State transition is quiet around pyrenoid and LHCII phosphorylation is not essential for thylakoid deformation in Chlamydomonas 137c

Author:

Zhang XianJun12ORCID,Fujita Yuki1,Kaneda Naoya1,Tokutsu Ryutaro3ORCID,Ye Shen1ORCID,Minagawa Jun3ORCID,Shibata Yutaka1ORCID

Affiliation:

1. Department of Chemistry, Graduate School of Sciences, Tohoku University, 980-8578 Sendai, Japan

2. Division for Interdisciplinary Advanced Research and Education, Tohoku University, 980-8578 Sendai, Japan

3. Division of Environmental Photobiology, National Institute for Basic Biology, 444-8585 Okazaki, Japan

Abstract

Photosynthetic organisms have developed a regulation mechanism called state transition (ST) to rapidly adjust the excitation balance between the two photosystems by light-harvesting complex II (LHCII) movement. Though many researchers have assumed coupling of the dynamic transformations of the thylakoid membrane with ST, evidence of that remains elusive. To clarify the above-mentioned coupling in a model organism Chlamydomonas , here we used two advanced microscope techniques, the excitation-spectral microscope (ESM) developed recently by us and the superresolution imaging based on structured-illumination microscopy (SIM). The ESM observation revealed ST-dependent spectral changes upon repeated ST inductions. Surprisingly, it clarified a less significant ST occurrence in the region surrounding the pyrenoid, which is a subcellular compartment specialized for the carbon-fixation reaction, than that in the other domains. Further, we found a species dependence of this phenomenon: 137c strain showed the significant intracellular inhomogeneity of ST occurrence, whereas 4A+ strain hardly did. On the other hand, the SIM observation resolved partially irreversible fine thylakoid transformations caused by the ST-inducing illumination. This fine, irreversible thylakoid transformation was also observed in the STT7 kinase-lacking mutant. This result revealed that the fine thylakoid transformation is not induced solely by the LHCII phosphorylation, suggesting the highly susceptible nature of the thylakoid ultrastructure to the photosynthetic light reactions.

Funder

MEXT | Japan Society for the Promotion of Science

JST SPRING

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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