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Authors = Claire Remacle

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Open AccessReview Effect of Metals, Metalloids and Metallic Nanoparticles on Microalgae Growth and Industrial Product Biosynthesis: A Review
Int. J. Mol. Sci. 2015, 16(10), 23929-23969; doi:10.3390/ijms161023929
Received: 18 August 2015 / Revised: 11 September 2015 / Accepted: 24 September 2015 / Published: 9 October 2015
Cited by 9 | Viewed by 2612 | PDF Full-text (848 KB) | HTML Full-text | XML Full-text
Abstract
Microalgae are a source of numerous compounds that can be used in many branches of industry. Synthesis of such compounds in microalgal cells can be amplified under stress conditions. Exposure to various metals can be one of methods applied to induce cell stress
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Microalgae are a source of numerous compounds that can be used in many branches of industry. Synthesis of such compounds in microalgal cells can be amplified under stress conditions. Exposure to various metals can be one of methods applied to induce cell stress and synthesis of target products in microalgae cultures. In this review, the potential of producing diverse biocompounds (pigments, lipids, exopolymers, peptides, phytohormones, arsenoorganics, nanoparticles) from microalgae cultures upon exposure to various metals, is evaluated. Additionally, different methods to alter microalgae response towards metals and metal stress are described. Finally, possibilities to sustain high growth rates and productivity of microalgal cultures in the presence of metals are discussed. Full article
(This article belongs to the Special Issue Microalgal Biotechnology)
Open AccessReview Effect of Lignocellulose Related Compounds on Microalgae Growth and Product Biosynthesis: A Review
Energies 2014, 7(7), 4446-4481; doi:10.3390/en7074446
Received: 4 May 2014 / Revised: 30 June 2014 / Accepted: 1 July 2014 / Published: 11 July 2014
Cited by 10 | Viewed by 3460 | PDF Full-text (936 KB) | HTML Full-text | XML Full-text
Abstract
Microalgae contain valuable compounds that can be harnessed for industrial applications. Lignocellulose biomass is a plant material containing in abundance organic substances such as carbohydrates, phenolics, organic acids and other secondary compounds. As growth of microalgae on organic substances was confirmed during heterotrophic
[...] Read more.
Microalgae contain valuable compounds that can be harnessed for industrial applications. Lignocellulose biomass is a plant material containing in abundance organic substances such as carbohydrates, phenolics, organic acids and other secondary compounds. As growth of microalgae on organic substances was confirmed during heterotrophic and mixotrophic cultivation, lignocellulose derived compounds can become a feedstock to cultivate microalgae and produce target compounds. In this review, different treatment methods to hydrolyse lignocellulose into organic substrates are presented first. Secondly, the effect of lignocellulosic hydrolysates, organic substances typically present in lignocellulosic hydrolysates, as well as minor co-products, on growth and accumulation of target compounds in microalgae cultures is described. Finally, the possibilities of using lignocellulose hydrolysates as a common feedstock for microalgae cultures are evaluated. Full article
(This article belongs to the Special Issue Algae Based Technologies)

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