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首页> 外文期刊>Harmful Algae >Ammonium recycling supports toxic Planktothrix blooms in Sandusky Bay, Lake Erie: Evidence from stable isotope and metatranscriptome data
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Ammonium recycling supports toxic Planktothrix blooms in Sandusky Bay, Lake Erie: Evidence from stable isotope and metatranscriptome data

机译:铵回收支持伊利湖桑达斯基湾的有毒浮游藻繁殖:来自稳定同位素和超转录组数据的证据

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Sandusky Bay, Lake Erie, receives high nutrient loadings (nitrogen and phosphorus) from the Sandusky River, which drains an agricultural watershed. Eutrophication and cyanobacterial harmful algal blooms (cyanoHABs) persist throughout summer. Planktothrix agardhii is the dominant bloom-forming species and the main producer of microcystins in Sandusky Bay. Non-N-2 fixing cyanobacteria, such as Planktothrix and Microcystis, thrive on chemically reduced forms of nitrogen, such as ammonium (NH4+) and urea. Ammonium regeneration and potential uptake rates and total microbial community demand for NH4+ were quantified in Sandusky Bay. Potential NH4+ uptake rates in the light increased from June to August at all stations. Dark uptake rates also increased seasonally and, by the end of August, were on par with light uptake rates. Regeneration rates followed a similar pattern and were significantly higher in August than June. Ammonium uptake kinetics during a Planktothrix-dominated bloom in Sandusky Bay and a Microcystis-dominated bloom in Maumee Bay were also compared. The highest half saturation constant (K-m) in Sandusky Bay was measured in June and decreased throughout the season. In contrast, K-m values in Maumee Bay were lowest at the beginning of summer and increased in October. A significant increase in V-max in Sandusky Bay was observed between July and the end of August, reflective of intense competition for depleted NH4+. Metatranscriptome results from Sandusky Bay show a shift from cyanophycin synthetase (luxury NH4+ uptake; cphA1) expression in early summer to cyanophycinase (intracellular N mobilization; cphB/cphA2) expression in August, supporting the interpretation that the microbial community is nitrogen-starved in late summer. Combined, our results show that, in late summer, when nitrogen concentrations are low, cyanoHABs in Sandusky Bay rely on regenerated NH4+ to support growth and toxin production. Increased dark NH4+ uptake late in summer suggests an important heterotrophic contribution to NH4+ depletion in the phycosphere. Kinetic experiments in the two bays suggest a competitive advantage for Planktothrix over Microcystis in Sandusky Bay due to its higher affinity for NH4+ at low concentrations.
机译:伊利湖的桑达斯基海湾从桑达斯基河接收大量的营养物(氮和磷),桑达斯基河排泄了一个农业流域。整个夏天持续发生富营养化和蓝藻有害藻华(cyanoHAB)。浮游植物琼脂(Planktothrix agardhii)是桑达斯基湾(Sandusky Bay)的主要开花形成物种,也是微囊藻毒素的主要生产者。非N-2固定蓝细菌(例如Planktothrix和Microcystis)可依靠化学还原形式的氮(例如铵(NH4 +)和尿素)获得旺盛的生长。在桑达斯基湾对铵的再生,潜在的吸收率以及微生物群落对NH4 +的总需求进行了量化。从6月到8月,所有站点的潜在NH4 +吸收率都有所增加。暗吸收率也随季节增加,到8月底,与暗吸收率相当。再生率遵循类似的模式,八月份的再生率明显高于六月。还比较了桑达斯基湾以浮游生物为主的水华和莫米湾以微囊藻为主的水华的铵吸收动力学。六月,测量了桑达斯基湾的最高半饱和常数(K-m),并在整个季节内降低了饱和常数。相比之下,莫米湾的K-m值在夏季初最低,在10月增加。在7月至8月底之间,桑达斯基湾的V-max显着增加,这反映了对耗尽的NH4 +的激烈竞争。桑达斯基湾的转录组结果表明,夏季初从蓝霉素合成酶(豪华的NH4 +吸收; cphA1)表达向八月份的蓝霉素酶(细胞内N迁移; cphB / cphA2)表达转变,支持了微生物群落在后期后期氮饥饿的解释。夏天。综合来看,我们的结果表明,在夏末,当氮浓度较低时,桑达斯基湾的cyanoHAB依靠再生的NH4 +来支持生长和毒素产生。夏季末增加的深色NH4 +吸收量表明,对营养层中NH4 +的消耗具有重要的异养作用。在两个海湾进行的动力学实验表明,普兰托克克斯藻比桑达斯基海湾的微囊藻更具竞争优势,因为它在低浓度下对NH4 +具有更高的亲和力。

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