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口服褪黑素对养殖大菱鲆幼鱼生长性能和骨骼畸形的影响。

The Effect of Orally Supplemented Melatonin on Larval Performance and Skeletal Deformities in Farmed Gilthead Seabream ().

机构信息

Zebrafish Neuromorphology Lab, Department of Veterinary Sciences, University of Messina, 98168 Messina, Italy.

出版信息

Int J Mol Sci. 2020 Dec 16;21(24):9597. doi: 10.3390/ijms21249597.

Abstract

The gilthead seabream larval rearing in continuous light is common in most Mediterranean hatcheries to stimulate larval length growth and increase food consumption. Several studies have shown that continuous light affects larval development and increases the prevalence of skeletal deformities. Melatonin is a crucial pineal neurohormone that displays daily secretion patterns, stimulates cell proliferation and embryonic development in Atlantic salmon and zebrafish, and improves osseointegration in mice and humans. However, no studies have examined the effects of orally supplemented melatonin on skeletal deformities in larvae. We administered exogenous melatonin to gilthead seabream larvae via enriched rotifers and nauplii of Artemia. Exogenous melatonin induced bone deformities and stimulated parathyroid hormone-related protein-coding gene () mRNA expression. In addition to the melatonin-induced high expression level, the recorded non coordinated function of skeletal muscle and bone during growth can be the fountainhead of bone deformities. Both myosin light chain 2 () and bone gamma-carboxyglutamate protein-coding gene () expression levels were significantly affected by melatonin administration in an inverse dose-response manner during the exogenous melatonin administration. This is the first study to report the effect of inducing melatonin bone deformities on larvae reared under ordinary hatchery conditions.

摘要

真鲷仔鱼在持续光照下进行培育在大多数地中海孵化场中很常见,以刺激仔鱼的体长生长并增加食物消耗。多项研究表明,持续光照会影响仔鱼的发育并增加骨骼畸形的发生率。褪黑素是一种重要的松果腺神经激素,具有昼夜分泌模式,可刺激大西洋三文鱼和斑马鱼的细胞增殖和胚胎发育,并改善小鼠和人类的骨整合。然而,目前尚无研究探讨口服补充褪黑素对仔鱼骨骼畸形的影响。我们通过富营养化的轮虫和卤虫无节幼体向真鲷仔鱼投喂外源性褪黑素。外源性褪黑素诱导骨骼畸形,并刺激甲状旁腺激素相关蛋白编码基因 ()mRNA 的表达。除了褪黑素诱导的高表达水平外,在生长过程中记录到的骨骼肌肉和骨骼的非协调性功能可能是骨骼畸形的根源。在进行外源性褪黑素处理期间,褪黑素处理以反剂量反应方式显著影响肌球蛋白轻链 2 ()和骨γ-羧基谷氨酸蛋白编码基因 ()的表达水平。这是第一项报道在普通孵化条件下饲养的诱导褪黑素骨骼畸形对 幼虫影响的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3293/7766509/432315d90a44/ijms-21-09597-g001.jpg

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