微粒
环境化学
水柱
生物硅
浮游植物
地质遗迹
锌
锰
遗传算法
化学
不稳定性
化学海洋学
营养物
海洋学
海水
地质学
生态学
微生物
生物
微生物降解
细菌
有机化学
古生物学
硅藻
生物化学
作者
Jianshu Duan,Ryan Cloete,Jean Loock,Antonio Lanzirotti,M. Newville,Alfredo Martínez‐García,Daniel M. Sigman,Phoebe J. Lam,Alakendra N. Roychoudhury,Satish C. B. Myneni
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2024-06-13
卷期号:384 (6701): 1235-1240
被引量:7
标识
DOI:10.1126/science.adh8199
摘要
Zinc (Zn) is vital to marine organisms. Its active uptake by phytoplankton results in a substantial depletion of dissolved Zn, and Zn bound to particulate organic matter replenishes dissolved Zn in the ocean through remineralization. However, we found that particulate Zn changes from Zn bound to phosphoryls in cells to recalcitrant inorganic pools that include biogenic silica, clays, and iron, manganese, and aluminum oxides in the Southern Ocean water column. The abundances of inorganic pools increase with depth and are the only phases preserved in sediments. Changes in the particulate-Zn speciation influence Zn bioavailability and explain the decoupling of Zn and phosphorus and the correlation of Zn and silicon in the water column. These findings reveal a new dimension to the ocean Zn cycle, implicating an underappreciated role of inorganic Zn particles and their impact on biological productivity.
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