Chlorella Sorokiniana

Chlorella sorokiniana is a freshwater green microalga valued for its rapid growth, photosynthetic activity, and potential role in environmental biotechnology. It converts light energy, carbon dioxide, and inorganic nutrients into biomass through photosynthesis, while its cellular composition can support the uptake of nutrients from aquatic environments. These properties make Chlorella sorokiniana relevant to wastewater treatment, nutrient recovery, carbon capture, and production of algal biomass for bio-based products. Studying this species helps researchers evaluate sustainable approaches to reducing environmental pollutants while generating renewable biological resources.

Chlorella Sorokiniana - Related Videos

Research

JoVE Journal - Bioengineering

Agrobacterium tumefaciens-Mediated Genetic Engineering of Green Microalgae, Chlorella vulgaris

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Cited by 3 •

2023

This protocol outlines the utilization of Agrobacterium tumefaciens-mediated transformation (AMT) for integrating gene(s) of interest into the nuclear genome of the green microalgae Chlorella vulgaris, leading to the production of stable transformants.

Optimize Flue Gas Settings to Promote Microalgae Growth in Photobioreactors via Computer Simulations

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Cited by 5 •

2013

Flue gas from power plants is a cheap CO2 source for algal growth. We have built prototype "flue gas to algal cultivation" systems and described how to scale up the algal cultivation process. We have demonstrated the use of a mass-transfer bio-reaction model to simulate and to design the optimal operation of flue gas for the growth of Chlorella sp. in algal photo-bioreactors.

Multi-analyte Biochip (MAB) Based on All-solid-state Ion-selective Electrodes (ASSISE) for Physiological Research

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Cited by 3 •

2013

All-solid-state ion-selective electrodes (ASSISEs) constructed from a conductive polymer (CP) transducer provide several months of functional lifetime in liquid media. Here, we describe the fabrication and calibration process of ASSISEs in a lab-on-a-chip format. The ASSISE is demonstrated to have maintained a near-Nernstian slope profile after prolonged storage in complex biological media.

A Simple and Rapid Protocol for Measuring Neutral Lipids in Algal Cells Using Fluorescence

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Cited by 32 •

2014

A simple protocol to determine the neutral lipid content of algal cells using a Nile Red staining procedure is described. This time-saving technique offers an alternative to traditional gravimetric-based lipid quantification protocols. It has been designed for the specific application of monitoring bioprocess performance.

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