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Response of coral calcification and calcifying fluid composition to thermally induced bleaching stress

机译:珊瑚钙化和钙化液成分对热致漂白应力的响应

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摘要

Severe, global-scale thermal stress events like those of 1998 and 2016, are becoming more frequent and intense, potentially compromising the future of coral reefs. Here we report the effects of the 1998 bleaching event on coral calcification as well as the composition of the calcifying fluid (cf) from which corals precipitate their calcium carbonate skeletons. This was investigated by using the Sr/Ca, Li/Mg (temperature), and boron isotopes (δ11B) and B/Ca (carbonate chemistry) proxies in a Porites sp. coral. Following the summer of 1998 the coral exhibited a prolonged period (~18 months) of reduced calcification (~60%) and a breakdown in the seasonality of the geochemical proxies. However, the maintenance of elevated dissolved inorganic carbon (DICcf; >×2 seawater) and pHcf (>8.3 compared to seawater ~8.0) even during severe stress of 1998 indicate that a minimum threshold of high aragonite saturation state (Ωcf) of ~14 (~×4 seawater), is an essential pre-requisite for coral calcification. However, despite maintaining elevated levels of Ωcf even under severe stress, coral growth is still impaired. We attribute this to reductions in either the effective active volume of calcification and/or DICcf as bleaching compromises the photosynthetically fixed carbon pool available to the coral.
机译:像1998年和2016年那样的全球性严重热应激事件正变得越来越频繁和激烈,有可能损害珊瑚礁的未来。在这里,我们报告了1998年漂白事件对珊瑚钙化的影响以及珊瑚从中沉淀出碳酸钙骨架的钙化液的成分(cf)。通过使用Porites sp。中的Sr / Ca,Li / Mg(温度)和硼同位素(δ 11 B)和B / Ca(碳酸盐化学)代理进行了研究。珊瑚。 1998年夏天之后,珊瑚表现出延长的时间(〜18个月),钙化减少(〜60%)和地球化学代理的季节性下降。然而,即使在1998年的严重压力下,仍保持较高的溶解性无机碳(DICcf;>×2海水)和pHcf(> 8.3相对于海水〜8.0),这表明文石饱和状态(Ωcf)的最低阈值约为14 (〜×4海水)是珊瑚钙化的必要先决条件。然而,尽管即使在严峻的压力下也能保持较高的Ωcf水平,但珊瑚的生长仍然受到损害。我们将其归因于钙化和/或DICcf的有效有效体积减少,因为漂白损害了可用于珊瑚的光合固定碳库。

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