摄食率和蛋白质品质对斑马鱼生长和摄食效率响应变量的差异影响

IF 1.4 4区 生物学 Q4 DEVELOPMENTAL BIOLOGY Zebrafish Pub Date : 2022-06-01 Epub Date: 2022-05-06 DOI:10.1089/zeb.2022.0002
Shaley Valentine, Karolina Kwasek
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引用次数: 1

摘要

控制摄食率和蛋白质品质可以提高养殖鱼种的生长和摄食效率。然而,究竟摄食率、蛋白质品质,还是两者的交互作用对生长和摄食效率响应变量的影响更大,目前尚不清楚。为了确定摄食率和蛋白质质量是否单独或相互影响生长和摄食效率,研究人员向斑马鱼幼鱼(Danio rerio)提供营养相似的饲料,包括鲱鱼鱼粉蛋白质,或100%用豆粕蛋白替代鱼粉。在整个研究期间,测量了猪的总长度、体重、采食量和饲料系数(FCR)。蛋白质质量和摄食率分别和相互作用影响采食量和饲料转化率:饲喂饱腹饲料的斑马鱼的生长和饲料转化率高于饲喂限制饲料的斑马鱼,饲喂豆粕型饲料的斑马鱼的生长和饲料转化率低于饲喂鱼粉型饲料的斑马鱼,但其影响程度取决于摄食率。这些发现可能表明,豆粕的消化率较低,或豆粕中存在抗营养因子,导致以豆粕为基础的饲料对鱼类的营养吸收受损。蛋白质质量和摄食率之间测量的反应变量的差异突出了确定营养研究中相互作用效应的重要性。
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Feeding Rate and Protein Quality Differentially Affect Growth and Feeding Efficiency Response Variables of Zebrafish (Danio rerio).

Manipulating feeding rate and protein quality may improve growth and feeding efficiency of cultured species. However, whether feeding rate, protein quality, or their interaction has a greater effect on growth and feeding efficiency response variables is unknown. To determine whether feeding rate and protein quality individually or interactively affect growth and feeding efficiency, juvenile Zebrafish (Danio rerio) were either offered nutritionally similar diet consisting of either menhaden fishmeal protein or a 100% replacement of fishmeal with soybean meal-based protein restrictively or to satiation. Total length, weight, feed intake, and feed conversion ratio (FCR) were measured throughout the duration of the study. Protein quality and feeding rate individually and interactively affected feed intake and FCR: Zebrafish offered feed to satiation had higher growth and FCR than those fed restrictively, and Zebrafish fed soybean meal-based diet showed lower growth and higher FCR and feed intake compared to those fed fishmeal-based diet, although magnitude of response depended on feeding rate. These findings likely indicate lower digestibility of soybean meal or the presence of antinutritional factors in soybean meal that led to impaired nutrient absorption of fish offered soybean meal-based diet. Differences in measured response variables between protein qualities and feeding rates highlight the importance of determining interactive effects in nutritional studies.

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来源期刊
Zebrafish
Zebrafish DEVELOPMENTAL BIOLOGY-ZOOLOGY
CiteScore
3.60
自引率
5.00%
发文量
29
审稿时长
3 months
期刊介绍: Zebrafish is the only peer-reviewed journal dedicated to the central role of zebrafish and other aquarium species as models for the study of vertebrate development, evolution, toxicology, and human disease. Due to its prolific reproduction and the external development of the transparent embryo, the zebrafish is a prime model for genetic and developmental studies. While genetically more distant from humans, the vertebrate zebrafish nevertheless has comparable organs and tissues, such as heart, kidney, pancreas, bones, and cartilage. Zebrafish introduced the new section TechnoFish, which highlights these innovations for the general zebrafish community. TechnoFish features two types of articles: TechnoFish Previews: Important, generally useful technical advances or valuable transgenic lines TechnoFish Methods: Brief descriptions of new methods, reagents, or transgenic lines that will be of widespread use in the zebrafish community Zebrafish coverage includes: Comparative genomics and evolution Molecular/cellular mechanisms of cell growth Genetic analysis of embryogenesis and disease Toxicological and infectious disease models Models for neurological disorders and aging New methods, tools, and experimental approaches Zebrafish also includes research with other aquarium species such as medaka, Fugu, and Xiphophorus.
期刊最新文献
Fish in a Dish: Using Zebrafish in Authentic Science Research Experiences for Under-represented High School Students from West Virginia. Novel Development of Magnetic Resonance Imaging to Quantify the Structural Anatomic Growth of Diverse Organs in Adult and Mutant Zebrafish. Zebrafish (Danio rerio) Gynogenetic Production by Heat Shock: Comparison Between Mitotic and Meiotic Treatment. Curcumin-Encapsulated Nanomicelles Promote Tissue Regeneration in Zebrafish Eleutheroembryo. Incorporating Primer Amplification Efficiencies in Quantitative Reverse Transcription Polymerase Chain Reaction Experiments; Considerations for Differential Gene Expression Analyses in Zebrafish.
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