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Microscale ecological stress causes RAPD molecular selection in wild barley, Neve Yaar microsite, Israel
Authors:E. D. Owuor  A. Beharav  T. Fahima  V. M. Kirzhner  A. B. Korol  E. Nevo
Affiliation:(1) Institute of Evolution, University of Haifa, Mt. Carmel, Haifa, 31905, Israel;(2) Present address: Center for Pharmaceutical Biotechnology, Department of Pharmaceutics and Pharmacodynamics, College of Pharmacy, University of Illinois at Chicago, 900 S Ashland, Chicago, 60612, USA
Abstract:Genetic micro-differentiation was studied in wild barley at the Neve Yaar microsite, Israel, an area of 3182 m2, which includes a mosaic of sun-rock, sun-soil, shade-rock, and shade-soil microniches. Fifty-six genotypes were tested for ecological-genetic microniche correlates. Analysis of 75 RAPD loci revealed a significantly higher polymorphism and gene diversity (P0.05 = 0.920; He = 0.411) on the more stressful sun-rock microniche, compared to the least stressful shade-soil microniche (P0.05 = 0.653; He = 0.188). Fifty-six (74.7%) out of the 75 loci varied significantly in allele frequencies. On the average, of the 75 loci, 75.7% of the total genetic diversity exists within the four microniches, while 24.3% exists between the microniches. The highest genetic distance was between shade-soil and sun-rock (D = 0.220), which confirmed their sharp microecological contrasts. Gametic phase disequilibria (LD) differed significantly between sunny and shady microniches. The levels of correct classification of individual genotypes into their respective microniche, based on the presence/absence of bands of the 2, 3, 4, 5, and 7 best differentiating loci, obtained by stepwise discriminant analysis, were 79, 84, 89, 95, and 100%, respectively. We conclude that ecological contrasts at the Neve Yaar microsite cause molecular diversifying selection (presumably at both coding and noncoding genomic regions of wild barley) overriding gene flow.
Keywords:Hordeum spontaneum  Microscale selection  RAPD
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