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Full-Text Articles in Genetics and Genomics
Dna Barcoding Of The High-Altitude Artemisia And Nepeta Species, Vyacheslav Dushenkov, Csanad Gurdon, Shukhratdzhon Satorov
Dna Barcoding Of The High-Altitude Artemisia And Nepeta Species, Vyacheslav Dushenkov, Csanad Gurdon, Shukhratdzhon Satorov
Publications and Research
DNA barcoding was performed for four medicinal plant species from the mountain region of Tajikistan. The nucleotide sequences for Artemisia sieberi, Artemisia scoparia, Artemisia vulgaris, and Nepeta glutinosa were deposited into the GenBank at the National Center for Biotechnology Information.
A First Linkage Map And Downy Mildew Resistance Qtl Discovery For Sweet Basil (Ocimum Basilicum) Facilitated By Double Digestion Restriction Site Associated Dna Sequencing (Ddradseq), Robert M. Pyne, Josh Honig, Jennifer Vaiciunas, Adolfina R. Koroch, Christian Wyenandt, Stacy Bonos, James Simon
A First Linkage Map And Downy Mildew Resistance Qtl Discovery For Sweet Basil (Ocimum Basilicum) Facilitated By Double Digestion Restriction Site Associated Dna Sequencing (Ddradseq), Robert M. Pyne, Josh Honig, Jennifer Vaiciunas, Adolfina R. Koroch, Christian Wyenandt, Stacy Bonos, James Simon
Publications and Research
Limited understanding of sweet basil (Ocimum basilicum L.) genetics and genome structure has reduced efficiency of breeding strategies. This is evidenced by the rapid, worldwide dissemination of basil downy mildew (Peronospora belbahrii) in the absence of resistant cultivars. In an effort to improve available genetic resources, expressed sequence tag simple sequence repeat (EST-SSR) and single nucleotide polymorphism (SNP) markers were developed and used to genotype the MRI x SB22 F2 mapping population, which segregates for response to downy mildew. SNP markers were generated from genomic sequences derived from double digestion restriction site associated DNA sequencing (ddRADseq). Disomic segregation was observed …