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      • KCI등재

        SNP discovery and applications in Brassica napus

        Alice Hayward,Annaliese S. Mason,Jessica Dalton-Morgan,Manuel Zander,David Edwards,Jacqueline Batley 한국식물생명공학회 2012 식물생명공학회지 Vol.39 No.1

        This review summarises the biology, discovery and applications of single nucleotide polymorphisms in complex polyploid crop genomes, with a focus on the important oilseed crop Brassica napus. Brassica napus is an allotetraploid species, and along with soybean and oil palm is one of the top three most important oilseed crops globally. Current efforts are well underway to de novo assemble the B. napus genome, following the release of the related B. rapa ‘A’ genome last year. The next generation of genome sequencing, SNP discovery and analysis pipelines, and the associated challenges for this work in B. napus, will be addressed. The biological applications of SNP technology for both evolutionary and molecular geneticists as well as plant breeders and industry are far-reaching, and will be invaluable to our understanding and advancement of the Brassica crop species.

      • KCI등재

        SNP discovery and applications in Brassica napus

        Hayward, Alice,Mason, Annaliese S.,Dalton-Morgan, Jessica,Zander, Manuel,Edwards, David,Batley, Jacqueline The Korean Society of Plant Biotechnology 2012 식물생명공학회지 Vol.39 No.1

        This review summarises the biology, discovery and applications of single nucleotide polymorphisms in complex polyploid crop genomes, with a focus on the important oilseed crop $Brassica$ $napus$. $Brassica$ $napus$ is an allotetraploid species, and along with soybean and oil palm is one of the top three most important oilseed crops globally. Current efforts are well underway to $de$ $novo$ assemble the $B.$ $napus$ genome, following the release of the related $B.$ $rapa$ 'A' genome last year. The next generation of genome sequencing, SNP discovery and analysis pipelines, and the associated challenges for this work in $B.$ $napus$, will be addressed. The biological applications of SNP technology for both evolutionary and molecular geneticists as well as plant breeders and industry are far-reaching, and will be invaluable to our understanding and advancement of the $Brassica$ crop species.

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