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Evaluation of Leaf Spot Resistance in Wild Arachis Species of Section Arachis
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ABSTRACT
Wild diploid Arachis species are potential sources of resistance to early (ELS) and late (LLS) leaf spot diseases caused by Passalora arachidicola (syn. Cercospora arachidicola Hori), and Nothopassalora personata (syn. Cercosporidium personatum (Berk. & Curt.) Deighton), respectively. Within section Arachis, limited information is available on the extent of genetic variation for resistance to these fungal pathogens. A collection of 78 accessions representing 15 wild species of Arachis section Arachis from the U.S peanut germplasm collection was evaluated for resistance to leaf spots. Screening was conducted under field (natural inoculum) conditions in Dawson, Georgia, during 2017 and 2018. Accessions differed significantly (P < 0.01) for all three disease variables evaluated, which included final defoliation rating, ELS lesion counts, and LLS lesion counts. Relatively high levels of resistance were identified for both diseases, with LLS being the predominant pathogen during the two years of evaluation. This research documents new sources of resistance to leaf spot diseases selected from an environment with high inoculum pressure. The presence of ELS and LLS enabled the selection of resistant germplasm for further introgression and pre-breeding.
American Peanut Research and Education Society
Title: Evaluation of Leaf Spot Resistance in Wild Arachis Species of Section Arachis
Description:
ABSTRACT
Wild diploid Arachis species are potential sources of resistance to early (ELS) and late (LLS) leaf spot diseases caused by Passalora arachidicola (syn.
Cercospora arachidicola Hori), and Nothopassalora personata (syn.
Cercosporidium personatum (Berk.
& Curt.
) Deighton), respectively.
Within section Arachis, limited information is available on the extent of genetic variation for resistance to these fungal pathogens.
A collection of 78 accessions representing 15 wild species of Arachis section Arachis from the U.
S peanut germplasm collection was evaluated for resistance to leaf spots.
Screening was conducted under field (natural inoculum) conditions in Dawson, Georgia, during 2017 and 2018.
Accessions differed significantly (P < 0.
01) for all three disease variables evaluated, which included final defoliation rating, ELS lesion counts, and LLS lesion counts.
Relatively high levels of resistance were identified for both diseases, with LLS being the predominant pathogen during the two years of evaluation.
This research documents new sources of resistance to leaf spot diseases selected from an environment with high inoculum pressure.
The presence of ELS and LLS enabled the selection of resistant germplasm for further introgression and pre-breeding.
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