A Partially Phase-Separated Genome Sequence Assembly of the Vitis Rootstock ‘Börner’ (Vitis riparia x Vitis cinerea) and its Exploitation for Marker Development and Targeted Mapping

Author:

Holtgräwe DanielaORCID,Sörensen Thomas Rosleff,Hausmann Ludger,Pucker BoasORCID,Viehöver Prisca,Töpfer Reinhard,Weisshaar Bernd

Abstract

AbstractGrapevine breeding becomes highly relevant due to upcoming challenges like climate change, a decrease in the number of available fungicides, increasing public concern about plant protection, and the demand for a sustainable production. Downy mildew caused by Plasmopara viticola is one of the most devastating diseases worldwide of cultivated Vitis vinifera. Therefore, in modern breeding programs genetic marker technologies and genomic data are used to develop new cultivars with defined and stacked resistance loci. Potential sources of resistance are wild species of American or Asian origin. The interspecific hybrid of Vitis riparia Gm 183 x V. cinerea Arnold, available as the rootstock cultivar ‘Börner’, carries several relevant resistance loci. We applied next generation sequencing to enable the reliable identification of simple sequence repeats (SSR) and also generated a draft genome sequence assembly of ‘Börner’ to access genome wide sequence variations in a comprehensive and highly reliable way. These data were used to cover the ‘Börner’ genome with genetic marker positions. A subset of these marker positions was used for targeted mapping of the P. viticola resistance locus, Rpv14, to validate the marker position list. Based on the reference genome sequence PN40024, the position of this resistance locus can be narrowed down to less than 0.5 Mbp on chromosome 5.

Publisher

Cold Spring Harbor Laboratory

Reference49 articles.

1. Adam-Blondon, A.-F. , Jaillon, O. , Vezzulli, S. , Zharkikh, A. , Troggio, M. , and Velasco, R. (2011). “Genome Sequence Initiatives,” in Genetics, Genomics and Breeding of Grapes, eds. A.-F. Adam-Blondon , J.M. Martinez-Zapater & C. Kole .).

2. Limitations of next-generation genome sequence assembly;Nature Methods,2011

3. Grapevine powdery mildew resistance and susceptibility loci identified on a high-resolution SNP map

4. Association mapping of disease loci, by use of a pooled DNA genomic screen;American Journal of Human Genetics,1997

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