Evolutionary conserved sap peptides derived from xylem-specific peptide precursors in woody angiosperms
Chen, C.-H.; Liou, P.-C.; Lin, C.-C.; Kuo, S.-C.; Wu, C.-C.; Lin, Y.-C. J.; Chen, Y.-L.
Show abstract
Peptides act as long-distance mobile signals, transported through vascular sap to coordinate complex developmental processes. Since the tissue-specificity of peptide precursor gene expression is critical in determining peptide signaling function, we integrated vascular sap peptidomes with tissue-level transcriptomes to investigate the roles of sap peptides in two economically important woody plants, Populus trichocarpa and Eucalyptus grandis. Xylem exhibited the highest ratio of tissue-specific sap peptide precursor genes. Most of the sap peptides derived from xylem-specific precursor genes of P. trichocarpa and E. grandis were highly conserved throughout woody species selected from different clades in angiosperms, including magnoliids, rosids and asterids in eudicots. To further explore the conservation of these peptides, we examined the sap peptidome of Cinnamomum kanehirae (camphor tree), from the ancient clade with three xylem cell types. Approximately 90% of the peptides from xylem-specific precursors that were conserved between P. trichocarpa and E. grandis, were also conserved in the vascular sap of C. kanehirae, demonstrating a remarkably high conservation of these peptides across woody angiosperms. Most of the sap peptides conserved in these three woody species are also highly conserved across land plants, suggesting that these peptides may contribute to plant terrestrialization. Within the sap peptides from xylem- specific precursor genes, a total of 10 peptides were identical across all three woody plants. This substantial enrichment of xylem-specific precursor-derived peptides, along with their high conservation, suggests that these long-distance mobile peptides play a crucial role in secondary xylem development. One sentence summaryIntegration of sap peptidomic and tissue-level transcriptomic data revealed highly conserved long-distance mobile peptides derived from xylem- specific precursors across woody angiosperms.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The aerial epidermis is a major site of quinolizidine alkaloid biosynthesis in narrow-leafed lupin 94%
- Conifers exhibit a characteristic inactivation of auxin to maintain tissue homeostasis 94%
- ENHANCED GRAVITROPISM 2 coordinates molecular adaptations to gravistimulation in the elongation zone of barley roots 94%
Similar papers in this journal
- Origin and early divergence of tandem duplicated sorbitol transporter genes in Rosaceae 95%
- WHIRLY1 regulates aliphatic glucosinolate biosynthesis in early seedling development of Arabidopsis 95%
- Single-cell transcriptomic analysis of pea shoot development and cell-type-specific responses to boron deficiency 94%
Similar papers in this journal
- Root-specific secondary metabolism at the single-cell level: a case study of theanine metabolism and regulation in the roots of tea plants (Camellia sinensis) 94%
- The tRNA thiolation-mediated translational control is essential for plant immunity 94%
- Natural variation in salt-induced changes in root:shoot ratio reveals SR3G as a negative regulator of root suberization and salt resilience in Arabidopsis 92%
Similar papers in this journal
- MeSSII interplays the amylose and amylopectin biosynthesis by protein interactions in cassava storage root 95%
- Ancestral duplicated DL/CRC orthologs display function on orchid reproductive organ innovation 94%
- Sucrose transport and metabolism control carbon partitioning between stem and grain in rice 94%
"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.