Ipek Yetkin, Ghosh Parna, Mausbach William E, Jeyasingh Punidan D
Department of Integrative Biology, Oklahoma State University, Stillwater, Oklahoma 74078, United States.
Grand River Dam Authority, Langley, Oklahoma 74350, United States.
ACS ES T Water. 2024 Nov 27;4(12):5492-5505. doi: 10.1021/acsestwater.4c00575. eCollection 2024 Dec 13.
Harmful algal blooms (HABs) are often linked to the increased loading of limiting nutrients such as nitrogen and phosphorus. Little is known about the relevance of other biogenic elements, the supplies of which are spatiotemporally heterogeneous, on HABs. We measured the dissolved, bioavailable, and particulate concentrations of 26 elements at four locations draining different catchments of a large reservoir during three seasons, in addition to the total abundance of phytoplankton and % of cyanobacteria. Finally, we manipulated a key element (Fe) in microcosms to test its effect on the community. Phytoplankton abundance and community structure varied spatiotemporally, with minimal variation in N/P. The variation in environmental supplies of several other elements was correlated with phytoplankton abundance, as well as up to 3 orders of magnitude differences in cyanobacterial yield. Bioassays manipulating Fe impacted total phytoplankton as well as the abundance of cyanobacteria, with Fe-chelated treatments resulting in a significant decline in phytoplankton as well as cyanobacterial yield. In summary, we found substantial heterogeneity in elemental supplies that are relevant to the phytoplankton community. Exploring the relevance of the entire system of elements in the context of HABs may be more rewarding than studies emphasizing a subset of elements.
有害藻华(HABs)通常与氮和磷等限制性营养物质的负荷增加有关。对于其他生物源元素与有害藻华的相关性知之甚少,这些元素的供应在时空上是不均匀的。我们在三个季节里,对一个大型水库不同集水区排水的四个地点的26种元素的溶解态、生物可利用态和颗粒态浓度进行了测量,此外还测量了浮游植物的总丰度和蓝藻的百分比。最后,我们在微观世界中操控了一种关键元素(铁),以测试其对群落的影响。浮游植物的丰度和群落结构随时间和空间变化,氮/磷的变化最小。其他几种元素的环境供应变化与浮游植物丰度相关,蓝藻产量也存在高达3个数量级的差异。操控铁的生物测定影响了总浮游植物以及蓝藻的丰度,铁螯合处理导致浮游植物以及蓝藻产量显著下降。总之,我们发现与浮游植物群落相关的元素供应存在很大的不均匀性。在有害藻华的背景下探索整个元素系统的相关性可能比强调部分元素的研究更有意义。