A chromosome-level, fully phased genome assembly of the oat crown rust fungus Puccinia coronata f. sp. avenae: a resource to enable comparative genomics in the cereal rusts

Author:

Henningsen Eva C123ORCID,Hewitt Tim2ORCID,Dugyala Sheshanka1,Nazareno Eric S1ORCID,Gilbert Erin4,Li Feng5ORCID,Kianian Shahryar F16,Steffenson Brian J1ORCID,Dodds Peter N2ORCID,Sperschneider Jana2ORCID,Figueroa Melania2ORCID

Affiliation:

1. Department of Plant Pathology, University of Minnesota , St. Paul, MN 55108, USA

2. Commonwealth Scientific and Industrial Research Organisation, Agriculture and Food , Canberra, ACT 2601, Australia

3. Present address: Research School of Biology , The Australian National University, Canberra, ACT 2601, Australia

4. Bayer CropScience , Creve Coeur, MO 63141, USA

5. eGenesis Inc. , Cambridge, MA 02139, USA

6. USDA-ARS Cereal Disease Laboratory , St. Paul, MN 55108, USA

Abstract

Abstract Advances in sequencing technologies as well as development of algorithms and workflows have made it possible to generate fully phased genome references for organisms with nonhaploid genomes such as dikaryotic rust fungi. To enable discovery of pathogen effectors and further our understanding of virulence evolution, we generated a chromosome-scale assembly for each of the 2 nuclear genomes of the oat crown rust pathogen, Puccinia coronata f. sp. avenae (Pca). This resource complements 2 previously released partially phased genome references of Pca, which display virulence traits absent in the isolate of historic race 203 (isolate Pca203) which was selected for this genome project. A fully phased, chromosome-level reference for Pca203 was generated using PacBio reads and Hi-C data and a recently developed pipeline named NuclearPhaser for phase assignment of contigs and phase switch correction. With 18 chromosomes in each haplotype and a total size of 208.10 Mbp, Pca203 has the same number of chromosomes as other cereal rust fungi such as Puccinia graminis f. sp. tritici and Puccinia triticina, the causal agents of wheat stem rust and wheat leaf rust, respectively. The Pca203 reference marks the third fully phased chromosome-level assembly of a cereal rust to date. Here, we demonstrate that the chromosomes of these 3 Puccinia species are syntenous and that chromosomal size variations are primarily due to differences in repeat element content.

Funder

PepsiCo Inc

USDA-ARS/The University of Minnesota Standard Cooperative Agreement

College of Food, Agriculture, and Natural Resource Science at the University of Minnesota

CSIRO Research Office Postdoctoral Fellowship

ARC Discovery Early Career Researcher Award

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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