Effects of Dietary Sodium Propionate on Growth Performance, Fillet Texture, Hematologic and Plasma Biochemical Parameter, Immune Responses, and Intestine Histology of Juvenile Trachinotus ovatus

IF 3 2区 农林科学 Q1 FISHERIES Aquaculture Nutrition Pub Date : 2024-01-27 DOI:10.1155/2024/9148613
Pengwei Xun, Qianqian Huang, Dexiang Feng, Wei Yu, Yukai Yang, Xusheng Guo, Heizhao Lin
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Abstract

Seven graded levels of sodium propionate (SP) diets with 0 (SP1), 0.2% (SP2), 0.4% (SP3), 0.6% (SP4), 0.8% (SP5), 1.0% (SP6), and 1.2% (SP7) were prepared to feed Trachinotus ovatus (initial body weight: 8.64 ± 0.08 g) for 56 days. The results showed that increasing dietary SP levels quadratically increased significantly final body weight (FBW), weight gain rate (WGR), and specific growth rate (SGR) of T. ovatus but linearly and quadratically decreased significantly viscerosomatic index (VSI) and hepatosomatic index (HSI) of T. ovatus (P < 0.05). In the SP4 treatment, FBW, WGR, and SGR presented the highest values. Both positive linear and quadratic trends were detected between crude lipid content of whole fish, adhesiveness of dorsal muscle, white blood cell (WBC), red blood cell (RBC), hemoglobin (HGB), blood performance, high-density lipoprotein cholesterol (HDL-c), intestinal villus height, and dietary SP level, while negative linear and quadratic trends were found between firmness of dorsal muscle, triglyceride (TG), glucose (GLU), and dietary SP level (P < 0.05). The increasing SP led to quadratic increases in lymphocyte (Lym), complement 3 (C3), chymotrypsin, villus number, and muscle layer thickness, and a quadratic decrease in hepatic malondialdehyde (MDAP < 0.05). A significant negative linear trend was found between the content of glutamic-pyruvic transaminase (GPT) and dietary SP level, while significant positive linear trends were presented between C4, immunoglobulin M (IgM), α-amylase and dietary SP level (P < 0.05). The increasing SP resulted in linear and quadratic increases in superoxide dismutase (SOD), total antioxidant capacity (T-AOC) of livers and C3, C4, IgM of head kidney (P < 0.05). The expression levels of tumor necrosis factor alpha (TNF-α) and interleukin-8 (IL-8) were linearly and quadratically decreased, while the mRNA levels of growth factor beta (TGF-β) were linearly and quadratically increased with the increasing SP level (P < 0.05). In conclusion, SP could be considered as a beneficial feed additive for enhancing growth and immunity of fish. And dietary SP level at 0.6% is optimal for the growth of Trachinotus ovatus based on a quadratic regression model of WGR.

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膳食丙酸钠对幼鱼生长性能、鱼片质地、血液和血浆生化指标、免疫反应和肠道组织学的影响
用 0(SP1)、0.2%(SP2)、0.4%(SP3)、0.6%(SP4)、0.8%(SP5)、1.0%(SP6)和 1.2%(SP7)七种不同水平的丙酸钠(SP)日粮饲喂卵裂尻鱼(初始体重:8.64 ± 0.08 g),连续饲喂 56 天。结果表明,日粮中SP水平的增加可显著增加卵裂尻鱼的最终体重(FBW)、增重率(WGR)和特定生长率(SGR),但可显著降低卵裂尻鱼的粘液质指数(VSI)和肝质指数(HSI)(P<0.05)。在 SP4 处理中,FBW、WGR 和 SGR 的值最高。全鱼粗脂肪含量、背肌粘附力、白细胞(WBC)、红细胞(RBC)、血红蛋白(HGB)、血液性能、高密度脂蛋白胆固醇(HDL-c)、肠绒毛高度和日粮 SP 水平之间呈正线性和二次趋势,而背肌紧实程度、甘油三酯(TG)、葡萄糖(GLU)和日粮 SP 水平之间呈负线性和二次趋势(P<0.05).SP 的增加导致淋巴细胞 (Lym)、补体 3 (C3)、糜蛋白酶、绒毛数量和肌层厚度的二次方增加,以及肝丙二醛 (MDAP) 的二次方减少(P<0.05)。谷氨酸丙酮酸转氨酶(GPT)含量与日粮 SP 水平之间呈明显的负线性趋势,而 C4、免疫球蛋白 M(IgM)、α-淀粉酶与日粮 SP 水平之间呈明显的正线性趋势(P<0.05)。SP的增加导致肝脏的超氧化物歧化酶(SOD)、总抗氧化能力(T-AOC)和头肾的C3、C4、IgM呈线性和二次方增加(P<0.05)。肿瘤坏死因子α(TNF-α)和白细胞介素-8(IL-8)的表达水平呈线性和二次方降低,而生长因子β(TGF-β)的 mRNA 水平则随着 SP 水平的升高呈线性和二次方升高(P<0.05)。总之,SP 可被视为一种有益的饲料添加剂,可提高鱼类的生长和免疫力。根据 WGR 的二次回归模型,日粮中 0.6% 的 SP 水平对卵刺鲑的生长是最佳的。
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来源期刊
Aquaculture Nutrition
Aquaculture Nutrition 农林科学-渔业
CiteScore
7.20
自引率
8.60%
发文量
131
审稿时长
3 months
期刊介绍: Aquaculture Nutrition is published on a bimonthly basis, providing a global perspective on the nutrition of all cultivated aquatic animals. Topics range from extensive aquaculture to laboratory studies of nutritional biochemistry and physiology. The Journal specifically seeks to improve our understanding of the nutrition of aquacultured species through the provision of an international forum for the presentation of reviews and original research papers. Aquaculture Nutrition publishes papers which strive to: increase basic knowledge of the nutrition of aquacultured species and elevate the standards of published aquaculture nutrition research. improve understanding of the relationships between nutrition and the environmental impact of aquaculture. increase understanding of the relationships between nutrition and processing, product quality, and the consumer. help aquaculturalists improve their management and understanding of the complex discipline of nutrition. help the aquaculture feed industry by providing a focus for relevant information, techniques, tools and concepts.
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