The DC1 domain protein Vacuoleless Gametophytes regulates stamen development in Arabidopsis
Vacuoleless Gametophytes (VLG) is a DC1 domain protein that was initially characterized as essential for early female and male gametophytes development in Arabidopsis. However, VLG expression was also detected in stamens, pistils and other sporophytic tissues, implying a broader role for this protei...
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Veröffentlicht in: | Plant physiology and biochemistry 2025-02, Vol.219, p.109372, Article 109372 |
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Sprache: | eng |
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Zusammenfassung: | Vacuoleless Gametophytes (VLG) is a DC1 domain protein that was initially characterized as essential for early female and male gametophytes development in Arabidopsis. However, VLG expression was also detected in stamens, pistils and other sporophytic tissues, implying a broader role for this protein. As homozygous insertional VLG lines resulted unviable, we generated Arabidopsis amiRNA VLG knock-down plants to study the role of VLG in sporophyte development. The phenotypic characterization of VLG knock-down plants showed reduced seed set and indehiscent anthers with shorter filaments and stigma exsertion. Moreover, amiRNA VLG knock-down plants displayed unbroken stomia and septa, markedly reduced endothecium lignification, diminished ROS accumulation, and lower transcript levels of genes involved in jasmonic acid and lignin biosynthesis. The indehiscent phenotype was rescued by exogenous application of either jasmonic acid or H2O2. Altogether, our results suggest that VLG is involved in lignin and jasmonic acid biosynthesis pathways, and that proper levels of VLG are required in the process that leads to stomium breakage and anther dehiscence. Our findings shed light on the mechanisms underlying stamen development and provide new insights into the roles of a DC1 domain protein in plant reproduction.
•VLG participates in stamen development and is necessary for correct anther dehiscence in Arabidopsis.•VLG is involved in JA biosynthesis pathway during anther dehiscence.•VLG is involved in ROS accumulation and lignin biosynthesis pathway during anther dehiscence. |
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ISSN: | 0981-9428 1873-2690 1873-2690 |
DOI: | 10.1016/j.plaphy.2024.109372 |