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短期摄入新型蛋白质后进行鱼粉干预可刺激大口黑鲈(Micropterus salmoides)的补偿性生长并影响其肠道健康。

Fishmeal intervention after short-term novel proteins stimulates compensatory growth and affects intestinal health in largemouth bass (Micropterus salmoides).

作者信息

Li Lukuan, Wang Yu, Zhou Xianjun, Wang Chunfang

机构信息

Engineering Research Center of Green Development for Conventional Aquatic Biological Industry in the Yangtze River Economic Belt, Ministry of Education, Hubei Provincial Engineering Laboratory for Pond Aquaculture, College of Fisheries, Huazhong Agricultural University, Wuhan, 430070, China.

College of Animal Science, Guizhou University, Guiyang, China.

出版信息

Fish Physiol Biochem. 2025 Feb;51(1):23. doi: 10.1007/s10695-024-01436-0. Epub 2024 Dec 9.

Abstract

This research utilized a compensatory growth phenomenon aimed at reducing the use of fishmeal in aquatic animal feed. However, the compensatory growth triggered by fishmeal restriction with novel protein replacement has yet to be understood. Five isonitrogenous and isolipidic diets containing different proteins were manufactured, with fishmeal serving as the control and diets containing novel proteins, i.e., Chlorella (Chlorella vulgaris), cottonseed protein concentrate, Clostridium autoethanogenum, and yellow mealworm (Tenebrio molitor), serving as the experimental diets. Largemouth bass (Micropterus salmoides) with a starting body weight of 4.73 ± 0.04 g were respectively fed these five diets for the first 29 days (first stage), followed by a fishmeal diet for the remaining 29 days (second stage). The diet of fishmeal, Chlorella vulgaris, cottonseed protein concentrate, Clostridium autoethanogenum, and Tenebrio molitor was referred to as FM, ChM, CSM, CAP, and TM, respectively. All novel protein groups showed a 60-73% higher weight gain compared to the fishmeal group during the second phase; however, they did not reach the weight level seen in the control group. In addition, the second stage of fishmeal intervention resulted in a reduction of approximately 35% in the area of positive Alcian blue (AB) staining of intestinal tissues in the CSM group, and about 40% in the CAP group, compared to the first stage. Furthermore, the area of intestinal apoptosis in TM was enlarged after fishmeal intervention while it was decreased in other experimental groups. At day 58, gene expression analysis of the CAP group fish at the end of the trial revealed increased levels of the anti-apoptotic gene bcl-2, as well as higher expression of intestinal inflammatory cytokines il-1β, tnf-α, nf-κb p65, and il-10, compared to the FM group. In terms of the biochemical indices, the levels of catalase (CAT) and glutathione peroxidase (GSH-Px) were reduced in CSM on day 58. An assessment of potential microbial function at end of trial demonstrated that CAP could reduce the lipid metabolism and amino acid metabolism, and increased carbohydrate metabolism pathways in the largemouth bass intestine. In conclusion, both CAP and ChM groups showed promise to reduce fishmeal with respect to intestinal health rather than growth. This study should be of value to practitioners wishing to use novel proteins to reduce fishmeal via the utilization of the compensatory growth phenomenon.

摘要

本研究利用补偿生长现象,旨在减少水产动物饲料中鱼粉的使用。然而,用新型蛋白质替代物限制鱼粉引发的补偿生长情况尚不清楚。制作了五种含不同蛋白质的等氮等脂日粮,以鱼粉为对照,含新型蛋白质的日粮,即小球藻(普通小球藻)、棉籽浓缩蛋白、自养乙醇梭菌和黄粉虫(黄粉虫),作为试验日粮。初始体重为4.73±0.04 g的大口黑鲈(Micropterus salmoides)在最初29天(第一阶段)分别投喂这五种日粮,随后在剩余29天(第二阶段)投喂鱼粉日粮。鱼粉、普通小球藻、棉籽浓缩蛋白、自养乙醇梭菌和黄粉虫的日粮分别称为FM、ChM、CSM、CAP和TM。在第二阶段,所有新型蛋白质组的体重增加均比鱼粉组高60 - 73%;然而,它们未达到对照组的体重水平。此外,与第一阶段相比,鱼粉干预的第二阶段导致CSM组肠道组织中阿尔新蓝(AB)阳性染色面积减少约35%,CAP组减少约40%。此外,鱼粉干预后TM组肠道凋亡面积增大,而其他试验组则减小。在试验第58天,试验结束时对CAP组鱼的基因表达分析显示,与FM组相比,抗凋亡基因bcl - 2水平升高,肠道炎性细胞因子il - 1β、tnf - α、nf - κb p65和il - 10的表达也更高。就生化指标而言,第58天时CSM组的过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GSH - Px)水平降低。试验结束时对潜在微生物功能的评估表明,CAP可降低大口黑鲈肠道中的脂质代谢和氨基酸代谢,并增加碳水化合物代谢途径。总之,CAP组和ChM组在肠道健康而非生长方面显示出减少鱼粉使用的潜力。本研究对于希望通过利用补偿生长现象使用新型蛋白质来减少鱼粉的从业者应具有价值。

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