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幼年大西洋鲑(Salmo salar)的原发性磷缺乏骨骼表型:骨形成与矿化的解偶联

A primary phosphorus-deficient skeletal phenotype in juvenile Atlantic salmon Salmo salar: the uncoupling of bone formation and mineralization.

作者信息

Witten P E, Owen M A G, Fontanillas R, Soenens M, McGurk C, Obach A

机构信息

Ghent University, Department of Biology, Ledeganckstraat 35, 9000, Ghent, Belgium.

Skretting Aquaculture Research Centre, P. O. Box 48, N-4001, Stavanger, Norway.

出版信息

J Fish Biol. 2016 Feb;88(2):690-708. doi: 10.1111/jfb.12870. Epub 2015 Dec 28.

Abstract

To understand the effect of low dietary phosphorus (P) intake on the vertebral column of Atlantic salmon Salmo salar, a primary P deficiency was induced in post-smolts. The dietary P provision was reduced by 50% for a period of 10 weeks under controlled conditions. The animal's skeleton was subsequently analysed by radiology, histological examination, histochemical detection of minerals in bones and scales and chemical mineral analysis. This is the first account of how a primary P deficiency affects the skeleton in S. salar at the cellular and at the micro-anatomical level. Animals that received the P-deficient diet displayed known signs of P deficiency including reduced growth and soft, pliable opercula. Bone and scale mineral content decreased by c. 50%. On radiographs, vertebral bodies appear small, undersized and with enlarged intervertebral spaces. Contrary to the X-ray-based diagnosis, the histological examination revealed that vertebral bodies had a regular size and regular internal bone structures; intervertebral spaces were not enlarged. Bone matrix formation was continuous and uninterrupted, albeit without traces of mineralization. Likewise, scale growth continues with regular annuli formation, but new scale matrix remains without minerals. The 10 week long experiment generated a homogeneous osteomalacia of vertebral bodies without apparent induction of skeletal malformations. The experiment shows that bone formation and bone mineralization are, to a large degree, independent processes in the fish examined. Therefore, a deficit in mineralization must not be the only cause of the alterations of the vertebral bone structure observed in farmed S. salar. It is discussed how the observed uncoupling of bone formation and mineralization helps to better diagnose, understand and prevent P deficiency-related malformations in farmed S. salar.

摘要

为了解低磷饮食摄入对大西洋鲑(Salmo salar)脊柱的影响,在降海型幼鲑中诱发了原发性磷缺乏。在可控条件下,将饮食中的磷供应量减少50%,持续10周。随后通过放射学、组织学检查、骨骼和鳞片中矿物质的组织化学检测以及化学矿物质分析对动物的骨骼进行分析。这是首次阐述原发性磷缺乏如何在细胞和微观解剖水平上影响大西洋鲑的骨骼。接受低磷饮食的动物表现出已知的磷缺乏症状,包括生长减缓以及鳃盖柔软易弯曲。骨骼和鳞片中的矿物质含量降低了约50%。在X光片上,椎体显得小、尺寸不足且椎间隙增宽。与基于X光的诊断结果相反,组织学检查显示椎体大小正常且内部骨结构正常;椎间隙并未增宽。骨基质形成持续且不间断,尽管没有矿化痕迹。同样,鳞片生长继续,有规则的年轮形成,但新的鳞片基质仍无矿物质。为期10周的实验导致椎体出现均匀的骨软化,未明显诱发骨骼畸形。该实验表明,在所研究的鱼类中,骨形成和骨矿化在很大程度上是独立的过程。因此,矿化不足不一定是养殖大西洋鲑中观察到的椎骨结构改变的唯一原因。文中讨论了所观察到的骨形成与矿化的解偶联如何有助于更好地诊断、理解和预防养殖大西洋鲑中与磷缺乏相关的畸形。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7420/4784172/e2eb1be79d69/JFB-88-690-g001.jpg

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