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Genetic structure and diversity of Phakopsora pachyrhizi isolates from soyabean
Authors:M Twizeyimana  P S Ojiambo  J S Haudenshield  G Caetano‐Anollés  K F Pedley  R Bandyopadhyay  G L Hartman
Institution:1. Department of Crop Sciences, University of Illinois at Urbana‐Champaign, Urbana, IL 61801;2. Department of Plant Pathology, North Carolina State University, Raleigh, NC 27695;3. Soybean/Maize Germplasm, Pathology, and Genetics Research Unit, USDA‐ARS, Urbana, IL 61801;4. Foreign Disease‐Weed Science Research Unit, USDA‐ARS, Fort Detrick, MD 21702, USA;5. International Institute of Tropical Agriculture, PMB 5320, Ibadan, Nigeria
Abstract:Simple sequence repeat (SSR) markers were used to classify 116 isolates of Phakopsora pachyrhizi, the cause of soyabean rust, collected from infected soyabean leaves in four agroecological zones in Nigeria. A high degree of genetic variation was observed within the sampled populations of P. pachyrhizi. Eighty‐four distinct genotypes were identified among three of the four agroecological zones. Nei’s average genetic diversity across geographical regions was 0·22. Hierarchical analysis of molecular variance showed low genetic differentiation among all populations of P. pachyrhizi. The majority (> 90%) of the genetic diversity was distributed within each soyabean field, while approximately 6% of the genetic diversity was distributed among fields within geographic regions. Low population differentiation was indicated by the low FST values among populations, suggesting a wide dispersal of identical genotypes on a regional scale. Phylogenetic analysis indicated a strictly clonal structure of the populations and five main groups were observed, with group II accounting for 30% of the entire population. Because of the asexual reproduction of P. pachyrhizi, single‐step mutations in SSR genotypes are likely to account for the genetic differences within each group.
Keywords:Glycine max  population biology  soyabean  soyabean rust  SSR genotype  virulence phenotype
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