A multi-omic Nicotiana benthamianaresource for fundamental research and biotechnology

Autor: Ranawaka, Buddhini, An, Jiyuan, Lorenc, Michał T., Jung, Hyungtaek, Sulli, Maria, Aprea, Giuseppe, Roden, Sally, Llaca, Victor, Hayashi, Satomi, Asadyar, Leila, LeBlanc, Zacharie, Ahmed, Zuba, Naim, Fatima, de Campos, Samanta Bolzan, Cooper, Tal, de Felippes, Felipe F., Dong, Pengfei, Zhong, Silin, Garcia-Carpintero, Victor, Orzaez, Diego, Dudley, Kevin J., Bombarely, Aureliano, Bally, Julia, Winefield, Christopher, Giuliano, Giovanni, Waterhouse, Peter M.
Zdroj: Nature Plants; 20230101, Issue: Preprints p1-14, 14p
Abstrakt: Nicotiana benthamianais an invaluable model plant and biotechnology platform with a ~3 Gb allotetraploid genome. To further improve its usefulness and versatility, we have produced high-quality chromosome-level genome assemblies, coupled with transcriptome, epigenome, microRNA and transposable element datasets, for the ubiquitously used LAB strain and a related wild accession, QLD. In addition, single nucleotide polymorphism maps have been produced for a further two laboratory strains and four wild accessions. Despite the loss of five chromosomes from the ancestral tetraploid, expansion of intergenic regions, widespread segmental allopolyploidy, advanced diploidization and evidence of recent bursts of Copia pseudovirus (Copia) mobility not seen in other Nicotianagenomes, the two subgenomes of N. benthamianashow large regions of synteny across the Solanaceae. LAB and QLD have many genetic, metabolic and phenotypic differences, including disparate RNA interference responses, but are highly interfertile and amenable to genome editing and both transient and stable transformation. The LAB/QLD combination has the potential to be as useful as the Columbia-0/Landsberg errecta partnership, utilized from the early pioneering days of Arabidopsisgenomics to today.
Databáze: Supplemental Index