Related Experiment Video
Updated: Mar 20, 2026

A Multi-Omics Extraction Method for the In-Depth Analysis of Synchronized Cultures of the Green Alga Chlamydomonas reinhardtii
Published on: August 8, 2019
Lineage-specific chromatin signatures reveal a regulator of lipid metabolism in microalgae
Chew Yee Ngan1, Chee-Hong Wong1, Cindy Choi1
1US Department of Energy Joint Genome Institute, Walnut Creek, California 94598, USA.
Abstract:
Alga-derived lipids represent an attractive potential source of biofuels. However, lipid accumulation in algae is a stress response tightly coupled to growth arrest, thereby imposing a major limitation on productivity. To identify transcriptional regulators of lipid accumulation, we performed an integrative chromatin signature and transcriptomic analysis to decipher the regulation of lipid biosynthesis in the alga Chlamydomonas reinhardtii. Genome-wide histone modification profiling revealed remarkable differences in functional chromatin states between the algae and higher eukaryotes and uncovered regulatory components at the core of lipid accumulation pathways. We identified the transcription factor, PSR1, as a pivotal switch that triggers cytosolic lipid accumulation. Dissection of the PSR1-induced lipid profiles corroborates its role in coordinating multiple lipid-inducing stress responses. The comprehensive maps of functional chromatin signatures in a major clade of eukaryotic life and the discovery of a transcriptional regulator of algal lipid metabolism will facilitate targeted engineering strategies to mediate high lipid production in microalgae.
Related Concept Videos
Biofuels
Biosynthesis of Lipids
Cell Specific Gene Expression
Lipids as Anchors
The carboxy-terminal of most of the prenylated proteins, such as Ras proteins, contains...

