Marine Biology Department, Centre Scientifique de Monaco (CSM), 8 Quai Antoine 1er, Monte Carlo, 9800, Monaco.
Sorbonne Université, Collège Doctoral, 75005, Paris, France.
Sci Rep. 2022 Aug 6;12(1):13515. doi: 10.1038/s41598-022-17022-4.
In hermatypic scleractinian corals, photosynthetic fixation of CO and the production of CaCO are intimately linked due to their symbiotic relationship with dinoflagellates of the Symbiodiniaceae family. This makes it difficult to study ion transport mechanisms involved in the different pathways. In contrast, most ahermatypic scleractinian corals do not share this symbiotic relationship and thus offer an advantage when studying the ion transport mechanisms involved in the calcification process. Despite this advantage, non-symbiotic scleractinian corals have been systematically neglected in calcification studies, resulting in a lack of data especially at the molecular level. Here, we combined a tissue micro-dissection technique and RNA-sequencing to identify calcification-related ion transporters, and other candidates, in the ahermatypic non-symbiotic scleractinian coral Tubastraea spp. Our results show that Tubastraea spp. possesses several calcification-related candidates previously identified in symbiotic scleractinian corals (such as SLC4-γ, AMT-1like, CARP, etc.). Furthermore, we identify and describe a role in scleractinian calcification for several ion transporter candidates (such as SLC13, -16, -23, etc.) identified for the first time in this study. Taken together, our results provide not only insights about the molecular mechanisms underlying non-symbiotic scleractinian calcification, but also valuable tools for the development of biotechnological solutions to better control the extreme invasiveness of corals belonging to this particular genus.
在有孔虫螅型珊瑚中,由于与 Symbiodiniaceae 家族的甲藻共生关系,CO 的光合作用固定和 CaCO 的产生密切相关。这使得研究涉及不同途径的离子转运机制变得困难。相比之下,大多数无共生有孔虫螅型珊瑚没有这种共生关系,因此在研究钙化过程中涉及的离子转运机制时具有优势。尽管有这个优势,但无共生有孔虫螅型珊瑚在钙化研究中一直被系统地忽视,导致数据缺乏,尤其是在分子水平上。在这里,我们结合组织微切割技术和 RNA 测序,鉴定了无共生有孔虫螅型珊瑚 Tubastraea spp. 中的钙化相关离子转运体和其他候选物。我们的结果表明,Tubastraea spp. 拥有几种先前在共生有孔虫螅型珊瑚中鉴定出的钙化相关候选物(如 SLC4-γ、AMT-1like、CARP 等)。此外,我们还鉴定并描述了几种离子转运体候选物(如 SLC13、-16、-23 等)在有孔虫螅型珊瑚钙化中的作用,这些候选物是在本研究中首次鉴定出来的。总之,我们的研究结果不仅为非共生有孔虫螅型珊瑚钙化的分子机制提供了深入的了解,还为开发生物技术解决方案提供了有价值的工具,以更好地控制属于这一特定属的珊瑚的极端入侵性。