4.6 Article

Ribosomal protein S6 kinase1 coordinates with TOR-Raptor2 to regulate thylakoid membrane biosynthesis in rice

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ELSEVIER
DOI: 10.1016/j.bbalip.2016.04.009

Keywords

Ribosomal protein S6 kinase (S6K); Target of rapamycin (TOR); Regulatory associated protein of TOR (Raptor); Galactolipid biosynthesis; Oryza saliva

Funding

  1. Chinese National Key Basic Research Project [2012CB114200]
  2. National Science Foundation of China [31271514]

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Ribosomal protein S6 kinase (S6K) functions as a key component in the target of rapamycin (TOR) pathway involved in multiple processes in eukaryotes. The role and regulation of TOR-S6K in lipid metabolism remained unknown in plants. Here we provide genetic and pharmacological evidence that TOR-Raptor2-S6K1 is important for thylakoid galactolipid biosynthesis and thylakoid grana modeling in rice (Oryza sativa L.). Genetic suppression of S6K1 caused pale yellow-green leaves, defective thylakoid grana architecture. S6K1 directly interacts with Raptor2, a core component in TOR signaling, and S6K1 activity is regulated by Raptor2 and TOR. Plants with suppressed Raptor2 expression or reduced TOR activity by inhibitors mimicked the S6K1-deficient phenotype. A significant reduction in galactolipid content was found in the s6k1, raptor2 mutant or TOR-inhibited plants, which was accompanied by decreased transcript levels of the set of genes such as lipid phosphate phosphatase aS (LPPa5), MGDG synthase 1 (MGD1), and DGDG synthase 1 (DGDI) involved in galactolipid synthesis, compared to the control plants. Moreover, loss of LPPct5 exhibited a similar phenotype with pale yellow-green leaves. These results suggest that TOR-Raptor2-S6K1 is important for modulating thylakoid membrane lipid biosynthesis, homeostasis, thus enhancing thylakoid grana architecture and normal photosynthesis ability in rice. (C) 2016 Elsevier B.V. All rights reserved.

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