4.6 Article

OsFBN7-OsKAS I module promotes formation of plastoglobules clusters in rice chloroplasts

期刊

NEW PHYTOLOGIST
卷 239, 期 5, 页码 1771-1789

出版社

WILEY
DOI: 10.1111/nph.19081

关键词

de novo fatty acid synthesis; fibrillin 7; galactolipids; KAS I; plastoglobule; rice

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This study revealed that OsFBN7 interacts with OsKAS Ia/Ib enzymes and promotes the clustering of Plastoglobules (PG) in chloroplasts, leading to increased levels of lipid precursors and membrane lipids. Furthermore, OsFBN7 enhances the abundance and stability of OsKAS Ia/Ib, and upregulates the expression of genes involved in PG formation. These findings propose a new model for the regulation of chloroplast and PG membrane lipids by OsFBN7.
Plastoglobules (PGs) contiguous with the outer leaflets of thylakoid membranes regulate lipid metabolism, plastid developmental transitions, and responses to environmental stimuli. However, the function of OsFBN7, a PG-core fibrillin gene in rice, has not been elucidated. Using molecular genetics and physiobiochemical approaches, we observed that OsFBN7 overexpression promoted PG clustering in rice chloroplasts. OsFBN7 interacted with two KAS I enzymes, namely OsKAS Ia and OsKAS Ib, in rice chloroplasts. Lipidomic analysis of chloroplast subcompartments, including PGs in the OsFBN7 overexpression lines, confirmed that levels of diacylglycerol (DAG), a chloroplast lipid precursor and monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG), the main chloroplast membrane lipids, were increased in PGs and chloroplasts. Furthermore, OsFBN7 enhanced the abundances of OsKAS Ia/Ib in planta and their stability under oxidative and heat stresses. In addition, RNA sequencing and real-time quantitative reverse-transcription polymerase chain reaction (qRT-PCR) analyses showed that the expression of the DAG synthetase gene PAP1 and MGDG synthase gene MDG2 was upregulated by OsFBN7. In conclusion, this study proposes a new model in which OsFBN7 binds to OsKAS Ia/Ib in chloroplast and enhances their abundance and stability, thereby regulating the chloroplast and PG membrane lipids involved in the formation of PG clusters.

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