Marshall Alan T, Clode Peta L, Russell Robert, Prince Kathryn, Stern Richard
Analytical Electron Microscopy Laboratory, Faculty of Science, Technology and Engineering, La Trobe University, Melbourne, VI 3086, Australia.
J Exp Biol. 2007 Jul;210(Pt 14):2453-63. doi: 10.1242/jeb.003343.
It is shown by x-ray microanalysis that a gradient of total intracellular Ca concentration exists from the outer oral ectoderm to the inner skeletogenic calicoblastic ectoderm in the coral Galaxea fascicularis. This suggests an increase in intracellular Ca stores in relation to calcification. Furthermore, Ca concentration in the fluid-filled space of the extrathecal coelenteron is approximately twice as high as in the surrounding seawater and higher than in the mucus-containing seawater layer on the exterior of the oral ectoderm. This is indicative of active Ca2+ transport across the oral epithelium. Polyps were incubated in artificial seawater in which all (40)Ca was replaced by (44)Ca. Imaging Ca2+ transport across the epithelia by secondary ion mass spectroscopy (SIMS) using (44)Ca as a tracer showed that Ca2+ rapidly entered the cells of the oral epithelium and that (44)Ca reached higher concentrations in the mesogloea and extrathecal coelenteron than in the external seawater layer. Very little Ca2+ was exchanged in the mucocytes, cnidocytes or zooxanthellae. These observations again suggest that Ca2+ transport is active and transcellular and also indicate a hitherto unsuspected role in Ca2+ transport for the mesogloea.
X射线微分析表明,在珊瑚礁群枝鹿角珊瑚中,从外口外胚层到内造骨杯状细胞外胚层存在细胞内总钙浓度梯度。这表明细胞内钙储存量与钙化有关。此外,鞘外肠腔充满液体的空间中的钙浓度大约是周围海水的两倍,且高于口外胚层外部含黏液海水层中的钙浓度。这表明钙在口腔上皮细胞上有主动运输。将珊瑚虫在人工海水中培养,其中所有的(40)钙都被(44)钙取代。使用(44)钙作为示踪剂,通过二次离子质谱(SIMS)对钙在整个上皮细胞中的运输进行成像,结果显示钙迅速进入口腔上皮细胞,并且(44)钙在中胶层和鞘外肠腔中的浓度高于外部海水层。在黏液细胞、刺细胞或虫黄藻中,钙的交换很少。这些观察结果再次表明钙的运输是主动的且跨细胞的,也表明中胶层在钙运输中迄今未被怀疑的作用。