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Genot, B.

Publications and source records attributed to Genot, B..

2 recordsLinked to original sources

Functional stress responses in Glaucophyta: evidence of ethylene and ABA functions in C. paradoxa

Glaucophytes, an enigmatic group of freshwater algae, occupy a pivotal position within the Archaeplastida, providing insights into the early evolutionary history of plastids and their host cells. These algae possess unique plastids, known as cyanelles, that retain certain ancestral features, enabling a better understanding of the plastid transition from cyanobacteria. In this study, we investigated the role of ethylene, a potent hormone used by land plants to coordinate stress responses, in the glaucophyte alga Cyanophora paradoxa. We demonstrate that C. paradoxa produces gaseous ethylene when supplied with exogenous 1-aminocyclopropane-1-carboxylic acid (ACC), the ethylene precursor in land plants. In addition, we show that cells produce ethylene natively in response to abiotic stress, and that another plant hormone, abscisic acid (ABA), interferes with ethylene synthesis from exogenously supplied ACC, while positively regulating reactive oxygen species (ROS) accumulation. ROS synthesis also occurred following abiotic stress and ACC treatment, possibly acting as a second-messenger in stress responses. A physiological response of C. paradoxa to ACC treatment is growth inhibition. Using transcriptomics, we reveal that ACC treatment induces the upregulation of senescence-associated proteases, consistent with the observation of growth inhibition. This is the first report of hormone usage in a glaucophyte alga, extending our understanding of hormone-mediated stress response coordination into the Glaucophyta, with implications for the evolution of signaling modalities across Archaeplastida.

evolutionary biology↗

Transformation of the symbiotic alga Oophila amblystomatis : a new toolbox for animal-algae symbiosis studies.

The ability to conduct reverse genetic studies in symbiotic systems is enabled by transgene expression and transformation of at least one partner. The symbiotic relationship between the yellow spotted salamander, Ambystoma maculatum, and the green alga, Oophila amblystomatis, is a unique model of vertebrate-algae symbiosis. Despite over 130 years of scientific study, there are still many open questions in this symbiosis. Transgene expression in one partner will accelerate research into the symbiotic relationship. In this paper we describe a tool and method for expression of foreign DNA in, and presumed transformation of, the alga O. amblystomatis. We successfully introduced heritable antibiotic resistance to algal cultures, and observed expression of a green fluorescent reporter protein in all transfected and presumably transformed algal populations. The outcomes of this work enable genetic manipulation of the symbiotic alga Oophila amblystomatis, allowing direct testing of hypotheses derived from gene expression or genomic studies that will usher in a deeper understanding of the A. maculatum-O. amblystomatis symbiotic system. Summary statementGenetic tools stimulate new possibilities for research in living systems. This work describes a new tool for transformation of a symbiotic alga that enters vertebrate tissues and cells.

molecular biology↗