Complete Annotated Genome Assembly of Flax Pathogen Colletotrichum lini

Author:

Sigova Elizaveta A.1ORCID,Dvorianinova Ekaterina M.1ORCID,Rozhmina Tatiana A.2,Kudryavtseva Ludmila P.2,Zhernova Daiana A.13,Kaplun Antoniy M.14,Pavlova Valeria A.15,Bodrov Yakov V.15,Arkhipov Alexander A.16,Borkhert Elena V.1,Pushkova Elena N.1,Melnikova Nataliya V.1ORCID,Dmitriev Alexey A.1ORCID

Affiliation:

1. Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow 119991, Russia

2. Federal Research Center for Bast Fiber Crops, Torzhok 172002, Russia

3. Faculty of Biology, Lomonosov Moscow State University, Moscow 119234, Russia

4. Moscow Institute of Physics and Technology, Moscow 141701, Russia

5. Lomonosov Institute of Fine Chemical Technologies, MIREA—Russian Technological University, Moscow 119571, Russia

6. I.M. Sechenov First Moscow State Medical University, Moscow 119991, Russia

Abstract

Colletotrichum lini is a fungal pathogen of flax that can cause significant yield and quality losses. In this work, we obtained the first complete annotated genome assembly of the highly virulent C. lini strain #394-2. The nuclear genome consisted of ten core and two accessory chromosomes and had a length of 53.7 Mb. The mitochondrial genome was 39.1 kb. The assembly was obtained by the Canu–Racon ×2–Medaka–Polca algorithm using Oxford Nanopore Technologies and Illumina data. As a result of the annotation with the Illumina RNA-Seq data, 12,449 genes were identified. Potential signaling proteins were tested for effector functions and 550 effector proteins were predicted using EffectorP. The visualization of the effector protein localization revealed that the presence of effector proteins was associated with repeat-rich regions. A comparison of the genomic structure of C. lini with chromosome-level and complete assemblies of the genus Colletotrichum representatives revealed that the genomes of Colletotrichum species differed by the presence of chromosomal rearrangements. The obtained assembly expands the knowledge of the genomic structure of Colletotrichum species and provides the basis for further studies of C. lini, which will help to understand the virulence mechanisms and protect flax from anthracnose.

Funder

Russian Science Foundation

Publisher

MDPI AG

Reference47 articles.

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3. Moyse, J., Lecomte, S., Marcou, S., Mongelard, G., Gutierrez, L., and Höfte, M. (2023). Overview and management of the most common eukaryotic diseases of flax (Linum usitatissimum). Plants, 12.

4. Rashid, K.Y. (2003). Principal diseases of flax. Flax, CRC Press.

5. Marchenkov, A., and Rozhmina, T. (2003). Cultivation of flax. Flax, CRC Press.

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