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Characterization and elimination of linkage-drag associated with Fusarium wilt race 3 resistance genes

Jessica Chitwood-Brown; Gary E. Vallad; Tong Geon Lee; Samuel F. Hutton
Theoretical and Applied Genetics · Vol. 134, Issue 7 · pp. 2129-2140 · 2021

Abstract

Key message Reducing the size of the I-3 introgression resulted in eliminating linkage-drag contributing to increased sensitivity to bacterial spot and reduced fruit size. The I-7 gene was determined to have no effect on bacterial spot or fruit size, and germplasm is now available with both the reduced I-3 introgression and I-7. Abstract Tomato ( Solanum lycopersicum ) production is increasingly threatened by Fusarium wilt race 3 ( Fol3 ) caused by the soilborne fungus, Fusarium oxysporum f. sp. lycopersici . Although host resistance based on the I-3 gene is the most effective management strategy, I-3 is associated with detrimental traits including reduced fruit size and increased bacterial spot sensitivity. Previous research demonstrated the association with bacterial spot is not due to the I-3 gene, itself, and we hypothesize that reducing the size of the I-3 introgression will remedy this association. Cultivars with I-7 , an additional Fol3 resistance gene, are available but are not widely used commercially, and it is unclear whether I-7 also has negative horticultural associations. To characterize the effect of I-3 on fruit size, segregating populations were developed and evaluated, revealing that the large I-3 introgression decreased fruit size by approximately 21%. We reduced the I-3 introgression from 5 to 140 kb through successive recombinant screening and crossing efforts. The reduced I-3 introgression and I-7 were then separately backcrossed into elite Florida breeding lines and evaluated for effects on bacterial spot sensitivity and fruit size across multiple seasons. The reduced I-3 introgression resulted in significantly less bacterial spot and larger fruit size than the large introgression, and it had no effect on these horticultural characteristics compared with Fol3 susceptibility. I-7 was also found to have no effect on these traits compared to Fol3 susceptibility. Together, these efforts support the development of superior Fol3 -resistant cultivars and more durable resistance against this pathogen.

Bibliographic Information

JournalTheoretical and Applied Genetics
PublisherSpringer
Publication Date2021-07-01
Publication Year2021
Volume134
Issue7
Pages2129-2140
Document TypeJournal Article
Print ISSN0040-5752
eISSN1432-2242
DOI10.1007/s00122-021-03810-5

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NARA Access Coverage1929-01-01~Current
Journal Homepagehttps://www.springer.com/journal/122
Publisher PageOpen Publisher Page
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