bioRxiv · 10.1101/2023.08.24.554588
Isoform-resolved genome annotation enables mapping of tissue-specific betalain regulation and anthocyanin regulator co-option in amaranth
Abstract
* Betalains are coloring pigments produced in some families of the order Caryophyllales, where they replace anthocyanins as coloring pigments. While the betalain pathway itself is well studied, the tissue-specific regulation of the pathway remains mostly unknown. * We enhance the high-quality Amaranthus hypochondriacus reference genome and produce a substantially more complete genome annotation, incorporating isoform details. We annotate betalain and anthocyanin pathway genes along with their regulators in amaranth and map the genetic control and tissue-specific regulation of the betalain pathway. * Our improved genome annotation allowed us to identify causal mutations that lead to a knock-out of red betacyanins in natural accessions of amaranth. We reveal the tissue-specific regulation of flower color via a previously uncharacterized MYB transcription factor, AhMYB2. Downregulation of AhMYB2 in the flower leads to reduced expression of key betalain enzyme genes and loss of red flower color. * Our improved amaranth reference genome represents the most complete genome of amaranth to date and a valuable resource for betalain and amaranth research. High similarity of the flower betalain regulator AhMYB2 to anthocyanin regulators and a partially conserved interaction motif support the co-option of anthocyanin regulators for the betalain pathway as possible reason for mutual exclusiveness of the two pigments.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Winkler, T. S., Vollmer, S. K., Stetter, M. G.. 2023-08-25. Isoform-resolved genome annotation enables mapping of tissue-specific betalain regulation and anthocyanin regulator co-option in amaranth. https://doi.org/10.1101/2023.08.24.554588
Cite the original work for its findings. Save a collection to share your selection of sources.