Comparison of whole-genome amplifications for microsatellite genotyping of Rotylenchulus reniformis
暂无分享,去创建一个
[1] S. Stoeckel,et al. Genetic signature of amphimixis allows for the detection and fine scale localization of sexual reproduction events in a mainly parthenogenetic nematode , 2010, Molecular ecology.
[2] B. Scheffler,et al. Microsatellites reveal genetic diversity in Rotylenchulus reniformis populations. , 2009, Journal of nematology.
[3] B. Dujon,et al. Comparative Genomics and Molecular Dynamics of DNA Repeats in Eukaryotes , 2008, Microbiology and Molecular Biology Reviews.
[4] E. A. Souza,et al. Pathogenic Variability of Isolates of Pseudocercospora griseola, the Cause of Common Bean Angular Leaf Spot, and its Implications for Resistance Breeding , 2008 .
[5] Samantha N. McNulty,et al. Brugia malayi: whole genome amplification for genomic characterization of filarial parasites. , 2008, Experimental parasitology.
[6] D. Mugniéry,et al. Origin and genetic diversity of Western European populations of the potato cyst nematode (Globodera pallida) inferred from mitochondrial sequences and microsatellite loci , 2008, Molecular ecology.
[7] A. Reyes,et al. Characterization of the (GAAA) microsatellite region in the plant parasitic nematode Meloidogyne artiellia. , 2002, Gene.
[8] A. F. Robinson,et al. Review: Rotylenchulus Species: Identification, Distribution, Host Ranges, and Crop Plant Resistance , 1997 .
[9] J. Eisenback,et al. Description of the Kona Coffee Root-knot Nematode, Meloidogyne konaensis n. sp. , 1994, Journal of nematology.
[10] M. Eberhard,et al. Variable infectivity of third-stage larvae of Brugia malayi , 1985, Journal of Helminthology.
[11] L. Carta,et al. Multiple displacement amplification (MDA) of total genomic DNA from Meloidogyne spp. and comparison to crude DNA extracts in PCR of ITS1, 28S D2-D3 rDNA and Hsp90 , 2005 .
[12] Andreas Graner,et al. Genic microsatellite markers in plants: features and applications. , 2005, Trends in biotechnology.