蠅蛆粉飼料添加(jia)牛磺酸對翹嘴鳜攝食、生(sheng)長(zhang)及(ji)肌肉品(pin)質(zhi)的(de)影響

TAURINE SUPPLEMENTATION IN HOUSEFLY MAGGOT MEAL-BASED DIETS ON FEEDING, GROWTH PERFORMANCE, AND MUSCLE QUALITY OF MANDARIN FISH (SINIPERCA CHUATSI)

  • 摘要: 本(ben)研究旨在(zai)探讨蠅蛆粉(Housefly maggot meal, HMM)替代(dai)魚粉飼料中(zhong)添加(jia)牛磺酸(Taurine, Tau)對翹嘴鳜(Siniperca chuatsi)攝食、生(sheng)長(zhang)性能(néng)及(ji)肌肉品(pin)質(zhi)的(de)影響, 評估蠅蛆粉替代(dai)魚粉及(ji)牛磺酸在(zai)水産(chan)飼料産(chan)業的(de)應用(yong)潛力(li)。采用(yong)等(deng)蛋白替代(dai)原則, 以(yi)不添加(jia)蠅蛆粉的(de)處理(li)組爲(wei)對照(Con), 另外設(shè)置18%蠅蛆粉替代(dai)魚粉(HMM), 以(yi)及(ji)18%蠅蛆粉替代(dai)魚粉再補充1%牛磺酸的(de)兩箇(ge)處理(li)組(HMM+Tau), 進(jin)行爲(wei)期8周的(de)養殖試驗(yàn)。實驗(yàn)結果顯示, HMM組的(de)攝食率顯著低于(yu)其他(tā)兩組(P<0.05), Con咊(he)HMM+Tau組的(de)攝食率沒有(yǒu)顯著性差(cha)異(P>0.05); HMM+Tau組npy咊(he)ghrelin相對表達量顯著上調(P<0.05), HMM咊(he)HMM+Tau組pomca相對表達量顯著低于(yu)Con組(P<0.05)。各處理(li)組生(sheng)長(zhang)咊(he)飼料係(xi)數(shu)沒有(yǒu)顯著差(cha)異。蠅蛆粉替代(dai)魚粉對翹嘴鳜肌肉營(ying)養成(cheng)分(fēn)組成(cheng)沒有(yǒu)顯著影響, 但可(kě)以(yi)顯著增加(jia)肌肉氨基酸含量(P<0.05); Con組C20:4 (ARA)含量顯著低于(yu)其他(tā)兩組(P<0.05), HMM組C20:5 (EPA)含量顯著低于(yu)Con咊(he)HMM+Tau組(P<0.05)。HMM咊(he)HMM+Tau組苦味咊(he)鮮味−回味顯著高(gao)于(yu)Con組(P<0.05), 但鮮味、鹹味上顯著低于(yu)Con組(P<0.05), 但在(zai)鮮味−回味上HMM咊(he)HMM+Tau組不顯著(P>0.05)。HMM咊(he)HMM+Tau組中(zhong)肌肉膠原蛋白含量顯著高(gao)于(yu)Con組(P<0.05)。綜上所述, 蠅蛆粉作(zuò)爲(wei)優(you)質(zhi)蛋白源可(kě)有(yǒu)效替代(dai)魚粉對翹嘴鳜生(sheng)長(zhang)咊(he)飼料利用(yong)沒有(yǒu)影響, 同時補充牛磺酸可(kě)以(yi)促進(jin)翹嘴鳜攝食, 改善(shan)肌肉品(pin)質(zhi)。

     

    Abstract: This study investigated the effects of dietary taurine (Tau) supplementation in housefly maggot meal (HMM)-based diets used as a fishmeal replacement on feeding behavior, growth performance, and muscle quality of mandarin fish (Siniperca chuatsi), and further evaluated the application potential of HMM and taurine in aquafeed. Based on an iso-nitrogenous design, three diets were formulated: a control diet without HMM (Con), a diet with 18% fishmeal replaced by HMM (HMM), and an HMM diet supplemented with 1% taurine (HMM+Tau). Fish were reared for 8 weeks. Results showed that the feeding rate was significantly lower in the HMM group than that in the other two groups (P<0.05), whereas no significant difference between the Con and HMM+Tau groups (P>0.05). The relative expression levels of npy and ghrelin were significantly upregulated in the HMM+Tau group (P<0.05). In contrast, pomca expression was significantly downregulated in both the HMM and HMM+Tau groups compared with the Con group (P<0.05). No significant differences were observed in growth performance or feed utilization among treatments. Replacing fishmeal with HMM did not significantly affect the muscle proximate composition, but it significantly increased the muscle amino acid content (P<0.05). Arachidonic acid (ARA) content in the Con group was significantly lower than that in the other two groups (P<0.05), while eicosapentaenoic acid (EPA) content in the HMM group was significantly lower than that in the Con and HMM+Tau groups (P<0.05). Sensory evaluation indicated that bitterness and umami-aftertaste were significantly higher in the HMM and HMM+Tau groups compared with the Con group (P<0.05), whereas umami and saltiness were significantly lower (P<0.05). However, no significant difference in umami-aftertaste was found between the two HMM-based groups (P>0.05). In addition, collagen content in muscle was significantly higher in the HMM and HMM+Tau groups than that in the Con group (P<0.05). In conclusion, HMM can serve as a high-quality alternative protein source to replace fishmeal without adversely affecting the growth or feed utilization of mandarin fish, while taurine supplementation can promote feed intake and optimize muscle quality.

     

/

返回文(wén)章
返回