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Abstract

Main conclusion

The approach presented here can be applied to reduce the time needed to introduce traits from wild apples into null segregant advanced selections by one-fourth.

Interesting traits like resistances to pathogens are often found within the wild apple gene pool. However, the long juvenile phase of apple seedlings hampers the rapid introduction of these traits into new cultivars. The rapid crop cycle breeding approach used in this paper is based on the overexpression of the birch (Betula pendula) MADS4 transcription factor in apple. Using the early flowering line T1190 and ‘Evereste’ as source of the fire blight resistance (Fb_E locus), we successfully established 18 advanced selections of the fifth generation in the greenhouse within 7 years. Fifteen individuals showed the habitus expected of a regular apple seedling, while three showed very short internodes. The null segregants possessing a regular habitus maintained the high level of fire blight resistance typical for ‘Evereste’. Using SSR markers, we estimated the percentage of genetic drag from ‘Evereste’ still associated with Fb_E on linkage group 12 (LG12). Eight out of the 18 selections had only 4% of ‘Evereste’ genome left. Since genotypes carrying the apple scab resistance gene Rvi6 and the fire blight resistance QTL Fb_F7 were used as parents in the course of the experiments, these resistances were also identified in some of the null segregants. One seedling is particularly interesting as, beside Fb_E, it also carries Fb_F7 heterozygously and Rvi6 homozygously. If null segregants obtained using this method will be considered as not genetically modified in Europe, as is already the case in the USA, this genotype could be a very promising parent for breeding new fire blight and scab-resistant apple cultivars in European apple breeding programs.

Details

Title
Generation of advanced fire blight-resistant apple (Malus × domestica) selections of the fifth generation within 7 years of applying the early flowering approach
Author
Schlathölter, Ina 1 ; Jänsch, Melanie 1 ; Flachowsky, Henryk 2 ; Giovanni Antonio Lodovico Broggini 3 ; Magda-Viola Hanke 2 ; Patocchi, Andrea 1   VIAFID ORCID Logo 

 Agroscope, Research Division Plant Breeding, Wädenswil, Switzerland 
 Julius Kühn-Institut, Institute for Breeding Research on Fruit Crops, Dresden, Germany 
 Agroscope, Research Division Plant Breeding, Wädenswil, Switzerland; Swiss Federal Institute of Technology, Molecular Plant Breeding, Zurich, Switzerland 
Pages
1475-1488
Publication year
2018
Publication date
Jun 2018
Publisher
Springer Nature B.V.
ISSN
0032-0935
e-ISSN
1432-2048
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2015709107
Copyright
Planta is a copyright of Springer, (2018). All Rights Reserved.