The cultivated strawberry,
Fragaria × ananassa
(
Fragaria
spp.) is the most economically important global soft fruit.
Phytophthora cactorum
, a water-borne oomycete causes economic losses in strawberry production globally. A bi-parental cross of octoploid cultivated strawberry segregating for resistance to
P
.
cactorum
, the causative agent of crown rot disease, was screened using artificial inoculation. Multiple putative resistance quantitative trait loci (QTL) were identified and mapped. Three major effect QTL (
FaRPc6C
,
FaRPc6D
and
FaRPc7D
) explained 37% of the variation observed. There were no epistatic interactions detected between the three major QTLs. Testing a subset of the mapping population progeny against a range of
P. cactorum
isolates revealed no significant interaction (
p
= 0.0593). However, some lines showed higher susceptibility than predicted, indicating that additional undetected factors may affect the expression of some quantitative resistance loci. Using historic crown rot disease score data from strawberry accessions, a preliminary genome-wide association study (GWAS) of 114 individuals revealed an additional locus associated with resistance to
P
.
cactorum
. Mining of the
Fragaria vesca
Hawaii 4 v1.1 genome revealed candidate resistance genes in the QTL regions.
Cockerton et al. Verticillium Wilt Resistance in Strawberry germplasm. Furthermore, comparison of imaging versus manual phenotyping revealed the automated platform could identify three out of four disease resistance markers. As such, this automated wilt disease phenotyping platform is considered to be a good, time saving, substitute for manual assessment.
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