合成虾青素对黑虎对虾生长性能、色素沉着、抗氧化能力和免疫反应的影响

IF 3 2区 农林科学 Q1 FISHERIES Aquaculture Nutrition Pub Date : 2023-12-22 eCollection Date: 2023-01-01 DOI:10.1155/2023/6632067
Qiang Chen, Shuting Huang, Jieyu Dai, Congcong Wang, Songming Chen, Yuanxin Qian, Yangyang Gong, Tao Han
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引用次数: 0

摘要

合成虾青素是改善虾体色和促进生长的有效营养策略。然而,饲料中虾青素的最佳用量也因合成技术和纯度而异。在本研究中,给单节对虾(初始体重:0.3 ± 0.03 g)投喂了五种含有不同剂量合成虾青素的饲料(0% (CON)、0.02% (AX0.02)、0.04% (AX0.04)、0.08% (AX0.08)和 0.16% (AX0.16)),为期 8 周。随着饲料中虾青素含量的增加,增重和特定生长率最初上升,随后下降,最高值出现在 AX0.08。通过增强虾青素色素沉着,饵料中虾青素的补充明显改善了胴体和肌肉的颜色。同时,膳食虾青素改变了脂肪酸组成,表现为棕榈酸比例下降,肌肉中n-3多不饱和脂肪酸(n-3 PUFA)含量增加。此外,补充虾青素还能调节对虾的抗氧化能力。在血淋巴中,谷氨酸丙酮酸转氨酶(GPT)的活性呈显著下降趋势,且呈线性效应。谷氨酸草酰乙酸转氨酶(GOT)活性和丙二醛(MDA)含量先下降后上升,呈明显的二次方模式。在肝胰腺中,超氧化物歧化酶(SOD)活性和 MDA 含量随着膳食虾青素含量的增加而显著下调。在AX0.08组中,还原型谷胱甘肽(GSH)含量和过氧化氢酶(CAT)活性也明显下降。相应地,虾青素降低了运输应激下的GSH和MDA含量。此外,膳食虾青素还抑制了免疫基因(traf6、relish和myd88)的mRNA表达。根据多项式对比分析和邓肯检验的结果,膳食合成虾青素是一种合适的饲料添加剂,可改善单齿鳕的生长、体色、抗氧化能力和非特异性免疫能力。基于增重的二阶多项式回归分析表明,单子鱼膳食虾青素的最佳添加量为 90 mg kg-1。
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Effects of Synthetic Astaxanthin on the Growth Performance, Pigmentation, Antioxidant Capacity, and Immune Response in Black Tiger Prawn (Penaeus monodon).

Synthetic astaxanthin is an effective nutritional strategy for improving shrimp body color and promoting growth. However, the optimal amount of astaxanthin in feed also varies with the synthetic technology and purity. In the present study, five diets containing different doses of synthetic astaxanthin (0% (CON), 0.02% (AX0.02), 0.04% (AX0.04), 0.08% (AX0.08), and 0.16% (AX0.16)) were administered to Penaeus monodon (initial body weight: 0.3 ± 0.03 g) for 8 weeks. With an increase in astaxanthin content in feed, weight gain and specific growth rate increased initially and subsequently decreased, with the highest value appearing at AX0.08. Dietary astaxanthin supplementation obviously improved the carapace and muscle color by enhancing astaxanthin pigmentation. Meanwhile, the fatty acid profile was altered by dietary astaxanthin, as evidenced by a decline in palmitic acid proportion, along with an increase in n-3 polyunsaturated fatty acids (n-3 PUFA) contents in muscle. In addition, dietary astaxanthin supplementation regulated prawn's antioxidant capacity. In the hemolymph, the activities of glutamic pyruvic transaminase (GPT) showed a significantly decrease trend with linear effect. The activities of glutamic oxaloacetic transaminase (GOT) and the contents of malondialdehyde (MDA) were first downregulated and then upregulated with significantly quadratic pattern. In the hepatopancreas, the activities of superoxide dismutase (SOD) and the contents of MDA were significantly downregulated with the increase of dietary astaxanthin levels. Reduced glutathione (GSH) contents and catalase (CAT) activities were also significantly decreased in group AX0.08. Correspondingly, astaxanthin decreased GSH and MDA contents under transportation stress. Moreover, the mRNA expression of immune genes (traf6, relish, and myd88) were inhibited by dietary astaxanthin supplementation. Based on the results of polynomial contrasts analysis and Duncan's test, dietary synthetic astaxanthin is a suitable feed additive to improve the growth, body color, antioxidant capacity, and nonspecific immunity of P. monodon. According to the second-order polynomial regression analysis based on the weight gain, the optimal supplementation level of dietary astaxanthin was 90 mg kg-1 in P. monodon.

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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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