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Titlebook: Genetics and Genomics of the Brassicaceae; Renate Schmidt,Ian Bancroft Book 2011 Springer Science+Business Media, LLC 2011 Genomics

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Renate Schmidt,Ian BancroftThe Genetics and Genomics of the Brassicaceae provides a review of this important family (commonly termed the mustard family, or Cruciferae) - Expert perspectives on Brassicaceae species as models for
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Phylogeny, Genome, and Karyotype Evolution of Crucifers (Brassicaceae), crop plants (e.g. . species), ornamentals as well as model organisms in the plant sciences (e.g. .). In recent years, the wealth of . and . genomic resources along with newly established tools and techniques fostered the unprecedented progress in phylogenetics and genomics of crucifers. Multigene p
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The Non-coding Landscape of the Genome of ,,e 27,000 genes and genome-wide functional studies, such as transcriptional characteristics, have revolutionized our functional and molecular understanding of a plants lifestyle. Classical target of such studies is the genic- and protein-coding space of the genome. However, the non-genic genomic spac
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Natural Variation in , ,tic and molecular bases of adaptation. The study of natural genetic variation in this model plant has rapidly developed in the past 10 years, leading to the identification of hundreds of loci that are responsible for the variation of a plethora of traits and more than 30 of the underlying genes. Thi
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Chasing Ghosts: Comparative Mapping in the Brassicaceae, chromosomal rearrangements resulting from speciation and the ability to transfer information and resources between species. A significant focus of comparative mapping in the Brassicaceae has been within the agronomically important species of the . genera and between the . crops and their well-chara
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Comparative Genome Analysis at the Sequence Level in the Brassicaceae, their position in the economic hierarchy of perceived importance. Thus, with the completion of the . genome in the year 2000, the limited sequencing efforts undertaken in the . crops and other species of the Brassicaceae have been largely restricted either to survey sequencing of various insert siz
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Structural and Functional Evolution of Resynthesized Polyploids, to be learned regarding the role it has played in phenotypic evolution and speciation. The . genus has polyploidy at multiple levels: the genomes of diploid species show evidence of repeated rounds of ancient polyploidization, and the agronomically important diploid species (., ., and .) may hybrid
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