Sequence Analysis of the Genome of Carnation (Dianthus Caryophyllus L.)
Overview
Molecular Biology
Authors
Affiliations
The whole-genome sequence of carnation (Dianthus caryophyllus L.) cv. 'Francesco' was determined using a combination of different new-generation multiplex sequencing platforms. The total length of the non-redundant sequences was 568,887,315 bp, consisting of 45,088 scaffolds, which covered 91% of the 622 Mb carnation genome estimated by k-mer analysis. The N50 values of contigs and scaffolds were 16,644 bp and 60,737 bp, respectively, and the longest scaffold was 1,287,144 bp. The average GC content of the contig sequences was 36%. A total of 1050, 13, 92 and 143 genes for tRNAs, rRNAs, snoRNA and miRNA, respectively, were identified in the assembled genomic sequences. For protein-encoding genes, 43 266 complete and partial gene structures excluding those in transposable elements were deduced. Gene coverage was ∼ 98%, as deduced from the coverage of the core eukaryotic genes. Intensive characterization of the assigned carnation genes and comparison with those of other plant species revealed characteristic features of the carnation genome. The results of this study will serve as a valuable resource for fundamental and applied research of carnation, especially for breeding new carnation varieties. Further information on the genomic sequences is available at http://carnation.kazusa.or.jp.
Evolutionary origin and gradual accumulation with plant evolution of the LACS family.
Zhou S, Wu X, Yuan Y, Qiao X, Wang Z, Wu M BMC Plant Biol. 2024; 24(1):481.
PMID: 38816698 PMC: 11140897. DOI: 10.1186/s12870-024-05194-2.
Lan L, Leng L, Liu W, Ren Y, Reeve W, Fu X Hortic Res. 2024; 11(1):uhad244.
PMID: 38225981 PMC: 10788775. DOI: 10.1093/hr/uhad244.
He Z, Chao H, Zhou X, Ni Q, Hu Y, Yu R Hortic Res. 2023; 10(11):uhad196.
PMID: 38023476 PMC: 10673659. DOI: 10.1093/hr/uhad196.
Jiang H, Zhang X, Leng L, Gong D, Zhang X, Liu J Front Plant Sci. 2023; 14:1230836.
PMID: 37600187 PMC: 10437072. DOI: 10.3389/fpls.2023.1230836.
Epigenetics governs senescence.
Kushwaha A, Mishra V, Tripathi D, Gupta R, Singh V Plant Reprod. 2023; 37(1):33-36.
PMID: 37594548 DOI: 10.1007/s00497-023-00479-2.