Chloroplast phosphatases LPPγ and LPPε1 facilitate conversion of extraplastidic phospholipids to galactolipids

Author:

Cook Ron1ORCID,Froehlich John E12ORCID,Yang Yang1,Korkmaz Ilayda2ORCID,Kramer David M12ORCID,Benning Christoph123ORCID

Affiliation:

1. DOE-Plant Research Laboratory, Michigan State University , East Lansing, MI 48824 , USA

2. Department of Biochemistry and Molecular Biology, Michigan State University , East Lansing, MI 48824 , USA

3. Department of Plant Biology, Michigan State University , East Lansing, MI 48824 , USA

Abstract

Abstract Galactolipids comprise the majority of chloroplast membranes in plants, and their biosynthesis requires dephosphorylation of phosphatidic acid at the chloroplast envelope membranes. In Arabidopsis (Arabidopsis thaliana), the lipid phosphate phosphatases LPPγ, LPPε1, and LPPε2 have been previously implicated in chloroplast lipid assembly, with LPPγ being essential, as null mutants were reported to exhibit embryo lethality. Here, we show that lppγ mutants are in fact viable and that LPPγ, LPPε1, and LPPε2 do not appear to have central roles in the plastid pathway of membrane lipid biosynthesis. Redundant LPPγ and LPPε1 activity at the outer envelope membrane is important for plant development, and the respective lppγ lppε1 double mutant exhibits reduced flux through the ER pathway of galactolipid synthesis. While LPPε2 is imported and associated with interior chloroplast membranes, its role remains elusive and does not include basal nor phosphate limitation-induced biosynthesis of glycolipids. The specific physiological roles of LPPγ, LPPε1, and LPPε2 are yet to be uncovered, as does the identity of the phosphatidic acid phosphatase required for plastid galactolipid biosynthesis.

Funder

Basic Energy Sciences

Department of Energy

Michigan State University

National Institute of Health

Publisher

Oxford University Press (OUP)

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