Sentence examples for markers from genomic from inspiring English sources

Exact(14)

To locate regions of the P. c. chabaudi genome affected by the SSPI selection, we generated 33P-radiolabelled AFLP markers from genomic DNA of the CB- and AJ-immune selected cross progeny, the non-immune selected cross progeny and the two parental cloned strains (CB and AJ) by the method of Grech et al., [32].

We sequenced three mitochondrial (partial 12S and 16S rDNA and COIII) and two nuclear (18S and partial 28S rDNA) markers from genomic DNA using primers published previously (12S: [26]; 16S, COIII: [27]; 18S: [27]; 28S: [27]).

In this case, it would be imperative selecting markers from genomic regions known to be diploid.

Restriction Fragment Length Polymorphism (RFLP) markers from genomic libraries have been applied to oil palm linkage mapping [ 10].

In the present work we describe the development of SSR markers from genomic DNA for fingerprinting lettuce cultivars.

However it is expensive, labor-intensive and time-consuming to develop SSR markers from genomic DNA libraries [ 12].

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Similar(46)

We reported the development of 19 genomic SSR markers from enriched genomic SSR libraries in P. sibirica, providing valuable tools for genetic studies in P. sibirica and related species, such as population genetics, germplasm identification, and marker-assisted selection.

These EST-SSR primers were named as DPGxxxx, where DPG was referred to date palm gene-based markers and to differentiate from those SSR markers developed from genomic sequences in date palm, such as those developed by [ 27- 29].

Shimada, T. Shikano and J. Merilä, unpublished] coupled with 101 markers derived from genomic libraries (genomic SSRs) and 87 markers derived from ESTs (EST-derived SSRs; Additional files 1 and 2) [ 72- 76].

In this study, markers derived from genomic DNA were more polymorphic than markers developed from ESTs; the percentages of genomic SSRs displaying polymorphisms were 23.6%, 20.9%, and 11.4% in these three populations, respectively, whereas only 4.3%, 2.3% and 0.3% of EST-SSRs showed polymorphism in the corresponding populations.

In this study, we present AncestrySNPminer, the first web-based bioinformatics tool specifically designed to retrieve Ancestry Informative Markers (AIMs) from genomic data sets and link these informative markers to genes and ontological annotation classes.

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