نتایج جستجو برای: green microalga

تعداد نتایج: 141156  

2016
Min Zeng Wenlong Hao Yongdong Zou Mengliang Shi Yongguang Jiang Peng Xiao Anping Lei Zhangli Hu Weiwen Zhang Liqing Zhao Jiangxin Wang

BACKGROUND Microalgae have been recognized as a good food source of natural biologically active ingredients. Among them, the green microalga Euglena is a very promising food and nutritional supplements, providing high value-added poly-unsaturated fatty acids, paramylon and proteins. Different culture conditions could affect the chemical composition and food quality of microalgal cells. However,...

Journal: :The Biochemical journal 2006
María R Gómez-García Manuel Losada Aurelio Serrano

Two sPPases (soluble inorganic pyrophosphatases, EC 3.6.1.1) have been isolated from the microalga Chlamydomonas reinhardtii. Both are monomeric proteins of organellar localization, the chloroplastic sPPase I [Cr (Ch. reinhardtii)-sPPase I, 30 kDa] is a major isoform and slightly larger protein than the mitochondrial sPPase II (Cr-sPPase II, 24 kDa). They are members of sPPase family I and are ...

Journal: :Environmental pollution 2006
O González-Barreiro C Rioboo C Herrero A Cid

The uptake of the triazine herbicides, atrazine and terbutryn, was determined for two freshwater photosynthetic microorganisms, the green microalga Chlorella vulgaris and the cyanobacterium Synechococcus elongatus. An extremely rapid uptake of both pesticides was recorded, although uptake rate was lower for the cyanobacterium, mainly for atrazine. Other parameters related to the herbicide bioco...

Journal: :Lab on a chip 2014
Hyun Soo Kim Taylor L Weiss Hem R Thapa Timothy P Devarenne Arum Han

Microalgae are envisioned as a future source of renewable oil. The feasibility of producing high-value biomolecules from microalgae is strongly dependent on developing strains with increased productivity and environmental tolerance, understanding algal gene regulation, and optimizing growth conditions for higher production of target molecules. We present a high-throughput microfluidic microalga...

Journal: :Bioresource technology 2012
Jose A Gerde Melissa Montalbo-Lomboy Linxing Yao David Grewell Tong Wang

Microalgae are a promising feedstock for biofuels because of their capability to produce lipids. Cell disruption is necessary to maximize lipid extraction. Sonication conditions were evaluated for breaking heterotrophic (Schizochytrium limacinum) and autotrophic (Chlamydomonas reinhardtii) microalgae cells. Cell disruption was estimated by Nile red-lipids fluorescence quantification in S. limac...

Journal: :Biotechnology and applied biochemistry 2010
Mojtaba Shakibaie Hamid Forootanfar Kamyar Mollazadeh-Moghaddam Zahra Bagherzadeh Nastaran Nafissi-Varcheh Ahmad Reza Shahverdi Mohammad Ali Faramarzi

The application of green-synthesis principles is one of the most impressive research fields for the production of nanoparticles. Different kinds of biological systems have been used for this purpose. In the present study, AuNPs (gold nanoparticles) were prepared within a short time period using a fresh cell extract of the marine microalga Tetraselmis suecica as a reducing agent of HAuCl4 (chlor...

Journal: :Plant & cell physiology 2013
Shinsuke Ohnuki Satoru Nogami Shuhei Ota Koichi Watanabe Shigeyuki Kawano Yoshikazu Ohya

The green microalga Haematococcus pluvialis accumulates the red pigment astaxanthin accompanied by morphological changes under stress conditions, including nutrient depletion, continuous light and high temperature. To investigate the physiological state of the algal cells, we developed the digital image-processing software called HaematoCalMorph. The software automatically outputs 25 single-cel...

2013
Guangrong Hu Yong Fan Lei Zhang Cheng Yuan Jufang Wang Wenjian Li Qiang Hu Fuli Li

The unicellular green microalga Desmodesmus sp. S1 can produce more than 50% total lipid of cell dry weight under high light and nitrogen-limitation conditions. After irradiation by heavy (12)C(6+) ion beam of 10, 30, 60, 90 or 120 Gy, followed by screening of resulting mutants on 24-well microplates, more than 500 mutants were obtained. One of those, named D90G-19, exhibited lipid productivity...

Journal: :Bioresource technology 2013
Mariana Anjos Bruno D Fernandes António A Vicente José A Teixeira Giuliano Dragone

Biofixation of CO2 by microalgae has been recognized as an attractive approach to CO2 mitigation. The main objective of this work was to maximize the rate of CO2 fixation ( [Formula: see text] ) by the green microalga Chlorella vulgaris P12 cultivated photoautotrophically in bubble column photobioreactors under different CO2 concentrations (ranging from 2% to 10%) and aeration rates (ranging fr...

2014
Beth A. Rasala Syh-Shiuan Chao Matthew Pier Daniel J. Barrera Stephen P. Mayfield

Transgenic microalgae have the potential to impact many diverse biotechnological industries including energy, human and animal nutrition, pharmaceuticals, health and beauty, and specialty chemicals. However, major obstacles to sophisticated genetic and metabolic engineering in algae have been the lack of well-characterized transformation vectors to direct engineered gene products to specific su...

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