Characterization of resistance to the wheat stem sawfly in spring wheat landrace accessions from targeted geographic regions of the world
Date
2017-07
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Plant landraces have long been recognized as potential gene pools for biotic and abiotic stress-related genes. This research used spring wheat landrace accessions to identify new sources of resistance to the wheat stem sawfly (WSS) (Cephus cinctus Norton), an important insect pest of wheat in the northern Great Plains of North America. Screening efforts targeted 1409 accessions from six geographical areas of the world where other species of grain sawflies are endemic or where a high frequency of accessions possesses the resistance characteristic of solid stems. Resistance was observed in approximately 14% of accessions. Half of the lines displayed both antixenosis and antibiosis types of resistance. Among the resistant accessions, 41% had solid or semi-solid stems. Molecular genetic screening for haplotypes at the solid stem QTL, Qss.msub.3BL, showed that 15% of lines shared the haplotype derived from \'S-615\', the original donor of the solid stem trait to North American germplasm. Other haplotypes associated with solid stems were also observed. Haplotype diversity was greater in the center of origin of wheat. Evaluation of a representative set of resistant landrace accessions in replicated field trials at four locations over a three year period identified accessions with potential genes for reduced WSS infestation, increased WSS mortality, and increased indirect defense via parasitoids. Exploitation of distinct types of plant defense will expand the genetic diversity for WSS resistance currently present in elite breeding lines.
Description
Keywords
Citation
Varella, Andrea C. , David K. Weaver, Jason P. Cook, Nancy K. Blake, Megan L. Hofland, Peggy F. Lamb, and Luther E. Talbert. "Characterization of resistance to the wheat stem sawfly in spring wheat landrace accessions from targeted geographic regions of the world." Euphytica 213, no. 7 (July 2017): 1-11. DOI:https://dx.doi.org/10.1007/s10681-017-1945-x.