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Erysiphe trifolii– a newly recognized powdery mildew pathogen of pea
Authors:R N Attanayake  D A Glawe  K E McPhee  F M Dugan  W Chen
Institution:1. Department of Plant Pathology, Washington State University, Pullman WA 99164;2. College of Forest Resources, University of Washington, Seattle WA 98195;3. Department of Plant Sciences, North Dakota State University, Fargo ND 58108;4. USDA‐ARS, Washington State University, Pullman WA 99164, USA
Abstract:Diversity of powdery mildew pathogens infecting pea (Pisum sativum) in the US Pacific Northwest was investigated using both molecular and morphological techniques. Phylogenetic analyses based on rDNA ITS sequences, in combination with assessment of morphological characters, defined two groups of powdery mildews infecting pea. Group I (five field samples and three glasshouse samples) had ITS sequences 99% similar to those of Erysiphe pisi in GenBank and exhibited simple, mycelioid type of chasmothecial appendages typical of E. pisi. Erysiphe pisi is normally considered as the powdery mildew pathogen of pea. Group II (four glasshouse samples and two field samples) had ITS sequences 99% similar to those of E. trifolii and produced chasmothecia with dichotomously branched appendages similar to those of E. trifolii. There are fourteen nucleotide differences in the ITS region between the two groups. The correlation of rDNA ITS sequences with teleomorphic features for each of the two groups confirms their identity. Repeated samplings and artificial inoculations indicate that both E. pisi and E. trifolii infect pea in the US Pacific Northwest. Erysiphe trifolii is not previously known as a pathogen of pea. The existence of two distinct powdery mildew species infecting pea in both glasshouse and field environments may interfere with the powdery mildew‐resistance breeding programmes, and possibly explains putative instances of breakdown of resistance in previously resistant pea breeding lines.
Keywords:chasmothecial appendages  ITS sequences  Pisum sativum  powdery mildew  single nucleotide polymorphism  taxonomy
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