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有害藻类聚球藻和亚历山大藻的大量繁殖改变了约克河口的微生物组。

Blooms of the harmful algae Margalefidinium polykrikoides and Alexandrium monilatum alter the York River Estuary microbiome.

机构信息

Virginia Institute of Marine Science, William and Mary, Gloucester Point, VA, USA.

Virginia Institute of Marine Science, William and Mary, Gloucester Point, VA, USA.

出版信息

Harmful Algae. 2022 May;114:102216. doi: 10.1016/j.hal.2022.102216. Epub 2022 Mar 9.

DOI:10.1016/j.hal.2022.102216
PMID:35550296
Abstract

Harmful algal blooms (HABs) cause damage to fisheries, aquaculture, and human health around the globe. However, the impact of HABs on water column microbiomes and biogeochemistry is poorly understood. This study examined the impacts of consecutive blooms of the ichthyotoxic dinoflagellates Margalefidinium polykrikoides and Alexandrium monilatum on the water microbiome in the York River Estuary, Chesapeake Bay, USA. The samples dominated by single dinoflagellate species and by a mix of the two dinoflagellates had different microbiome compositions than the ones with low levels of both species. The M. polykrikoides bloom was co-dominated by Winogradskyella and had increased concentrations of dissolved organic carbon. The A. monilatum bloom had little impact on the prokaryotic portion of the whole community but was associated with a specific group of prokaryotes in the particle-attached (>3 µm) fraction including Candidatus Nitrosopumilus, Candidatus Actinomarina, SAR11 Clade Ia, Candidatus Bealeia, and Rhodobacteraceae HIMB11. Thus, blooms of these two algal species impacted the estuarine microbiome in different ways, likely leading to shifts in estuarine carbon and nutrient cycling, with M. polykrikoides potentially having a greater impact on carbon cycling in the estuarine ecosystem than A. monilatum.

摘要

有害藻华(HABs)在全球范围内对渔业、水产养殖和人类健康造成损害。然而,HABs 对水柱微生物组和生物地球化学的影响还知之甚少。本研究调查了鱼毒性甲藻 Margalefidinium polykrikoides 和亚历山大藻 Alexandrium monilatum 连续爆发对美国切萨皮克湾约克河河口水微生物组的影响。单一甲藻物种和两种甲藻混合主导的样本与两种物种水平低的样本具有不同的微生物组组成。M. polykrikoides 水华由 Winogradskyella 共同主导,并增加了溶解有机碳的浓度。A. monilatum 水华对整个群落的原核部分几乎没有影响,但与颗粒附着(>3 µm)部分中特定的原核生物群有关,包括 Candidatus Nitrosopumilus、Candidatus Actinomarina、SAR11 Clade Ia、Candidatus Bealeia 和 Rhodobacteraceae HIMB11。因此,这两种藻类的水华以不同的方式影响了河口微生物组,可能导致河口碳和养分循环的转变,M. polykrikoides 对河口生态系统的碳循环的影响可能比 A. monilatum 更大。

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