Marine Biology Department, Centre Scientifique de Monaco, 8 Quai Antoine 1er, 98000 Monaco
Marine Biology Department, Centre Scientifique de Monaco, 8 Quai Antoine 1er, 98000 Monaco.
J Exp Biol. 2020 Sep 3;223(Pt 17):jeb227074. doi: 10.1242/jeb.227074.
Coral calcification relies on the transport of ions and molecules to the extracellular calcifying medium (ECM). Little is known about paracellular transport (via intercellular junctions) in corals and other marine calcifiers. Here, we investigated whether the permeability of the paracellular pathway varied in different environmental conditions in the coral Using the fluorescent dye calcein, we characterised the dynamics of calcein influx from seawater to the ECM and showed that increases in paracellular permeability (leakiness) induced by hyperosmotic treatment could be detected by changes in calcein influx rates. We then used the calcein-imaging approach to investigate the effects of two environmental stressors on paracellular permeability: seawater acidification and temperature change. Under conditions of seawater acidification (pH 7.2) known to depress pH in the ECM and the calcifying cells of , we observed a decrease in half-times of calcein influx, indicating increased paracellular permeability. By contrast, high temperature (31°C) had no effect, whereas low temperature (20°C) caused decreases in paracellular permeability. Overall, our study establishes an approach to conduct further investigation of paracellular transport and suggests that changes in paracellular permeability could form an uncharacterised aspect of the physiological response of to seawater acidification.
珊瑚钙化依赖于离子和分子向细胞外钙化介质(ECM)的转运。关于珊瑚和其他海洋钙化生物的细胞旁转运(通过细胞间连接)知之甚少。在这里,我们研究了在珊瑚不同环境条件下,细胞旁途径的通透性是否会发生变化。使用荧光染料 calcein,我们从海水中到 ECM 的 calcein 流入的动力学特征,并表明通过 calcein 流入率的变化可以检测到由高渗处理诱导的细胞旁通透性(渗漏)增加。然后,我们使用 calcein 成像方法研究了两种环境胁迫因子对细胞旁通透性的影响:海水酸化和温度变化。在已知会降低 ECM 和珊瑚钙化细胞 pH 的海水酸化条件(pH 7.2)下,我们观察到 calcein 流入的半衰期减少,表明细胞旁通透性增加。相比之下,高温(31°C)没有影响,而低温(20°C)则降低了细胞旁通透性。总的来说,我们的研究建立了一种方法来进一步研究细胞旁转运,并表明细胞旁通透性的变化可能是珊瑚对海水酸化生理反应的一个未被描述的方面。