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棉籽浓缩蛋白作为梭鲈饲料中鱼粉的有效替代品:来自生长性能以及免疫功能和微生物群肠道反应的证据

Cottonseed protein concentrate as an effective substitute to fish meal in pike perch () feed: evidence from growth performance and intestinal responses of immune function and microflora.

作者信息

Fan Ze, Zhao Jie, Huang Jiaming, Lu Cuiyun, Wu Di, Sun Zhipeng, Li Jinnan, Wang Liansheng, Zheng Xianhu

机构信息

Key Laboratory of Aquatic Animal Diseases and Immune Technology of Heilongjiang Province, Heilongjiang River Fisheries Research Institute, Chinese Academy of Fishery Sciences, Harbin, China.

College of Fish and Life Science, Shanghai Ocean University, Shanghai, China.

出版信息

Front Immunol. 2025 Mar 4;16:1522005. doi: 10.3389/fimmu.2025.1522005. eCollection 2025.

Abstract

INTRODUCTION

The aim of this study was to assess the response characteristics of intestinal immune function and microflora of pike perch (Sander luciperca) receiving cottonseed protein concentrate (CPC) as a substitute for fishmeal.

METHODS

A basal diet was formulated to contain 55% fish meal, and then CPC was used to replace 0% (CPC0), 20% (CPC1), 40% (CPC2), and 60% (CPC3) of dietary fish meal. The four diets were fed to pikeperch with an initial body weight of 3.55 ± 0.01 g for 8 weeks.

RESULTS

The results revealed that there were no significant effects of dietary CPC levels on survival rate, mass gain rate, and specific growth rate. The highest value for the feeding efficiency ratio was found in the CPC3 group and was significantly higher than that of the control group. Significantly lower values for the hepatosomatic index, crude ash content, and higher crude protein content were observed in the CPC3 group. Trypsin activity in the CPC3 group was lowest compared to the control group and CPC1 group. Among the three CPC substitution groups, increases in intestinal antioxidant enzyme activities, glutathione content, and anti-inflammatory factor expression, and downregulation of pro-inflammatory factors were observed with increasing CPC substitution. The injury degree of the intestinal mechanical barrier was mitigated along with relief of oxidative damage and inflammation with increasing CPC substitution ratios.

DISCUSSION AND CONCLUSION

In conclusion, 60% of fish meal can be replaced by CPC based on the above results. However, increasing dietary CPC substitution slightly increased Firmicutes abundance and significantly decreased Actinobacteriota abundance, but the abundance of Proteobacteria in the CPC3 group was appreciably increased. An increase in Staphylococcus and a reduction of Lactobacillus were observed in the CPC2 and CPC3 groups. Igf1 expression was significantly downregulated with increasing CPC substitution. Henceforth, the above two limiting factors should be considered key breakthroughs in improving the effectiveness of replacing fish meal with CPC in pikeperch. The current findings provide a significant reference and breakthrough in improving the effectiveness of replacing fishmeal with CPC in pikeperch diets.

摘要

引言

本研究旨在评估以棉籽浓缩蛋白(CPC)替代鱼粉的情况下,梭鲈(Sander luciperca)肠道免疫功能和微生物群的反应特征。

方法

配制一种基础日粮,使其含有55%的鱼粉,然后用CPC替代日粮中0%(CPC0)、20%(CPC1)、40%(CPC2)和60%(CPC3)的鱼粉。将这四种日粮投喂给初始体重为3.55±0.01克的梭鲈,为期8周。

结果

结果显示,日粮中CPC水平对存活率、质量增加率和特定生长率没有显著影响。CPC3组的饲料效率比最高,且显著高于对照组。CPC3组的肝体指数、粗灰分含量显著较低,粗蛋白含量较高。与对照组和CPC1组相比,CPC3组的胰蛋白酶活性最低。在三个CPC替代组中,随着CPC替代量的增加,肠道抗氧化酶活性、谷胱甘肽含量和抗炎因子表达增加,促炎因子下调。随着CPC替代比例的增加,肠道机械屏障的损伤程度减轻,氧化损伤和炎症得到缓解。

讨论与结论

综上所述,基于上述结果,60%的鱼粉可被CPC替代。然而,日粮中CPC替代量的增加略微增加了厚壁菌门的丰度,显著降低了放线菌门的丰度,但CPC3组中变形菌门的丰度明显增加。在CPC2组和CPC3组中观察到葡萄球菌增加,乳酸杆菌减少。随着CPC替代量的增加,Igf1表达显著下调。因此,上述两个限制因素应被视为提高梭鲈中用CPC替代鱼粉效果的关键突破点。目前的研究结果为提高梭鲈日粮中用CPC替代鱼粉的效果提供了重要参考和突破点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8012/11920712/225b6aaffd51/fimmu-16-1522005-g001.jpg

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