The genome of the toxic invasive species Heracleum sosnowskyi carries an increased number of genes despite absence of recent whole‐genome duplications

Author:

Schelkunov Mikhail I.12,Shtratnikova Viktoria Yu.3,Klepikova Anna V.1,Makarenko Maksim S.1,Omelchenko Denis O.1,Novikova Lyudmila A.3,Obukhova Ekaterina N.2,Bogdanov Viktor P.4,Penin Aleksey A.1ORCID,Logacheva Maria D.12ORCID

Affiliation:

1. Institute for Information Transmission Problems of the Russian Academy of Sciences Moscow Russia

2. Skolkovo Institute of Science and Technology Moscow Russia

3. Belozersky Institute of Physico‐Chemical Biology Lomonosov Moscow State University Moscow Russia

4. Life Sciences Research Center Moscow Institute of Physics and Technology Dolgoprudniy Russia

Abstract

SUMMARYHeracleum sosnowskyi, belonging to a group of giant hogweeds, is a plant with large effects on ecosystems and human health. It is an invasive species that contributes to the deterioration of grassland ecosystems. The ability of H. sosnowskyi to produce linear furanocoumarins (FCs), photosensitizing compounds, makes it very dangerous. At the same time, linear FCs are compounds with high pharmaceutical value used in skin disease therapies. Despite this high importance, it has not been the focus of genetic and genomic studies. Here, we report a chromosome‐scale assembly of Sosnowsky's hogweed genome. Genomic analysis revealed an unusually high number of genes (55106) in the hogweed genome, in contrast to the 25–35 thousand found in most plants. However, we did not find any traces of recent whole‐genome duplications not shared with its confamiliar, Daucus carota (carrot), which has approximately thirty thousand genes. The analysis of the genomic proximity of duplicated genes indicates on tandem duplications as a main reason for this increase. We performed a genome‐wide search of the genes of the FC biosynthesis pathway and surveyed their expression in aboveground plant parts. Using a combination of expression data and phylogenetic analysis, we found candidate genes for psoralen synthase and experimentally showed the activity of one of them using a heterologous yeast expression system. These findings expand our knowledge on the evolution of gene space in plants and lay a foundation for further analysis of hogweed as an invasive plant and as a source of FCs.

Funder

Ministry of Science and Higher Education of the Russian Federation

Russian Science Foundation

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

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