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Genetic differentiation of Puccinia triticina Erikss. in Russia

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TLDR
Current analysis confirmed the assumption made earlier on the basis of the virulence analysis about the existence of several geographic fungi populations in Russia with respect to Puccinia triticina isolates.
Abstract
A collection of Puccinia triticina isolates was characterized for polymorphism of microsatellite loci and estimated for their differentiation by geographic origin. The collection included 20 isolates from the Ural region, 31 from West Siberia, 53 from Central Europe, 32 from the Northwest region, 32 from the Volga region, and 40 from the North Caucasus (24 from Dagestan and 16 from Krasnodar and Stavropol). The studied isolates were represented by 65 virulence phenotypes. In the polymorphism analysis of 18 microsatellite loci, 69 genotypes were determined. The index values of genetic distances (F st, R st, KB c) between populations for microsatellite loci indicated differentiation of P. triticina isolates according to geographical origin, and they were clustered into three groups: (1) Asian, (2) European, and (3) North Caucasian. The North Caucasian isolates from Krasnodar and Stavropol regions were closer in similarity to European isolates than the Dagestan ones. Current analysis confirmed the assumption made earlier on the basis of the virulence analysis about the existence of several geographic fungi populations in Russia.

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Journal ArticleDOI

Leaf Rust Resistance Genes in Wheat Cultivars Registered in Russia and Their Influence on Adaptation Processes in Pathogen Populations

TL;DR: Research on the genetic diversity of winter and spring wheat cultivars included in the State Register of Russia from 2000 to 2020 is reviewed and demonstrates the continuous evolution of P. triticina in response to wheat breeding efforts.
Journal ArticleDOI

Regional and temporal differentiation of virulence phenotypes of Puccinia triticina from common wheat in Russia during the period 2001–2018

TL;DR: Remarkable changes were observed in frequencies of P. triticina races defined by their virulence/avirulence to Lr1 and Lr2a genes, which are postulate to be specific to that area and pathogen populations in European and Asian parts of Russia are distinct.
Journal ArticleDOI

SLAF-seq Uncovers the Genetic Diversity and Adaptation of Chinese Elm (Ulmus parvifolia) in Eastern China

TL;DR: This study was the first on the genetic diversity and local adaptation in Chinese elms, and the results will be helpful in future work on molecular breeding.
Journal ArticleDOI

Dissimilarity of individual microsatellite profiles under different mutation models: Empirical approach.

TL;DR: It is shown that inferences about population genetic structure are sensitive to the assumed mutation model, and new dissimilarity indices between SSR profiles of haploid, diploid, or polyploid organisms assuming different mutation models are developed.
References
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Journal ArticleDOI

Wheat leaf rust caused by Puccinia triticina

TL;DR: This review summarizes current knowledge of the P.triticina/wheat interaction with emphasis on the infection process, molecular aspects of pathogenicity, rust resistance genes in wheat, genetics of the host parasite interaction, and the population biology of P. triticina.
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Similarity coefficients for molecular markers in studies of genetic relationships between individuals for haploid, diploid, and polyploid species

TL;DR: It is shown that there are no acceptable universal approaches to assessing the dissimilarity between individuals with molecular markers, and no suitable method for measuring genetic dissimilarities between diploids with dominant markers can be proposed.
Journal ArticleDOI

The recent history of Puccinia striiformis f.sp. tritici in Denmark as revealed by disease incidence and AFLP markers

TL;DR: Disease observations and amplified fragment length polymorphism (AFLP) markers were used to study recent developments in the Puccinia striiformis f.sp.
Journal ArticleDOI

Conceptual analysis of methods applied to assessment of diversity within and distance between populations with asexual or mixed mode of reproduction

TL;DR: Comparisons of diversity indices for hypothetical examples as well as for actual data sets are presented to demonstrate that inferences from diversity analysis of populations can be driven by techniques of diversity and distance assessments and not only data driven.
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