated that microalgae actually contributed protein to tissue accretion.
机译:作为水产养殖饲料的新型成分,微生物生物质的不同来源已引起关注。在本研究中,同位素测量用于确定由两种微藻生物质和鱼粉提供的膳食氮对虾南美白对虾生长的贡献。微藻裂殖藻和Grammatophora sp。从科尔特斯海分离出的藻并大量培养以获得足够的生物量。用低水平的微藻生物质代替鱼粉氮的5%和10%配制实验日粮。确定成分,日粮和虾的氮稳定同位素值,以估计这些成分提供的饮食氮和干物质对体细胞生长的相对贡献。在喂养试验结束时,观察到平均最终体重增加存在显着差异。微藻的膳食氮贡献与既定的膳食比例相似,但以干物质为基础进行估算时,含10%裂殖壶菌的饮食的营养成分不同,后者为生长贡献了24%的干物质。结果表明,与仅基于鱼粉的日粮相比,低藻类生物量的低日粮包合水平引起相似或更高的生长速率。同位素数据表明,微藻实际上是促进组织增生的蛋白质。

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