Arabidopsis SSL1 encoding AtMWFE subunit of mitochondrial complex I regulates leaf development and reactive oxygen species
Mitochondrial complex I is an NADH-ubiquinone oxidoreductase responsible for 40% of the production of mitochondrial ATP. It contains 14 core subunits and 25–35 non-core ones in different organisms. However, the role of these subunits in plant development remains largely unknown. Here, we report a no...
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Veröffentlicht in: | Plant growth regulation 2024-07, Vol.103 (3), p.597-608 |
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Sprache: | eng |
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Zusammenfassung: | Mitochondrial complex I is an NADH-ubiquinone oxidoreductase responsible for 40% of the production of mitochondrial ATP. It contains 14 core subunits and 25–35 non-core ones in different organisms. However, the role of these subunits in plant development remains largely unknown. Here, we report a novel
Arabidopsis
T-DNA insertion mutant. The T-DNA insertion mutant produced smaller and more serrated leaves than wild-type control. So, it is named that the
Arabidopsis small and serrated leaves 1
(
ssl1
). We identified a T-DNA insertion in the
AtMWFE
locus- that disrupted the function of
AtMWFE
in
ssl1
.
AtMWFE
encodes a conserved non-core subunit of mitochondrial complex I. The expression of
AtMWFE
complemented the leaf developmental defects of
ssl1
- thus SSL1 is the
At
MWFE subunit of mitochondrial complex I. We also showed that the compromise of
SSL1
/
AtMWFE
function led to the accumulation of ROS. Our findings reveal that SSL1/
At
MWFE is required for the function of mitochondrial complex I and the proper ROS level in leaves, and demonstrate that SSL1/
At
MWFE plays a critical role in leaf development. |
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ISSN: | 0167-6903 1573-5087 |
DOI: | 10.1007/s10725-024-01135-z |