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Far-red light photoacclimation in a desert Chroococcidiopsis strain with a reduced FaRLiP gene cluster and expression of its chlorophyll f synthase in space-resistant isolates

Frontiers in microbiology. 2024-09; 
Giorgia di Stefano, Mariano Battistuzzi, Nicoletta La Rocca, Vera M Selinger, Dennis J Nürnberg, Daniela Billi
Products/Services Used Details Operation
Gene Synthesis The synthetic plasmid pTac-ChlF-pDU1 carrying the Chl f synthase gene of CCMEE 010 (GenBank accession OM156469; hereafter chlF010) was generated by GenScript Biotech (Rijswijk, Netherlands). Get A Quote

摘要

Introduction: Some cyanobacteria can use far-red light (FRL) to drive oxygenic photosynthesis, a phenomenon known as Far-Red Light Photoacclimation (FaRLiP). It can expand photosynthetically active radiation beyond the visible light (VL) range. Therefore, it holds promise for biotechnological applications and may prove useful for the future human exploration of outer space. Typically, FaRLiP relies on a cluster of ~20 genes, encoding paralogs of the standard photosynthetic machinery. One of them, a highly divergent D1 gene known as chlF (or psbA4), is the synthase responsible for the formation of the FRL-absorbing chlorophyll f (Chl f) that is essential for FaRLiP. The minimum gene set required for this phenoty... More

关键词

Chl f synthase; Chroococcidiopsis; FaRLiP; genetic manipulation; space exploration