Suga S, Wada K, Taki Y, Ogawa M
Department of Pathology, Nippon Dental University, School of Dentistry, Tokyo, Japan.
J Dent Res. 1989 Jun;68(6):1115-23. doi: 10.1177/00220345890680061201.
It is known that iron is deposited in the enameloid of some teleost fishes, although its biological significance has not been clarified. In the present investigation, a quantitative analysis of iron in the enameloid of fishes of a primitive suborder, the Balistoidei, and an advanced suborder, the Tetra-odontoidei, of the Tetra-odontiformes of marine teleosts was performed by means of the electron microprobe. The results indicated that the enameloid of Balistoidei contained from 0.4-13.5% iron at its surface layer, whereas that of Tetra-odontoidei was very low in iron, which could not be discriminated from the background value of the emission intensity. The enameloid of three perciform species belonging to the Acanthuridae--from which the Tetra-odontiformes are considered to have been derived--also contained high iron (2.7-3.9%) throughout its entire layer. The iron concentration in the enameloid seemed to be related to the phylogeny of fishes rather than to their environmental water and feeding habits, and it is believed that the mechanisms of iron concentration into the developing enameloid have been lost during evolution from the Achanthuridae to the Tetra-odontoidei. Since a similar phenomenon has been previously observed with respect to the fluoride concentration in the enameloid of the same fishes (Suga et al., 1981a), it is speculated that the concentrations of iron and fluoride, which have originally no chemical correlation, have some special biological significance, although the timing and distribution pattern of their deposition are completely different.
已知铁沉积在一些硬骨鱼类的釉质中,但其生物学意义尚未阐明。在本研究中,通过电子微探针技术对海洋硬骨鱼类鲀形目的一个原始亚目——鳞鲀亚目和一个高级亚目——鲀亚目的鱼类釉质中的铁进行了定量分析。结果表明,鳞鲀亚目的釉质表层含铁量为0.4%-13.5%,而鲀亚目的釉质中铁含量非常低,无法与发射强度的背景值区分开来。属于刺尾鱼科的三种鲈形目鱼类的釉质——鲀形目被认为是由刺尾鱼科进化而来——在其整个层中也含有高铁(2.7%-3.9%)。釉质中的铁浓度似乎与鱼类的系统发育有关,而不是与它们的环境水和摄食习性有关,据信在从刺尾鱼科进化到鲀亚目的过程中,铁进入发育中的釉质的机制已经丧失。由于之前在相同鱼类的釉质中观察到了类似的氟浓度现象(Suga等人,1981a),因此推测原本没有化学相关性的铁和氟的浓度具有某种特殊的生物学意义,尽管它们沉积的时间和分布模式完全不同。