The induction of pyrenoid synthesis by hyperoxia and its implications for the natural diversity of photosynthetic responses in Chlamydomonas

Author:

Neofotis Peter1ORCID,Temple Joshua12ORCID,Tessmer Oliver L1,Bibik Jacob1,Norris Nicole1,Pollner Eric1,Lucker Ben1,Weraduwage Sarathi M13,Withrow Alecia4,Sears Barbara1,Mogos Greg1,Frame Melinda4,Hall David1,Weissman Joseph5,Kramer David M1ORCID

Affiliation:

1. MSU-DOE Plant Research Laboratory, Michigan State University

2. Department of Plant Biology, Michigan State University

3. Great Lakes Bioenergy Research Center, Michigan State University

4. Center for Advanced Microscopy, Michigan State University

5. Corporate Strategic Research, ExxonMobil

Abstract

In algae, it is well established that the pyrenoid, a component of the carbon-concentrating mechanism (CCM), is essential for efficient photosynthesis at low CO2. However, the signal that triggers the formation of the pyrenoid has remained elusive. Here, we show that, in Chlamydomonas reinhardtii, the pyrenoid is strongly induced by hyperoxia, even at high CO2 or bicarbonate levels. These results suggest that the pyrenoid can be induced by a common product of photosynthesis specific to low CO2 or hyperoxia. Consistent with this view, the photorespiratory by-product, H2O2, induced the pyrenoid, suggesting that it acts as a signal. Finally, we show evidence for linkages between genetic variations in hyperoxia tolerance, H2O2 signaling, and pyrenoid morphologies.

Funder

U.S. Department of Energy

ExxonMobil Research and Engineering Company

AgBioResearch, Michigan State University

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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