OsMGD1-Mediated Membrane Lipid Remodeling Improves Salt Tolerance in Rice

被引:0
|
作者
Li, Shasha [1 ,2 ]
Hui, Lei [1 ,2 ]
Li, Jingchong [3 ]
Xi, Yuan [1 ,2 ]
Xu, Jili [1 ,2 ]
Wang, Linglong [4 ]
Yin, Lina [1 ,2 ,3 ]
机构
[1] Northwest A&F Univ, Coll Nat Resources & Environm, State Key Lab Soil Eros & Dryland Farming Loess Pl, Yangling 712100, Xianyang, Peoples R China
[2] Northwest A&F Univ, Inst Soil & Water Conservat, Coll Soil & Water Conservat Sci & Engn, Yangling 712100, Xianyang, Peoples R China
[3] Chinese Acad Sci & Minist Water Resources, Inst Soil & Water Conservat, Yangling 712100, Xianyang, Peoples R China
[4] Northwest A&F Univ, Coll Agron, Yangling 712100, Xianyang, Peoples R China
来源
PLANTS-BASEL | 2024年 / 13卷 / 11期
关键词
rice; membrane lipid; OsMGD1; photosynthesis; salt tolerance; MONOGALACTOSYLDIACYLGLYCEROL-SYNTHASE; LEAF SENESCENCE; ARABIDOPSIS; STRESS; GENES; GALACTOLIPIDS; DEFICIENCY; REVEALS;
D O I
10.3390/plants13111474
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Salt stress severely reduces photosynthetic efficiency, resulting in adverse effects on crop growth and yield production. Two key thylakoid membrane lipid components, monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG), were perturbed under salt stress. MGDG synthase 1 (MGD1) is one of the key enzymes for the synthesis of these galactolipids. To investigate the function of OsMGD1 in response to salt stress, the OsMGD1 overexpression (OE) and RNA interference (Ri) rice lines, and a wild type (WT), were used. Compared with WT, the OE lines showed higher chlorophyll content and biomass under salt stress. Besides this, the OE plants showed improved photosynthetic performance, including light absorption, energy transfer, and carbon fixation. Notably, the net photosynthetic rate and effective quantum yield of photosystem II in the OE lines increased by 27.5% and 25.8%, respectively, compared to the WT. Further analysis showed that the overexpression of OsMGD1 alleviated the negative effects of salt stress on photosynthetic membranes and oxidative defense by adjusting membrane lipid composition and fatty acid levels. In summary, OsMGD1-mediated membrane lipid remodeling enhanced salt tolerance in rice by maintaining membrane stability and optimizing photosynthetic efficiency.
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页数:16
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