Pathogen lifestyle determines host genetic signature of quantitative disease resistance loci in oilseed rape (Brassica napus)

Author:

Jacott Catherine Nancy1ORCID,Schoonbeek Henk-jan1,Sidhu Gurpinder Singh1,Steuernagel Burkhard1,Kirby Rachel1,Zheng Xiaorong2,von Tiederman Andreas2,Macioszek Violetta K3,Kononowicz Andrzej K4,Fell Heather5,Fitt Bruce DL5,Mitrousia Georgia K5,Stotz Henrik U5,Ridout Christopher J1,Wells Rachel1ORCID

Affiliation:

1. John Innes Centre

2. Georg-August-Universitat Gottingen

3. University of Bialystok: Uniwersytet w Bialymstoku

4. University of Lodz: Uniwersytet Lodzki

5. University of Hertfordshire School of Life and Medical Sciences

Abstract

Abstract Crops are affected by several pathogens, but these are rarely studied in parallel to identify common and unique genetic factors controlling diseases. Broad-spectrum quantitative disease resistance (QDR) is desirable for crop breeding as it confers resistance to several pathogen species. Here, we use associative transcriptomics (AT) to identify candidate gene loci associated with Brassica napus QDR to four contrasting fungal pathogens: Alternaria brassicicola, Botrytis cinerea, Pyrenopeziza brassicae, and Verticillium longisporum. We did not identify any shared loci associated with broad-spectrum QDR to fungal pathogens with contrasting lifestyles. Instead, we observed QDR dependent on the lifestyle of the pathogen—hemibiotrophic and necrotrophic pathogens had distinct QDR responses and associated loci, including some loci associated with early immunity. Furthermore, we identify a genomic deletion associated with resistance to V. longisporum and potentially broad-spectrum QDR. This is the first time AT has been used for several pathosystems simultaneously to identify host genetic loci involved in broad-spectrum QDR. We highlight candidate loci for broad-spectrum QDR with no antagonistic effects on susceptibility to the other pathogens studies as candidates for crop breeding. In conclusion, this study represents an advancement in our understanding of broad-spectrum (QDR) in B. napus and is a significant resource for the scientific community.

Publisher

Research Square Platform LLC

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