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首页> 外文期刊>Journal of Morphology >Identification of a new mineralized tissue in the notochord of reared Siberian sturgeon ( Acipenser baerii Acipenser baerii )
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Identification of a new mineralized tissue in the notochord of reared Siberian sturgeon ( Acipenser baerii Acipenser baerii )

机译:鉴定西伯利亚鲟(Acipenser Baerii Acipenser Baerii)的脊索脊索中的一种新型矿化组织

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摘要

Abstract In a study aiming to improve knowledge on the mineralization of the axial skeleton in reared Siberian sturgeon ( Acipenser baerii Brandt, 1869), we discovered a new mineralized tissue within the notochord. To our knowledge, such a structure has never been reported in any vertebrate species with the exception of the pathological mineralization of the notochord remains in degenerative intervertebral disks of mammals. Here, we describe this enigmatic tissue using X‐ray microtomography, histological analyses and solid state NMR‐spectroscopy. We also performed a 1‐year monitoring of the mineral content (MC) of the notochord in relation with seasonal variations of temperature. In all specimens studied from 2‐year‐old juveniles onwards, this mineralized structure was found within a particular region of the notochord called funiculus . This feature first appears in the abdominal region then extends posteriorly with ageing, while the notochord MC also increases. The mineral phase is mainly composed of amorphous calcium phosphate, a small amount of which changes into hydroxyapatite with ageing. The putative role of this structure is discussed as either a store of minerals available for the phosphocalcic metabolism, or a mechanical support in a species with a poorly mineralized axial skeleton. A pathological feature putatively related to rearing conditions is also discussed.
机译:摘要旨在提高西伯利亚鲟鱼轴骨架矿化知识的研究(Acipenser Baerii Brandt,1869),我们发现了脊索内的新型矿化组织。据我们所知,这种结构从未在任何脊椎动物种类中报道,除了脊索的病理矿化仍然存在于哺乳动物的退行性椎间盘中的病理矿化。在这里,我们使用X射线微微映射,组织学分析和固态NMR光谱来描述这种神经组织。我们还对与季节性变化的温度有关进行了1年监测脊索的矿物质含量(MC)。在所有从2岁的少年学习的标本开始时,该矿化结构被发现在涉及吞噬的特定区域内。该特征首先出现在腹部区域中,随后延伸到老化后,而诺奇MC也增加。矿物相主要由非晶磷酸钙组成,少量随老化变为羟基磷灰石。该结构的推定作用被讨论为可用于磷酸钙代谢的矿物质储存,或者在具有较差的轴向骨架中的物种中的机械支撑。还讨论了借助于饲养条件的病理特征。

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