图像分析显示重金属离子处理后的螺旋藻细胞碎裂

Lekha Kaushik, Dinakari Sarangan, Deenadayalan Karaiyagowder Govindarajan, Sowmiya Muthumanickam, M. Sivaramakrishnan, Ram Kothandan, Suganthy Masanamani, Saraswathy Nachimuthu, H. Mamane, Kumaravel Kandaswamy
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引用次数: 2

摘要

生物修复是一种很有前途的技术,可用于减少铜、锌等重金属的环境排放。虽然研究已经解决了HMs的细胞毒性作用,然而,HMs对螺旋藻(S. platensis)等细菌物种的几何结构的影响仍然未知。对细胞周长、细胞数量和细胞分布等参数的定量分析将大大提高环境监测的效率。因此,本研究将利用开源图像分析工具(ImageJ/Fiji)对上述参数进行量化,分析> 2 mg/L Cu2+和> 6 mg/L Zn2+的致死浓度对S. platensis细胞的损伤程度,这些Cu2+和> 6 mg/L Zn2+将S. platensis细胞分解成更小的碎片,从而影响其周长和细胞分布的结构参数。综上所述,本文演示了使用图像分析平台来量化微生物的几何参数以进行环境监测。
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Image analysis reveals cellular fragmentation of Spirulina platensis upon treatment with heavy metal ions
Bioremediation is a promising technique that can be used to decrease the environmental discharge of Heavy Metal (HM) such as copper, and zinc. Although studies have addressed the cytotoxic effects of HMs, however, the effect of HMs on the geometry of bacterial species such as Spirulina platensis (S. platensis) remains unknown. Quantitative analysis of parameters such as cell perimeter, cell count, and cell distribution shall greatly improve the efficiency of environmental monitoring. Therefore, this study demonstrates the use of an open-source image analysis tool (ImageJ/Fiji) to quantify the aforementioned parameters to analyze the extent of damage caused by lethal concentration of > 2 mg/L of Cu2+ and > 6 mg/L of Zn2+ which disintegrates S. platensis cells into smaller fragments and subsequently affects their structural parameters in perimeter and cell distribution. In summary, this article demonstrates the use of an image analysis platform to quantify the geometric parameters of microbes for environmental monitoring.
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