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The Role of Cyanobacterial External Layers in Mass Transfer: Evidence from Temperature Shock Experiments by Noninvasive Microtest Technology

机译:Cyanobacterial外层在大规模转移中的作用:来自无侵袭性微热技术的温度休克实验的证据

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摘要

Groundwork on cyanobacterial external layers is crucial for an improved understanding of the persistent dominance of cyanobacteria in freshwaters. In this study, the role of two morphotypes of external layers in Microcystis and Nostoc in mass transfer and instantaneous temperature shock were explored by noninvasive microtest technology (NMT) after a series of pretreatments, to obtain the external layers retained or stripped samples. The results showed no statistical influence on photosynthetic activity between retained and stripped samples in both Microcystis and Nostoc. External-layer-retaining strains had higher net O2 effluxes than stripped strains. Moreover, the net NH4+ influx was significantly higher for the sheath retaining Nostoc than for the stripped sample, indicating that external layers might be an important feature driving mass transfer in cyanobacteria. However, the role of slime in NH4+ absorption was limited compared with that of sheath. In addition, external-layer-retaining strains exhibited a longer response time to instantaneous temperature shock, greater net O2 effluxes at a 4 °C shock and lower net O2 influx at a 35 °C shock, which were interpreted as reflecting a tolerance to temperature fluctuation over short time scales via a buffer function of external layers to stabilize cell activity, ameliorating the efficiency of photosynthesis and respiration. These results advance current knowledge regarding the external layers, especially the dense sheath, involved in the mass transfer in cyanobacteria, and provide new clues concerning the adaptive strategies of cyanobacteria under global climate changes.
机译:在蓝藻外层上的基础对于改善对新鲜水域持续的Cyanobacteria持续优势的理解至关重要。在这项研究中,在一系列预处理之后,通过非侵入性的MicroT技术(NMT)探讨了两种外层和NOSTOC在传质和瞬时温度冲击中的两层外层的作用,以获得保留或剥离样品的外层。结果表明,对微囊杆菌和骨折中保留和剥离样品之间的光合活性没有统计影响。外层保持菌株具有比剥离菌株更高的净O2渗透物。此外,对于剥离样品,净NH4 +流入量显着高于剥离样品,表明外层可能是促进Cyanobacteria中的重要特征。然而,与护套相比,粘液在NH4 +吸收中的作用是有限的。此外,外层保留菌株表现出瞬时温度冲击的响应时间更长,在4°C的冲击下净O2流出,较低的净O2流入在35°C的冲击下,这被解释为反映温度的公差通过外层的缓冲功能在短时间内进行波动,以稳定细胞活动,改善光合作用和呼吸的效率。这些结果提高了关于外层的目前的知识,特别是致密鞘,涉及伴有蓝藻的传质,并在全球气候变化下提供关于蓝藻的适应策略的新线索。

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