Molecular and genetic mechanisms conferring dissolution of dioecy in Diospyros oleifera Cheng
Sun, P.; Nishiyama, S.; Li, H.; Mai, Y.; Han, W.; Suo, Y.; Liang, C.; Du, H.; Diao, S.; Wang, Y.; Yuan, J.; Zhang, Y.; Tao, R.; Li, F.; Fu, J.
Show abstract
Dioecy, a sexual system of single-sex (gynoecious/androecious) individuals, is rare in flowering plants. This rarity may be a result of the frequent transition from dioecy into systems with co-sex individuals. Here, we report potential molecular and genetic mechanisms that underlie the dissolution of dioecy to monoecy and andro(gyno)monoecy, based on multiscale genome-wide investigations of 150 accessions of Diospyros oleifera. All co-sex D. oleifera plants, including monoecious and andro(gyno)monoecious individuals, possessed the male determinant gene OGI, implying that genetic factors control gynoecia development in genetically male D. oleifera. In both single- and co-sex plants, female function was expressed in the presence of a genome-wide decrease in methylation levels, along with sexually distinct regulatory networks of smRNAs and their targets. Furthermore, a genome-wide association study (GWAS) identified a genomic region and a DUF247 gene cluster strongly associated with the monoecious phenotype, as well as several regions that may contribute to andromonoecy. Collectively, our findings imply stable breakdown of the dioecious system in D. oleifera, presumably a result of the genomic features of the sex-linked region.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Isoform-resolved genome annotation enables mapping of tissue-specific betalain regulation in amaranth 96%
- Genomic studies in Linum shed light on the evolution of the distyly supergene and the molecular basis of convergent floral evolution 96%
- Lysine 27 of histone H3.3 is a fine modulator of developmental gene expression and stands as an epigenetic checkpoint for lignin biosynthesis in Arabidopsis 96%
Similar papers in this journal
- Cell layer-specific expression of the homeotic MADS-box transcription factor PhDEF contributes to modular petunia petal morphogenesis 96%
- R2R3-MYB EVER links emission of volatiles with epicuticular wax biosynthesis in petunia petal epidermis 96%
- Species-specific gene duplication in Arabidopsis thaliana evolved novel phenotypic effects on morphological traits under strong positive selection 96%
Similar papers in this journal
- Functional genetics of rice <em>PISTILLATA</em> genes unravels new roles and targets in flowering time, female fertility and parthenocarpy 96%
- Comparative transcriptomics of seed nourishing tissues: uncovering conserved and divergent pathways in seed plants 95%
- Evolutionary analysis of conserved non-coding elements subsequent to whole-genome duplication in opium poppy 95%
Similar papers in this journal
- SvFUL2, an A-class MADS-box transcription factor, is necessary for inflorescence determinacy in model panicoid cereal, Setaria viridis 97%
- Mechanism of auxin and GA crosstalk in diploid strawberry fruit initiation 96%
- Multiplex knockout of trichome-regulating MYB duplicates in hybrid poplar using a single gRNA 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.