Plastidial Expression of Type II NAD(P)H Dehydrogenase Increases the Reducing State of Plastoquinones and Hydrogen Photoproduction Rate by the Indirect Pathway in Chlamydomonas reinhardtii

Archive ouverte

Baltz, Anthony | Dang, Kieu-Van | Beyly, Audrey | Auroy, Pascaline | Richaud, Pierre | Cournac, Laurent | Peltier, G.

Edité par CCSD ; Oxford University Press ; American Society of Plant Biologists -

International audience. Abstract Biological conversion of solar energy into hydrogen is naturally realized by some microalgae species due to a coupling between the photosynthetic electron transport chain and a plastidial hydrogenase. While promising for the production of clean and sustainable hydrogen, this process requires improvement to be economically viable. Two pathways, called direct and indirect photoproduction, lead to sustained hydrogen production in sulfur-deprived Chlamydomonas reinhardtii cultures. The indirect pathway allows an efficient time-based separation of O2 and H2 production, thus overcoming the O2 sensitivity of the hydrogenase, but its activity is low. With the aim of identifying the limiting step of hydrogen production, we succeeded in overexpressing the plastidial type II NAD(P)H dehydrogenase (NDA2). We report that transplastomic strains overexpressing NDA2 show an increased activity of nonphotochemical reduction of plastoquinones (PQs). While hydrogen production by the direct pathway, involving the linear electron flow from photosystem II to photosystem I, was not affected by NDA2 overexpression, the rate of hydrogen production by the indirect pathway was increased in conditions, such as nutrient limitation, where soluble electron donors are not limiting. An increased intracellular starch was observed in response to nutrient deprivation in strains overexpressing NDA2. It is concluded that activity of the indirect pathway is limited by the nonphotochemical reduction of PQs, either by the pool size of soluble electron donors or by the PQ-reducing activity of NDA2 in nutrient-limited conditions. We discuss these data in relation to limitations and biotechnological improvement of hydrogen photoproduction in microalgae.

Consulter en ligne

Suggestions

Du même auteur

Combined Increases in Mitochondrial Cooperation and Oxygen Photoreduction Compensate for Deficiency in Cyclic Electron Flow in Chlamydomonas reinhardtii

Archive ouverte | Dang, Kieu-Van | CCSD

International audience

Control of hydrogen photoproduction by the Proton Gradient Generated by Cyclic Electron Flow in $Chlamydomonas\ reinhardtii$

Archive ouverte | Tolleter, Dimitri | CCSD

International audience. Hydrogen photoproduction by eukaryotic microalgae results from a connection between the photosynthetic electron transport chain and a plastidial hydrogenase. Algal H$_2$ production is a trans...

Modulation of Zn/Cd P 1B2 -ATPase activities in Arabidopsis impacts differently on Zn and Cd contents in shoots and seeds

Archive ouverte | Cun, Pierre | CCSD

International audience. Changes in the expression levels of P 1B2 -ATPases in Arabidopsis impacts Zn and Cd contents in shoots and seeds.

Chargement des enrichissements...