massarray iplex genotyping platform (Sequenom)
86
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Sequenom
massarray iplex genotyping platform
Massarray Iplex Genotyping Platform, supplied by Sequenom, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/massarray+iplex+genotyping/massarray+platform/pmc12805737-47-13-12
Average 86 stars, based on 1 article reviews
Massarray Iplex Genotyping Platform, supplied by Sequenom, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/massarray+iplex+genotyping/massarray+platform/pmc12805737-47-13-12
Average 86 stars, based on 1 article reviews
massarray iplex genotyping platform - by Bioz Stars,
2026-09
86/100 stars
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Biomarker Discovery:Article Title: Next-generation sequencing and genome evolution in allopolyploids. Article Snippet: 372 American Journal of Botany 99(2): 372–382, 2012; http://www.amjbot.org/ © 2012 Botanical Society of America The associated processes of hybridization and whole-genome duplication (WGD) to form new allopolyploid species are common in plant evolution ( Ramsey and Schemske, 1998 ; Soltis and Soltis, 2009 ).. The merging of two divergent genomes, and the presence of these parental genomes in duplicate in the nucleus, can set the stage for dynamic changes to the genome, transcriptome, and phenotype of the new polyploid species ( Soltis and Soltis, 1995 , 2009 ; Ramsey and Schemske, 2002 ; Wendel and Doyle, 2004 ; Adams and Wendel, 2005 ; Doyle et al., 2008 ; Hegarty and Hiscock, 2008 ; Leitch and Leitch, 2008 ).. Despite enormous research progress, many basic questions concerning the genetic consequences of polyploid evolution remain unanswered ( Doyle et al., 2008 ; D. Soltis et al., 2010 ). Diagnostic Assay:Article Title: Next-generation sequencing and genome evolution in allopolyploids. Article Snippet: 372 American Journal of Botany 99(2): 372–382, 2012; http://www.amjbot.org/ © 2012 Botanical Society of America The associated processes of hybridization and whole-genome duplication (WGD) to form new allopolyploid species are common in plant evolution ( Ramsey and Schemske, 1998 ; Soltis and Soltis, 2009 ).. The merging of two divergent genomes, and the presence of these parental genomes in duplicate in the nucleus, can set the stage for dynamic changes to the genome, transcriptome, and phenotype of the new polyploid species ( Soltis and Soltis, 1995 , 2009 ; Ramsey and Schemske, 2002 ; Wendel and Doyle, 2004 ; Adams and Wendel, 2005 ; Doyle et al., 2008 ; Hegarty and Hiscock, 2008 ; Leitch and Leitch, 2008 ).. Despite enormous research progress, many basic questions concerning the genetic consequences of polyploid evolution remain unanswered ( Doyle et al., 2008 ; D. Soltis et al., 2010 ). Expressing:Article Title: The potential of genomics in plant systematics Article Snippet: Next-generation sequencing (NGS) has revolutionized molecular systematics as well as population and conservation genetics.. It is now possible to obtain enormous amounts of gene sequence data from any species in a short time at low cost.. More technological advances are on the horizon, ensuring that this trend will continue throughout the coming decade. other:Article Title: Functional validation of GPIHBP1 and identification of a functional mutation in GPIHBP1 for milk fat traits in dairy cattle Article Snippet: |
