Changes in Digestive Enzyme Activities during Larval Development of Spotted Seatrout (Cynoscion nebulosus)

IF 3 2区 农林科学 Q1 FISHERIES Aquaculture Nutrition Pub Date : 2024-05-08 DOI:10.1155/2024/1309390
Martín Alberto Arenas-Pardo, Martha Gabriela Gaxiola-Cortés, Alvaro Fabricio Barreto-Altamirano, Adriana del Carmen Paredes-Medina, Iveth Gabriela Palomino-Albarrán, Patricia Margarita Balam-Uc, Juan Carlos Maldonado-Flores, Carlos Alfonso Álvarez-González
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Abstract

The spotted seatrout (Cynoscion nebulosus)—an important commercial species—has a high potential for aquaculture in the Gulf of Mexico. To optimize its feeding during larval rearing, this study aims to evaluate the primary gastric (pepsin), intestinal (leucine aminopeptidase and alkaline phosphatase), and pancreatic (alkaline protease, trypsin, chymotrypsin, amylase, and lipase) enzyme activities from hatching to day 30. A multivariate analysis identified three digestive enzyme development stages during the spotted seatrout larval transformation. The first stage occurred between 1 (mean ± standard error (SE) = 1.73 ± 0.14 millimeter (mm) standard length (SL)) and 3 (2.14 ± 0.07 mm SL) days after hatching (DAH); a period of digestive stability showed the highest activity in amylase and bile salt-dependent lipase. The second stage (from 4 (2.53 ± 0.09 mm SL) to 20 (10.92 ± 0.51 mm SL) DAH) was a period of digestive transition, during which leucine aminopeptidase, chymotrypsin, and alkaline proteases were identified as the predominant enzymes from 4 to 5 DAH. In the third stage—a period of digestive stability—pepsin was the major enzyme that occurred between 25 (16.51 ± 0.81 mm SL) and 30 (25.91 ± 0.82 mm SL) DAH. These results indicate that the spotted seatrout larvae have a digestive system adapted to lipids and carbohydrates at the onset of feeding, with an immediate transition to protein digestion when exogenous feeding begins. Additionally, the digestive system of the spotted seatrout may be considered mature at 25 DAH. Further research is needed to elucidate the mechanisms of digestive tract development in the spotted seatrout larvae.

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斑海鳟鱼(Cynoscion nebulosus)幼体发育过程中消化酶活性的变化
斑点叉尾鮰(Cynoscion nebulosus)是一种重要的商业鱼种,在墨西哥湾具有很高的养殖潜力。为了优化幼体饲养期间的喂养,本研究旨在评估从孵化到第 30 天的初级胃(胃蛋白酶)、肠(亮氨酸氨肽酶和碱性磷酸酶)和胰(碱性蛋白酶、胰蛋白酶、糜蛋白酶、淀粉酶和脂肪酶)酶活性。多变量分析确定了斑点叉尾鮰幼鱼蜕变过程中消化酶的三个发育阶段。第一阶段发生在孵化后第 1 天(平均值 ± 标准误差 (SE) = 1.73 ± 0.14 毫米标准长度 (SL))至第 3 天(2.14 ± 0.07 毫米标准长度 (SL))之间;在这一消化稳定时期,淀粉酶和胆盐依赖性脂肪酶的活性最高。第二阶段(从孵化后第 4 天(2.53 ± 0.09 mm SL)到孵化后第 20 天(10.92 ± 0.51 mm SL))是消化过渡时期,在此期间,亮氨酸氨肽酶、糜蛋白酶和碱性蛋白酶被确定为孵化后第 4 到 5 天的主要酶。在第三阶段--消化稳定期,胃蛋白酶是主要的酶,出现在25(16.51 ± 0.81 mm SL)到30(25.91 ± 0.82 mm SL)DAH之间。这些结果表明,斑点叉尾鲈幼体的消化系统在开始摄食时适应脂质和碳水化合物,在开始摄食外源食物时立即过渡到蛋白质消化。此外,斑马鱼的消化系统在25 DAH时可视为成熟。要阐明斑座鳟幼鱼消化道的发育机制,还需要进一步的研究。
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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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