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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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發(fā)表于 2025-3-21 19:51:36 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Comparative and Evolutionary Genomics of Angiosperm Trees
編輯Andrew Groover,Quentin Cronk
視頻videohttp://file.papertrans.cn/232/231015/231015.mp4
概述Offers the first comprehensive resource for comparative genomics in angiosperm trees.Includes contributions from world-renowned scholars.Covers a wide range of research, from systematics to molecular
叢書名稱Plant Genetics and Genomics: Crops and Models
圖書封面Titlebook: Comparative and Evolutionary Genomics of Angiosperm Trees;  Andrew Groover,Quentin Cronk Book 2017 Springer International Publishing AG 201
描述.Marking the change in focus of tree genomics from single species to comparative approaches, this book covers biological, genomic, and evolutionary aspects of angiosperm trees that provide information and perspectives to support researchers broadening the focus of their research. The diversity of angiosperm trees in morphology, anatomy, physiology and biochemistry has been described and cataloged by various scientific disciplines, but the molecular, genetic, and evolutionary mechanisms underlying this diversity have only recently been explored. Excitingly, advances in genomic and sequencing technologies are ushering a new era of research broadly termed comparative genomics, which simultaneously exploits and describes the evolutionary origins and genetic regulation of traits of interest. Within tree genomics, this research is already underway, as the number of complete genome sequences available for angiosperm trees is increasing at an impressive pace and the number of species for which RNAseq data are available is rapidly expanding. Because they are extensively covered by other literature and are rapidly changing, technical and computational approaches—such as the latest sequencing
出版日期Book 2017
關鍵詞Angiosperm trees; Comparative genomics; Evolutionary genomics; Forest biology; Forest trees; Functional g
版次1
doihttps://doi.org/10.1007/978-3-319-49329-9
isbn_softcover978-3-319-84134-2
isbn_ebook978-3-319-49329-9Series ISSN 2363-9601 Series E-ISSN 2363-961X
issn_series 2363-9601
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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, as a Model Tree,s in understanding such processes in model organisms can, in many cases, then be used to inform the biology of other organisms closely or distantly related, thereby illuminating the nature of conserved processes as well as taxon-specific variations. Many aspects tree biology are difficult or impossi
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Emerging Genomics of Angiosperm Trees,nd eucalyptus reviewed in previous chapters of this book. Whilst the number of published genomes of angiosperm forest trees lags behind that of angiosperm trees grown commercially for fruit or nuts, many new projects are underway. This is aided by the ever-decreasing cost of DNA sequencing technolog
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Structural Genomics of Angiosperm Trees: Genome Duplications, Ploidy, and Repeat Sequences,ole genome duplication events often result in immediate speciation, contributing to the spectacular radiation of the angiosperm lineage, while also creating two copies of each gene, which subsequently diverge, further fuelling species evolution. In addition to the pronounced role that polyploidy pla
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Evolutionary Histories of Gene Families in Angiosperm Trees,oteins they encode. The vast majority of gene families found in angiosperm trees have existed before the origin of seed plants, while the lineage-specific adaptations of trees have depended on highly dynamic but selective patterns of gene family gain and loss. The mechanisms governing the diversific
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發(fā)表于 2025-3-22 18:02:32 | 只看該作者
Breeding Systems, Mating Systems, and Genomics of Gender Determination in Angiosperm Trees,ifferences in adaptive capacity and genomic structure. Decades of careful investigations have revealed that although most tree species are hermaphroditic (perfect flowers), dioecy (unisexual individuals) is more common than throughout the angiosperms, and self-fertilization is exceedingly rare. Thes
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The Genomics of Wood Formation in Angiosperm Trees,elevant to angiosperm forest trees. Wood formation is an excellent subject for comparative genomics, as it is an ancestral trait for angiosperms and has undergone significant modification in different angiosperm lineages. This chapter discusses some of the traits associated with wood formation, what
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