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Mixed culture purple phototrophic bacteria is an effective fishmeal replacement in aquaculture

机译:混合培养紫色光养细菌是水产养殖中有效的鱼粉替代品

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摘要

Aquaculture is the fastest growing animal food production industry, now producing 50% of all food fish. However, aquaculture feeds remain dependent on fishmeal derived from capture fisheries, which must be reduced for continued sustainable growth. Purple phototrophic bacteria (PPB) efficiently yield biomass from wastewater with high product homogeneity, a relatively high protein fraction, and potential added value as an ingredient for fish feeds. Here we test bulk replacement of fishmeal with PPB microbial biomass in diets for Asian sea bass (Lates calcarifer), a high value carnivorous fish with high protein to energy requirement. Mixed culture PPB were grown in a novel 1 m3 attached photo-biofilm process using synthetic and real wastewater. Four experimental diets were formulated to commercial specifications but with the fishmeal substituted (0%, 33%, 66%, and 100%) with the synthetic grown PPB biomass and fed to a cohort of 540 juvenile fish divided amongst 12 tanks over 47 days. Weight and standard length were taken from individual fish at 18, 28, and 47d. No significant difference in survival was observed due to diet or other factors (94–100%). There was a negative correlation between PPB inclusion level and final weight (p = 5.94 × 10−5) with diet accounting for 4.1% of the variance over the trial (general linear model, R2 = 0.96, p = 1 × 10−6). Feed conversion ratio was also significantly influenced by diet (p = 6 × 10−7) with this factor accounting for 89% of variance. Specifically, feed conversion ratio (FCR) rose to 1.5 for the 100% replacement diet during the last sample period, approximately 1.0 for the partial replacement, and 0.8 for the nil replacement diet. However, this study demonstrates that bulk replacement of fishmeal by PPB is feasible, and commercially viable at 33% and 66% replacement.
机译:水产养殖是增长最快的动物食品生产行业,目前生产所有食用鱼的50%。但是,水产养殖饲料仍然依赖于捕捞渔业提供的鱼粉,为继续持续增长,必须减少鱼粉。紫色光养细菌(PPB)可有效地从废水中生产生物量,具有较高的产品同质性,较高的蛋白质含量和潜在的附加值,可作为鱼饲料的成分。在这里,我们测试了在亚洲鲈鱼(Lates calcarifer)的日粮中用PPB微生物生物质代替鱼粉的方法,这是一种高价值的肉食性鱼类,具有很高的蛋白质和能量需求。使用合成的和真实的废水,在新型的1 m 3 附着的光生物膜工艺中生长混合培养PPB。配制了四种实验性日粮,使其达到商业规格,但用合成的生长后的PPB生物量代替了鱼粉(0%,33%,66%和100%),并在47天的时间内将其喂入540只幼鱼,分为12个鱼缸。体重和标准长度取自18、28和47天的单个鱼。由于饮食或其他因素,存活率无明显差异(94-100%)。 PPB的摄入水平与最终体重之间呈负相关(p = 5.94×10 −5 ),饮食占该试验方差的4.1%(一般线性模型,R 2) = 0.96,p = 1×10 -6 )。饲料的转化率也受到日粮的显着影响(p = 6×10 −7 ),该因素占差异的89%。具体而言,在上一个采样期间,100%替代日粮的饲料转化率(FCR)升至1.5,部分替代日粮的饲料转化率(FCR)约为1.0,零替代日粮的饲料转化率约为0.8。但是,这项研究表明,用PPB代替鱼粉是可行的,并且在商业上可行以33%和66%的替代率。

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