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Are fish fed with cyanobacteria safe nutritious and delicious? A laboratory study

机译:用蓝细菌喂养的鱼是否安全营养又美味?实验室研究

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摘要

Toxic cyanobacterial blooms, which produce cyclic heptapeptide toxins known as microcystins, are worldwide environmental problems. On the other hand, the cyanobacteria protein (30–50%) has been recommended as substitute protein for aquaculture. The present laboratory study verified the feasibility of cyanobacteria protein substitution and risk assessment. Goldfish were fed diets supplemented lyophilised cyanobacteria powder for 16 weeks with the various doses: 0% (control), 10%, 20%, 30% and 40%. Low doses (10% and 20%) promoted growth whereas high doses (30% and 40%) inhibited growth. In cyanobacteria treated fish, the proximate composition of ash, crude fat content and crude protein content decreased in 16 weeks; the saturated fatty acid (SFA) content significantly increased; the n-3 polyunsaturated fatty acid content, collagen content and muscle pH significantly decreased; cooking loss percents increased significantly. Muscle fiber diameter and myofibril length were negatively correlation. Additionally, flavour compounds (e.g., amino acids, nucleotides, organic acids and carnosine) changed significantly in the treated fish, and odour compounds geosmin and 2-methylisoborneol increased significantly. The estimated daily intake (EDI) of microcystins in muscle was close to or exceeded the World Health Organization (WHO) tolerable daily intake (TDI), representing a great health risk. Cyanobacterie is not feasible for protein sources use in aquaculture.
机译:产生环状七肽毒素(称为微囊藻毒素)的有毒蓝藻繁殖是世界范围内的环境问题。另一方面,推荐使用蓝细菌蛋白(30–50%)作为水产养殖的替代蛋白。本实验室研究证明了蓝细菌蛋白替代和风险评估的可行性。给金鱼饲喂补充冻干蓝藻粉的饮食16周,其剂量为:0%(对照),10%,20%,30%和40%。低剂量(10%和20%)促进生长,而高剂量(30%和40%)抑制生长。在经过蓝细菌处理的鱼中,其灰分,粗脂肪含量和粗蛋白含量的最接近成分在16周内下降;饱和脂肪酸(SFA)含量明显增加; n-3多不饱和脂肪酸含量,胶原蛋白含量和肌肉pH值明显降低;烹调损失百分比显着增加。肌纤维直径与肌原纤维长度呈负相关。另外,在处理过的鱼中,风味化合物(例如氨基酸,核苷酸,有机酸和肌肽)显着变化,并且气味化合物土臭味素和2-甲基异冰片醇显着增加。肌肉中微囊藻毒素的估计每日摄入量(EDI)接近或超过了世界卫生组织(WHO)容许的每日摄入量(TDI),这代表着巨大的健康风险。蓝细菌对于在水产养殖中使用蛋白质来源是不可行的。

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