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Applied Phenomics and Genomics for Improving Barley Yellow Dwarf Resistance in Winter Wheat

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Journal G3 (Bethesda)
Date 2022 Mar 30
PMID 35353191
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Abstract

Barley yellow dwarf is one of the major viral diseases of cereals. Phenotyping barley yellow dwarf in wheat is extremely challenging due to similarities to other biotic and abiotic stresses. Breeding for resistance is additionally challenging as the wheat primary germplasm pool lacks genetic resistance, with most of the few resistance genes named to date originating from a wild relative species. The objectives of this study were to (1) evaluate the use of high-throughput phenotyping to improve barley yellow dwarf assessment; (2) identify genomic regions associated with barley yellow dwarf resistance; and (3) evaluate the ability of genomic selection models to predict barley yellow dwarf resistance. Up to 107 wheat lines were phenotyped during each of 5 field seasons under both insecticide treated and untreated plots. Across all seasons, barley yellow dwarf severity was lower within the insecticide treatment along with increased plant height and grain yield compared with untreated entries. Only 9.2% of the lines were positive for the presence of the translocated segment carrying the resistance gene Bdv2. Despite the low frequency, this region was identified through association mapping. Furthermore, we mapped a potentially novel genomic region for barley yellow dwarf resistance on chromosome 5AS. Given the variable heritability of the trait (0.211-0.806), we obtained a predictive ability for barley yellow dwarf severity ranging between 0.06 and 0.26. Including the presence or absence of Bdv2 as a covariate in the genomic selection models had a large effect for predicting barley yellow dwarf but almost no effect for other observed traits. This study was the first attempt to characterize barley yellow dwarf using field-high-throughput phenotyping and apply genomic selection to predict disease severity. These methods have the potential to improve barley yellow dwarf characterization, additionally identifying new sources of resistance will be crucial for delivering barley yellow dwarf resistant germplasm.

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References
1.
Larkin P, Banks P, Lagudah E, Appels R, Xiao C, Zhiyong X . Disomic Thinopyrum intermedium addition lines in wheat with barley yellow dwarf virus resistance and with rust resistances. Genome. 1995; 38(2):385-94. DOI: 10.1139/g95-050. View

2.
Miller W, Rasochova L . Barley yellow dwarf viruses. Annu Rev Phytopathol. 1997; 35:167-90. DOI: 10.1146/annurev.phyto.35.1.167. View

3.
Poland J, Nelson R . In the eye of the beholder: the effect of rater variability and different rating scales on QTL mapping. Phytopathology. 2010; 101(2):290-8. DOI: 10.1094/PHYTO-03-10-0087. View

4.
Poland J, Brown P, Sorrells M, Jannink J . Development of high-density genetic maps for barley and wheat using a novel two-enzyme genotyping-by-sequencing approach. PLoS One. 2012; 7(2):e32253. PMC: 3289635. DOI: 10.1371/journal.pone.0032253. View

5.
Poland J, Rutkoski J . Advances and Challenges in Genomic Selection for Disease Resistance. Annu Rev Phytopathol. 2016; 54:79-98. DOI: 10.1146/annurev-phyto-080615-100056. View