Mussel larvae modify calcifying fluid carbonate chemistry to promote calcification.

Ramesh, Kirti; Hu, Marian Y; Thomsen, Jörn; Bleich, Markus; Melzner, Frank · Nat Commun · 2017

basic_science · Level V

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Abstract

Understanding mollusk calcification sensitivity to ocean acidification (OA) requires a better knowledge of calcification mechanisms. Especially in rapidly calcifying larval stages, mechanisms of shell formation are largely unexplored-yet these are the most vulnerable life stages. Here we find rapid generation of crystalline shell material in mussel larvae. We find no evidence for intracellular CaCO<sub>3</sub> formation, indicating that mineral formation could be constrained to the calcifying space beneath the shell. Using microelectrodes we show that larvae can increase pH and [CO<sub>3</sub><sup>2-</sup>] beneath the growing shell, leading to a ~1.5-fold elevation in calcium carbonate saturation state (Ω<sub>arag</sub>). Larvae exposed to OA exhibit a drop in pH, [CO<sub>3</sub><sup>2-</sup>] and Ω<sub>arag</sub> at the site of calcification, which correlates with decreased shell growth, and, eventually, shell dissolution. Our findings help explain why bivalve larvae can form shells under moderate acidification scenarios and provide a direct link between ocean carbonate chemistry and larval calcification rate.

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