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Titlebook: Comparative and Evolutionary Genomics of Angiosperm Trees; Andrew Groover,Quentin Cronk Book 2017 Springer International Publishing AG 201

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Landscape Genomics of Angiosperm Trees: From Historic Roots to Discovering New Branches of Adaptivetion have shaped populations. For decades, angiosperm trees have served as outstanding model systems for landscape-scale genetic studies due to their extensive geographic ranges, large effective population sizes, abundant genetic diversity, and high gene flow. These characteristics were recognized e
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Pathogenic and Mutualistic Symbiotic Interactions in Angiosperm Trees,ange across a spectrum from parasitic to beneficial. In all cases, the interaction between plant and microbes has necessitated the development of a properly balanced plant immune system. We investigate here how the advent of the genomics era has impacted our understanding of plant:microbe symbioses
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Space–Time Design of the Public City is currently known about the genes and mechanisms regulating these traits, and how comparative evolutionary genomic studies can be undertaken to provide more comprehensive views of the evolution and development of wood formation in angiosperms.
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Progress in Mathematical Physicsojects not yet in the public domain or with non-genomic data, and list various online resources where data and information can be accessed. We discuss potential future steps in improving genome assemblies, and the uses of such information in fields such as genomic selection to assist tree breeding.
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Dietrich Henckel,Susanne Thomaierc characteristics and location of sex determination regions and which sex is heterogametic (XY vs. ZW). This short review emphasizes that investigations of factors influencing genetic transmission are likely to provide answers to fundamental questions regarding genomic and phenotypic evolution in angiosperm trees.
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Breeding Systems, Mating Systems, and Genomics of Gender Determination in Angiosperm Trees,c characteristics and location of sex determination regions and which sex is heterogametic (XY vs. ZW). This short review emphasizes that investigations of factors influencing genetic transmission are likely to provide answers to fundamental questions regarding genomic and phenotypic evolution in angiosperm trees.
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