Genetic mapping of loci involved in oil tocopherol composition control in Russian sunflower (Helianthus annuus L.) lines

Author:

Gubaev Rim12ORCID,Boldyrev Stepan12ORCID,Martynova Elena1ORCID,Chernova Alina12ORCID,Kovalenko Tatyana3ORCID,Peretyagina Tatyana3ORCID,Goryunova Svetlana145ORCID,Goryunov Denis16ORCID,Mukhina Zhanna7ORCID,Ben Cecile1ORCID,Gentzbittel Laurent1ORCID,Khaitovich Philipp1ORCID,Demurin Yakov3ORCID

Affiliation:

1. Skolkovo Institute of Science and Technology, Moscow 121205, Russia

2. LLC “Oil Gene”, Moscow 121205, Russia

3. Pustovoit All-Russia Research Institute of Oil Crops, Krasnodar 350038, Russia

4. Russian Potato Research Center, Kraskovo 140051, Russia

5. Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow 119333, Russia

6. Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow 119992, Russia

7. All-Russia Rice Research Institute, Krasnodar 350921, Russia

Abstract

Abstract Tocopherols are antioxidants that preserve oil lipids against oxidation and serve as a natural source of vitamin E in the human diet. Compared with other major oilseeds like rapeseed and soybean, sunflower (Helianthus annuus L.) exhibits low phenotypic diversity of tocopherol composition, both in wild and cultivated accessions from germplasm collections. Two major mutations that alter tocopherol composition were identified in genetic collections, and several studies suggested additional loci controlling tocopherol composition, with their expression possibly depending on the genetic background. In the present study, we performed QTL mapping of tocopherol composition in two independent F2 crosses between lines with contrasting tocopherol composition from the Pustovoit All-Russia Research Institute of Oil Crops (VNIIMK) collection. We used genotyping-bysequencing (GBS) to construct single nucleotide polymorphism-based genetic maps, and performed QTL mapping using quantitative and qualitative encoding for phenotypic traits. Our results support the notion that the tocopherol composition in the assessed crosses is controlled by two loci. We additionally selected and validated two single nucleotide polymorphism markers for each cross which could be used for marker-assisted selection.

Funder

RFBR

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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