bioRxiv Science⌕ Search

Biology subjects

van Kaauwen, M. P. W.

Publications and source records attributed to van Kaauwen, M. P. W..

2 recordsLinked to original sources

Chromosome level assembly of wild spinach provides insights into the divergence of homo- and heteromorphic plant sex-chromosomes.

BackgroundCultivated spinach (Spinacia oleracea) is a highly nutritional crop species of great economical value that belongs to a genus of dioecious plant species with both homomorphic and heteromorphic sex chromosomes. The wild spinach species Spinacia turkestanica and Spinacia tetrandra are important genetic sources for improving cultivated spinach and excellent material for studying sex chromosome evolution in plants. However, until now there were no publicly available genome assemblies for these species. ResultsHere we sequenced and assembled the genomes of S. turkestanica and S. tetrandra and performed a tri-way comparative analysis with S. oleracea. We show that many abiotic- and biotic stress related gene clusters have expanded through tandem duplication in S. tetrandra after it diverged from the S. turkestanica - S. oleracea lineage. Focussing on the sex chromosomes we found that the previously identified inversion distinguishing the S. oleracea male- and female-SEX DETERMINING REGIONs (SDRs) is conserved in S. turkestanica. Although, the SDRs of these two species coincides with the PSEUDO AUTOSOMAL REGION of S. tetrandra the gene content is only partially conserved and the genetic factors determining sex in these species might differ. Finally, we show that recombination suppression between the S. tetrandra X- and Y-chromosomes resulted in a highly degenerated Y-chromosome and started before the species diverged from S. turkestanica and S. oleracea. ConclusionsWe expect that the novel wild spinach species genomes are of great value to the breeding community and evolutionary biologist especially focussing on the evolution of sex chromosomes in plants.

evolutionary biology↗

Insights from the first genome assembly of Onion (Allium cepa)

Onion is an important vegetable crop with an estimated genome size of 16Gb. We describe the de novo assembly and ab initio annotation of the genome of a doubled haploid onion line DHCU066619, which resulted in a final assembly of 14.9 Gb with a N50 of 461 Kb. Of this, 2.2 Gb was ordered into 8 pseudomolecules using five genetic linkage maps. The remainder of the genome is available in 89.8 K scaffolds. Only 72.4% of the genome could be identified as repetitive sequences and consist, to a large extent, of (retro) transposons. In addition, an estimated 20% of the putative (retro) transposons had accumulated a large number of mutations, hampering their identification, but facilitating their assembly. These elements are probably already quite old. The ab initio gene prediction indicated 540,925 putative gene models, which is far more than expected, possibly due to the presence of pseudogenes. Of these models, 86,073 showed similarity to published proteins (UNIPROT). No gene rich regions were found, genes are uniformly distributed over the genome. Analysis of synteny with A. sativum (garlic) showed collinearity but also major rearrangements between both species. This assembly is the first high-quality genome sequence available for the study of onion and will be a valuable resource for further research.

genomics↗