Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, China.
College of Environmental Science and Engineering, Guilin University of Technology, Guilin, 541006, China.
Bull Environ Contam Toxicol. 2024 Aug 23;113(3):31. doi: 10.1007/s00128-024-03939-1.
Aluminum (Al) is the most abundant metal element in the Earth's crust, yet it is present in trace levels in seawater. Growing evidence suggests potential effects of Al on the biogeochemical cycles of carbon (C) and silicon (Si) in the marine environment. By accumulation, sinking, and deposition, diatoms play a center role in coupling these three elements' biocycles in the oceans. However, it is still a challenge to elucidate the behaviors of diatoms influenced by Al. Our review aims to present the current knowledge of Al biogeochemistry in marine environment and its impact on marine phytoplankton, with a focus on how Al influences diatoms. Previous researches indicate that Al can promote the growth of diatoms, and diatoms have the ability to incorporate Al into their frustules. Given this, we paid particular attention on the interaction between Al and diatom frustules, and the influences of Al on the physiology and ecology of diatoms. Furthermore, it is suggested that Al alters the accumulation of other nutrients such as nitrogen, phosphorus and iron in diatoms; the subsequent responses of diatoms are also discussed. The objective of this review is to address the potential roles of Al in diatoms and offer insights into the possible biogeochemistry implications.
铝(Al)是地壳中含量最丰富的金属元素,但在海水中的含量却很低。越来越多的证据表明,铝可能对海洋环境中碳(C)和硅(Si)的生物地球化学循环产生影响。通过积累、下沉和沉积,硅藻在海洋中这三种元素的生物循环中起着核心作用。然而,阐明受铝影响的硅藻的行为仍然是一个挑战。我们的综述旨在介绍海洋环境中铝生物地球化学及其对海洋浮游植物的影响,重点介绍铝如何影响硅藻。先前的研究表明,铝可以促进硅藻的生长,而且硅藻有能力将铝纳入其外壳。有鉴于此,我们特别关注铝与硅藻外壳之间的相互作用,以及铝对硅藻生理和生态学的影响。此外,有人认为铝会改变氮、磷和铁等其他营养物质在硅藻中的积累;随后还讨论了硅藻的反应。本综述的目的是探讨铝在硅藻中的潜在作用,并深入了解可能的生物地球化学意义。