4.7 Article

Inheritance of Antibiosis Resistance to the Dectes Stem Borer, Dectes texanus, in Soybean PI165673

Journal

AGRONOMY-BASEL
Volume 11, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/agronomy11040738

Keywords

Dectes texanus; soybean; host-plant resistance; antibiosis; inheritance of resistance

Funding

  1. Kansas Soybean Commission
  2. Kansas State University Research and Extension

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The study found that soybean PI165673 exhibits resistance to Dectes texanus, controlled by two genes with dominant and recessive epistasis. The resistance is characterized by antibiosis and successful prevention of larval development in the stem, with PI165673 showing lower larval and egg numbers and no girdling damage at the end of the season.
Dectes texanus larvae girdles the stems of soybean and cultivated sunflowers causing significant yield losses in North America. The soybean Plant Introduction (PI) 165673 exhibits antibiosis resistance to the larval stage. The objectives of this study were: (1) to determine the inheritance of D. texanus resistance in PI165673; (2) evaluate PI165673 antibiosis resistance before 21 d post infestation; (3) evaluate girdling damage in PI16563 at the end of the season. K07-1544/PI165673 F-2 and F-2:3 populations were tested for resistance to D. texanus in 2011 and 2012, and PI165673 antibiosis resistance and girdling damage were evaluated in 2014. Segregation for resistance to D. texanus and heritability estimates in the F-2 and F-2:3 populations indicated that resistance was controlled by two genes with dominant and recessive epistasis. Antibiosis evaluations indicated: (1) PI165673 contained lower number of larvae and eggs relative to the number of oviposition punctures at 15 d post infestation; (2) the proportion of first-instar larvae was higher in PI165673 at 15 d post infestation; (3) larvae reach the sixth-instar stage in PI165673. None of the PI165673 plants were girdled at the end of the season. Identification of additional sources of D. texanus resistance is required to impair larval development in the stem.

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