Fietzke Jan, Wall Marlene
GEOMAR Helmholtz Center for Ocean Research Kiel, Wischhofstr. 1-3, 24148 Kiel, Germany.
Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI), Am Handelshafen 12, 27570 Bremerhaven, Germany.
Sci Adv. 2022 Mar 18;8(11):eabj4172. doi: 10.1126/sciadv.abj4172.
Coral calcification is a complex biologically controlled process of hard skeleton formation, and it is influenced by environmental conditions. The chemical composition of coral skeletons responds to calcification conditions and can be used to gain insights into both the control asserted by the organism and the environment. Boron and its isotopic composition have been of particular interest because of links to carbon chemistry and pH. In this study, we acquired high-resolution boron images (concentration and isotopes) in a skeleton sample of the azooxanthellate cold-water coral . We observed high boron variability at a small spatial scale related to skeletal structure. This implies differences in calcification control during different stages of skeleton formation. Our data point to bicarbonate active transport as a critical pathway during early skeletal growth, and the variable activity rates explain the majority of the observed boron systematic.
珊瑚钙化是一个复杂的生物控制的硬骨骼形成过程,并且它受到环境条件的影响。珊瑚骨骼的化学成分对钙化条件作出反应,可用于深入了解生物体和环境所施加的控制。硼及其同位素组成由于与碳化学和pH值的联系而备受关注。在本研究中,我们在无共生藻冷水珊瑚的骨骼样本中获取了高分辨率硼图像(浓度和同位素)。我们观察到在与骨骼结构相关的小空间尺度上硼的高变异性。这意味着在骨骼形成的不同阶段钙化控制存在差异。我们的数据表明,碳酸氢根主动运输是早期骨骼生长过程中的关键途径,而可变的活性速率解释了观察到的大部分硼的系统性。