Detached Leaf Assays for Resistance to Crown Rust Reveal Diversity Within Populations of .

Plant Dis

4 Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, SY23 3EE Aberystwyth, U.K.

Published: May 2019

AI Article Synopsis

  • Crown rust is a damaging disease in oats, and while genetic resistance is key, relying on a few major resistance genes has led to the rapid emergence of new pathogen races.
  • Combining genes with partial resistance can enhance the durability of oat cultivars against these evolving diseases.
  • A study identified broad-spectrum resistance in wild oat relatives, particularly from Morocco, indicating that these diverse genetic resources could be vital for developing robust oat varieties.

Article Abstract

Crown rust is the most widespread and damaging disease of oat ( species). Genetic resistance to the pathogen is the preferred method for crop protection but widespread deployment of limited numbers of major effect genes has promoted the rapid emergence and spread of pathogen races that are able to overcome these genes. Combining genes with even partial resistance may help develop durable cultivars that are less vulnerable to changes in pathogen virulence. Partial resistance is expected to be relatively common in populations of wild species where constant pathogen pressure encourages diversity in host resistance mechanisms, but it may be discarded in conventional screens for major gene resistance. Here, we used a detached leaf assay to detect resistance to the crown rust pathogen, Cda. f. sp. , in previously uncharacterized collections of the hexaploid wild oat relative made by the Polish National Centre for Plant Genetic Resources. Many of the accessions were collected in Morocco, the center of diversity for the genus. The detached leaf assessment allowed individual plants to be challenged with multiple pathotypes and their responses compared with 34 known differentials. Broad-spectrum resistance was identified within accession PL 51855, which behaved as a single major locus on crossing to three cultivars. The locus provided resistance to over 50 rust pathotypes, a greater range than seen for any of the known host resistance () genes. Strong resistance was identified in other accessions, and heterogeneity in response within accessions was common. Several accessions show multiple partial resistance responses that may be of value for developing durable resistance in cultivars. Because the sources of resistance in all but two differential lines were collected outside of Morocco, resistance in all accessions tested here are potentially novel. This study demonstrates that diversity within accessions collected in Morocco could be a very valuable source of resistance to crown rust, and it provides new germplasm for use in resistance breeding programs. Detached leaf assessment provides a valuable first step in the identification of promising candidates in complex gene bank accessions.

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Source
http://dx.doi.org/10.1094/PDIS-06-18-1045-REDOI Listing

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