A mitochondrial ADXR-ADX-P450 electron transport chain is essential for maternal gametophytic control of embryogenesis in Arabidopsis

Mitochondrial adrenodoxins (ADXs) are small iron-sulfur proteins with electron transfer properties. In animals, ADXs transfer electrons between an adrenodoxin reductase (ADXR) and mitochondrial P450s, which is crucial for steroidogenesis. Here we show that a plant mitochondrial steroidogenic pathway...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2022-01, Vol.119 (4), p.1
Hauptverfasser: Bellido, Andrés Martin, Distéfano, Ayelén Mariana, Setzes, Nicolás, Cascallares, María Milagros, Oklestkova, Jana, Novak, Ondrej, Ramirez, Javier Alberto, Zabaleta, Eduardo J, Fiol, Diego F, Pagnussat, Gabriela C
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Sprache:eng
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Zusammenfassung:Mitochondrial adrenodoxins (ADXs) are small iron-sulfur proteins with electron transfer properties. In animals, ADXs transfer electrons between an adrenodoxin reductase (ADXR) and mitochondrial P450s, which is crucial for steroidogenesis. Here we show that a plant mitochondrial steroidogenic pathway, dependent on an ADXR-ADX-P450 shuttle, is essential for female gametogenesis and early embryogenesis through a maternal effect. The steroid profile of maternal and gametophytic tissues of wild-type (WT) and ovules revealed that homocastasterone is the main steroid present in WT gametophytes and that its levels are reduced in the mutant ovules. The application of exogenous homocastasterone partially rescued and P450 mutant phenotypes, indicating that gametophytic homocastasterone biosynthesis is affected in the mutants and that a deficiency of this hormone causes the phenotypic alterations observed. These findings also suggest not only a remarkable similarity between steroid biosynthetic pathways in plants and animals but also a common function during sexual reproduction.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.2000482119