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Nitrogen–phosphorus-associated metabolic activities during the development of a cyanobacterial bloom revealed by metatranscriptomics

机译:转录组学揭示的蓝藻水华形成过程中与氮磷有关的代谢活动

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摘要

The efforts towards reduction of nutrient contamination of surface waters have greatly gained attention to mitigate increasing incidences of harmful cyanobacterial blooms (CyanoHABs), but little attention has been paid on the roles and importance of cyanobacterial N2-fixation and phosphorus (P) scavenging pathways during cyanoHABs. Meta-transcriptomic analyses revealed that expressions of genes involved in N2-fixation (nifDKH) and P-scavenging were significantly upregulated during the bloom compared to pre-bloom in Harsha Lake. The activities of N2-fixation occurred during early summer after a late spring phytoplankton bloom, and were associated with high phosphorus and low nitrogen. The highly active cyanobacterial N2-fixers were dominated by Nostoc and Anabaena. Following the activities of N2-fixation and production of new nitrogen, an early summer Microcystis-dominated bloom, a shift of dominance from Nostoc and Anabaena to Microcystis and an increase of microcystin and saxitoxin occurred. By contrast, P-scavenging activities dominated also by Nostoc and Anabaena were associated with low P and the Microcystis bloom. This information can be used to aid in the understanding the impact that nitrogen and phosphorus have on the early summer CyanoHAB and the functional activities of Nostoc- and Anabaena-dominated or Microcystis-dominated communities, and aid in making management decisions related to harmful algal blooms.
机译:减少地表水营养物污染的努力已引起广泛关注,以减轻有害的蓝藻水华(CyanoHABs)发生率的增加,但很少有人关注蓝藻N2固定和清除磷(P)的途径和作用。 cyanoHAB。元转录组分析显示,与开花前的哈沙湖相比,开花期间显着上调了参与N2固定(nifDKH)和P清除的基因的表达。 N2固定的活动发生在春季晚些时候浮游植物开花后的初夏,并且与高磷和低氮有关。高活性的蓝细菌N2固定剂由Nostoc和Anabaena主导。随着N2固定的活动和新氮的产生,初夏以微囊藻为主的水华,从Nostoc和Anabaena的优势转移到微囊藻,并且微囊藻毒素和毒素的增加。相比之下,还由Nostoc和Anabaena主导的P清除活动与低P和微囊藻开花有关。该信息可用于帮助理解氮和磷对初夏CyanoHAB以及Nostoc和Anabaena为主或Microcystis为主的社区的功能活动的影响,并有助于做出与有害藻华有关的管理决策。

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