Trends on Chlamydomonas reinhardtii growth regimes and bioproducts

Author:

Pessoa Jassiara da Silva1,de Oliveira Caroline Frere Martiniuc1,Mena‐Chalco Jesús Pascual2,de Carvalho João Carlos Monteiro3,Ferreira‐Camargo Livia Seno1ORCID

Affiliation:

1. Center for Natural and Human Sciences Federal University of ABC São Paulo Brazil

2. Center for Mathematics, Computation and Cognition Federal University of ABC São Paulo Brazil

3. School of Pharmaceutical Sciences University of São Paulo São Paulo Brazil

Abstract

AbstractThe green microalga Chlamydomonas reinhardtii is a model microorganism for several areas of study. Among the different microalgae species, it presents advantageous characteristics, such as genomes completely sequenced and well‐established techniques for genetic transformation. Despite that, C. reinhardtii production is still not easily commercially viable, especially due to the low biomass yield. So far there are no reports of scientometric study focusing only on C. reinhardtii biomass production process. Considering the need for culture optimization, a scientometric research was conducted to analyze the papers that investigated the growth regimes effects in C. reinhardtii cultivation. The search resulted in 130 papers indexed on Web of Science and Scopus platforms from 1969 to December 2022. The quantitative analysis indicated that the photoautotrophic regime was the most employed in the papers. However, when comparing the three growth regimes, the mixotrophic one led to the highest production of biomass, lipids, and heterologous protein. The production of bioproducts was considered the main objective of most of the papers and, among them, biomass was the most frequently investigated. The highest biomass production reported among the papers was 40 g L−1 in the heterotrophic growth of a transgenic strain. Other culture conditions were also crucial for C. reinhardtii growth, for instance, temperature and cultivation process.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Wiley

Subject

Process Chemistry and Technology,Drug Discovery,Applied Microbiology and Biotechnology,Biomedical Engineering,Molecular Medicine,General Medicine,Bioengineering,Biotechnology

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