Method of developing polymorphic EST-SSR marker by utilizing complete genome and EST data
A genome-wide, polymorphic technology, applied in the field of molecular biology, can solve the problems of insufficient representation, mis-elimination of polymorphic SSR markers, time-consuming and labor-intensive problems, and achieve the goal of improving development efficiency, high genetics and breeding value Effect
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[0022] Example: Development and Validation of Potato EST-SSR Markers
[0023] Development of EST-SSR markers using genome-wide and EST data
[0024] 1.1 Obtain potato genome sequence and EST data:
[0025] The potato genome sequence data (PGSC_DM_v3_2.1.11_pseudomolecules) and corresponding gene annotation information (PGSC_DM_v3.4) were downloaded from the public database (http: / / solanaceae.plantbiology.msu.edu / ). Download potato EST data from NCBI (http: / / www.ncbi.nlm.nih.gov / ), a total of more than 260,000 (as of April 2013).
[0026] Exon and Intron sequences were analyzed using the genome annotation information, and the first 2000 bp of the gene TSS transcription start site was selected as the promoter sequence.
[0027] 1.2 Search and analysis of SSR loci in potato genome:
[0028] Use the MISA program (http: / / pgrc.ipk-gatersleben.de / misa / ) to scan the 12 chromosomal DNA sequences of the whole potato genome, search and analyze the SSR sites contained in the genome seq...
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