Wei Yuqiu, Sun Jun
Key Laboratory of Sustainable Development of Marine Fisheries, Ministry of Agriculture and Rural Affairs, Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao, China.
Laboratory for Marine Fisheries Science and Food Production Processes, Pilot National Laboratory for Marine Science and Technology, Qingdao, China.
Front Microbiol. 2022 Jun 9;13:918120. doi: 10.3389/fmicb.2022.918120. eCollection 2022.
Marine picophytoplankton (<2 μm) play a key role in supporting food web and energy flow in the ocean, and are major contributors to the global marine carbon (C) cycle. In recent years, picophytoplankton have been found to have significant silica (Si) accumulation, a finding which provides a new sight into the interaction of marine C and Si cycles and questions the overwhelming role of large diatoms (>2 μm) in the Si cycle. As picophytoplankton have high cell abundance and wide distribution in the open ocean, exploring their influences on the C and Si cycles as well as other element cycles are becoming new scientific hotspots. However, there are still few studies on the physiology and ecology of picophytoplankton, especially their potential roles in the biogeochemical Si cycle at present. Thus, it is necessary to accurately evaluate and quantify the contributions of picophytoplankton to the C and Si cycles, and to further understand their C and Si sinking mechanisms. In this review, we expect to have a novel understanding of picophytoplankton Si pool and regulation mechanism by conducting targeted studies on these scientific issues. This also provides a premise foundation and theoretical framework for further study of the role of small cells in the global ocean Si cycle and the coupling of C and Si cycles.
海洋微微型浮游植物(<2微米)在支持海洋食物网和能量流动方面发挥着关键作用,并且是全球海洋碳(C)循环的主要贡献者。近年来,已发现微微型浮游植物有显著的硅(Si)积累,这一发现为海洋碳和硅循环的相互作用提供了新视角,并对大型硅藻(>2微米)在硅循环中的主导作用提出了质疑。由于微微型浮游植物在开阔海洋中细胞丰度高且分布广泛,探索它们对碳和硅循环以及其他元素循环的影响正成为新的科学热点。然而,目前关于微微型浮游植物的生理学和生态学研究仍然很少,尤其是它们在生物地球化学硅循环中的潜在作用。因此,有必要准确评估和量化微微型浮游植物对碳和硅循环的贡献,并进一步了解它们的碳和硅沉降机制。在这篇综述中,我们期望通过对这些科学问题进行有针对性的研究,对微微型浮游植物的硅库和调控机制有全新的认识。这也为进一步研究小细胞在全球海洋硅循环中的作用以及碳和硅循环的耦合提供了前提基础和理论框架。