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Approaches to improve utilization of Nannochloropsis oceanica in plant-based feeds for Atlantic salmon

机译:提高植物饲料植物饲料利用的方法

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Rigid cell walls of microalgae lower the digestibility and nutrient bioavailability in carnivorous fish. Extrusion is a thermo-mechanical process and a scalable technology that may break cell walls and improves nutrient utilization. It can be hypothesized that certain feed additives may further improve microalgae nutrient digestibility and feed utilization by fish. The aim of the current study was to investigate i) the effect of incorporation of 10% pre-extruded Nannochloropsis oceanica on nutrient digestibility, growth and feed utilization of Atlantic salmon post smolts, and ii) the ability of feed additives in improving the feed utilization. Four low fish meal feeds were formulated; a control without the microalga N. oceanica (CO), a feed containing 10% of the pre-extruded microalga (NC), and two feeds containing 10% of the pre-extruded microalga and supplemented with either 0.06% Digestarom (R) (ND) or 1% ZEOFeed (NZ). Fish (initial average weight of 227.3 +/- 3.4 g) in 5 replicate tanks of each of the study groups were fed one of the experimental feeds for 68 days. The apparent digestibility of dry matter in the NC and NZ groups were significantly higher compared to the control group (CO). The digestibility of lipid was significantly lower, and digestibility of ash was higher in the alga-fed groups (NC, ND and NZ) compared to the control group (CO). The incorporation of 10% pre-extruded N. oceanica in plant-based commercial-like feeds did not affect the growth, feed utilization and whole body proximate composition of salmon. No effects of the feed additives were observed on growth, feed utilization and histomorphology of distal intestine of salmon, but cell proliferation (PCNA) was higher for fish fed the alga alone as well as the alga-ZEOfeed combination. There were no differences in polyunsaturated fatty acids in whole body of fish fed the different feeds. It is noteworthy that whole-body EPA + DHA levels of fish fed the algae feeds were maintained at the same levels as fish fed the control feed that contained 50% more fish meal and 10% more fish oil.
机译:微藻刚性细胞壁降低了食肉鱼中的消化率和营养生物利用度。挤出是一种热机械过程和可扩展技术,可打破细胞壁并提高营养利用。可以假设某些饲料添加剂可以进一步提高鱼类的微藻营养消化率和鱼类进料。目前研究的目的是探讨I)掺入10%预挤出的Nannchloropsis Oceanica对大西洋鲑鱼后味道的营养消化率,生长和饲料利用的影响,II)饲料添加剂在提高饲料利用方面的能力。配制了四种低鱼粉;没有Microalga N. Oceanica(CO)的控制,含有10%的预挤出微藻(Nc)的饲料,以及含有10%的预挤出微藻的两种进料,并补充有0.06%的Digestarom(R)( Nd)或1%zeofeed(nz)。每组研究组的5个复制罐中的鱼(227.3 +/- 3.4g)的鱼(初始平均重量)送入68天的实验饲料之一。与对照组(CO)相比,NC和NZ基团干物质的表观消化率显着高。与对照组(CO)相比,脂质的消化率显着降低,藻喂基团(NC,Nd和NZ)中的灰分较高。在植物的商业样饲料中掺入10%预挤出的N. Oceanica并未影响鲑鱼的生长,饲料利用和全身。对鲑鱼远端肠道的生长,饲料利用率和组织形态学没有观察到饲料添加剂的影响,但单独喂食藻类以及藻类组合的鱼类的细胞增殖(PCNA)较高。喂养不同饲料的全身多不饱和脂肪酸没有差异。值得注意的是,随着饲喂含有50%的鱼粉和10%的鱼油,喂食藻类饲料的全身EPA + DHA水平喂食藻类饲料的鱼类饲喂的水平与鱼类膳食更多的鱼类。

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