SMRT–AgRenSeq-d in potato (Solanum tuberosum) as a method to identify candidates for the nematode resistance Gpa5

Author:

Wang Yuhan1ORCID,Brown Lynn H1ORCID,Adams Thomas M2ORCID,Cheung Yuk Woon1ORCID,Li Jie3,Young Vanessa4,Todd Drummond T4,Armstrong Miles R1ORCID,Neugebauer Konrad5ORCID,Kaur Amanpreet16ORCID,Harrower Brian2,Oome Stan7,Wang Xiaodan3,Bayer Micha2ORCID,Hein Ingo123ORCID

Affiliation:

1. The University of Dundee Division of Plant Sciences at the Hutton, , Errol Road, Invergowrie, Dundee, DD2 5DA, UK

2. The James Hutton Institute , Errol Road, Invergowrie, Dundee, DD2 5DA, UK

3. China Agricultural University College of Plant Protection, , Haidian District, Beijing, 100083, China

4. The James Hutton Institute James Hutton Limited, , Errol Road, Invergowrie, Dundee, DD2 5DA, UK

5. Biomathematics and Statistics Scotland , Errol Road, Invergowrie, Dundee, DD2 5DA, UK

6. Teagasc Crop Research Centre, , Oak Park, Carlow R93 XE12, Ireland

7. HZPC HZPC Research B.V. , Edisonweg 5, 8501 XG Joure, Netherlands

Abstract

Abstract Potato is the third most important food crop in the world. Diverse pathogens threaten sustainable crop production but can be controlled, in many cases, through the deployment of disease resistance genes belonging to the family of nucleotide-binding, leucine-rich-repeat (NLR) genes. To identify effective disease resistance genes in established varieties, we have successfully established SMRT–AgRenSeq in tetraploid potatoes and have further enhanced the methodology by including dRenSeq in an approach that we term SMR–AgRenSeq-d. The inclusion of dRenSeq enables the filtering of candidates after the association analysis by establishing a presence/absence matrix across resistant and susceptible varieties that is translated into an F1 score. Using a SMRT–RenSeq-based sequence representation of the NLRome from the cultivar Innovator, SMRT–AgRenSeq-d analyses reliably identified the late blight resistance benchmark genes Rpi-R1, Rpi-R2-like, Rpi-R3a, and Rpi-R3b in a panel of 117 varieties with variable phenotype penetrations. All benchmark genes were identified with an F1 score of 1, which indicates absolute linkage in the panel. This method also identified nine strong candidates for Gpa5 that controls the potato cyst nematode (PCN) species Globodera pallida (pathotypes Pa2/3). Assuming that NLRs are involved in controlling many types of resistances, SMRT–AgRenSeq-d can readily be applied to diverse crops and pathogen systems.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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