对银离子的浓度依赖性反应:生长和活力降低的激电反应

IF 2.2 4区 物理与天体物理 Q4 CHEMISTRY, PHYSICAL
Hemanta Pradhan, Arpan Poudel, Diksha Shrestha, Ariel Rogers, Michael Stewart, Amani Jereb, Jack Harper, Ming Li, Wen Zhang, Jingyi Chen, Yong Wang
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引用次数: 0

摘要

由于硝酸银和纳米银在不同工业和医药部门的广泛使用,水生环境中的银水平升高,对水生微生物构成了重大的生物物理挑战。尽管对银对细菌和微生物群落的毒性进行了广泛的研究,但其对其他水生微生物(如微藻)的影响仍知之甚少。在本研究中,我们从种群生长动态、叶绿素含量和游动动力等方面研究了莱茵梭菌微藻对银离子暴露的生物物理响应。我们发现不同浓度的银离子(0.29 ~ 1.18 \(\upmu \) M)延长了微藻生长的滞后期。然而,低浓度的银离子(例如0.29 \(\upmu \) M)促进了微藻的生长,在固定阶段显示出更高的OD750值和更高的最大生长速率。微藻暴露于银离子后所表现出的这种致热反应表明离子胁迫与细胞生长之间存在非线性耦合。此外,我们用分光光度法定量了不同银离子浓度下微藻的叶绿素含量,结果表明,当银离子浓度较低时,微藻细胞的叶绿素含量是高浓度的两倍。更重要的是,我们监测了银离子存在下微藻的运动,使用深度学习算法检测和跟踪其运动,并确定了银离子对C. reinhardtii微藻个体游泳运动的影响。结果表明,银离子暴露后,微藻的平均游动速度降低,方向性变化增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concentration-dependent responses of C. reinhardtii to silver ions: hormetic response in growth and reduction of motility

Elevated levels of silver in aquatic environments arising from widespread use of silver nitrate and silver nanoparticles in different sectors of industry and medicine pose significant biophysical challenges to aquatic microorganisms. Despite extensive toxicity studies of silver on bacteria and microbial communities, its influence on other aquatic microorganisms, such as microalgae, remains poorly understood. In this study, we investigated the biophysical response of C. reinhardtii microalgae to silver ion exposure in terms of their population growth dynamics, chlorophyll content, and swimming motility. We found that silver ions at different concentrations (from 0.29 to 1.18 \(\upmu \)M) elongated the lag phase of the microalgal growth. However, the growth of the microalgae was boosted by silver ions at low concentrations (e.g., 0.29 \(\upmu \)M), showing higher OD750 values at the stationary phase and higher maximum growth rates. This hormetic response exhibited by microalgae upon exposure to silver ions indicates a nonlinear coupling between ionic stress and cellular growth. Additionally, we quantified the chlorophyll content in the microalgae with different concentrations of silver ions using spectrophotometric analysis, which revealed that the microalgae cells contained twice as high concentrations of chlorophyll when exposed to silver ions at lower concentrations. More importantly, we monitored the motion of microalgae in the presence of silver ions, detected and tracked their motion using a deep learning algorithm, and determined the effects of silver ions on the swimming motility of individual C. reinhardtii microalgae. Our results showed reduced average swimming speed and increased directional change of microalgae upon silver ion exposure.

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来源期刊
The European Physical Journal E
The European Physical Journal E CHEMISTRY, PHYSICAL-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
2.60
自引率
5.60%
发文量
92
审稿时长
3 months
期刊介绍: EPJ E publishes papers describing advances in the understanding of physical aspects of Soft, Liquid and Living Systems. Soft matter is a generic term for a large group of condensed, often heterogeneous systems -- often also called complex fluids -- that display a large response to weak external perturbations and that possess properties governed by slow internal dynamics. Flowing matter refers to all systems that can actually flow, from simple to multiphase liquids, from foams to granular matter. Living matter concerns the new physics that emerges from novel insights into the properties and behaviours of living systems. Furthermore, it aims at developing new concepts and quantitative approaches for the study of biological phenomena. Approaches from soft matter physics and statistical physics play a key role in this research. The journal includes reports of experimental, computational and theoretical studies and appeals to the broad interdisciplinary communities including physics, chemistry, biology, mathematics and materials science.
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