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Titlebook: Avian Genomics in Ecology and Evolution; From the Lab into th Robert H. S. Kraus Book 2019 Springer Nature Switzerland AG 2019 Bird genomic

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发表于 2025-3-21 18:44:14 | 显示全部楼层 |阅读模式
期刊全称Avian Genomics in Ecology and Evolution
期刊简称From the Lab into th
影响因子2023Robert H. S. Kraus
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发行地址Offers readers essential insights into how avian genomics has revolutionised avian ecology and evolutionary research.Reviews the history and development of genomics technology using the example of the
图书封面Titlebook: Avian Genomics in Ecology and Evolution; From the Lab into th Robert H. S. Kraus Book 2019 Springer Nature Switzerland AG 2019 Bird genomic
影响因子.Birds catch the public imagination like no other group of animals; in addition, birders are perhaps the largest non-professional naturalist community. Genomics and associated bioinformatics have revolutionised daily life in just a few decades. At the same time, this development has facilitated the application of genomics technology to ecological and evolutionary studies, including biodiversity and conservation at all levels. .This book reveals how the exciting toolbox of genomics offers new opportunities in all areas of avian biology. It presents contributions from prominent experts at the intersection of avian biology and genomics, and offers an ideal introduction to the world of genomics for students, biologists and bird enthusiasts alike. The book begins with a historical perspective on how genomic technology was adopted by bird ecology and evolution research groups. This led, as the book explains, to a revised understanding of avian evolution, with excitingconsequences for biodiversity research as a whole. Lastly, these impacts are illustrated using seminal examples and the latest discoveries from avian biology laboratories around the world..                       .
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978-3-030-16479-9Springer Nature Switzerland AG 2019
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GBR: Working Theory and Signal Processing,species exhibiting 2. = 74–86. Several exceptions to this rule include avian clades that have a large degree of chromosomal fusion and fission. In this chapter we describe patterns of avian chromosomal evolution, including likely associations between karyotype evolution and phenotype. We also descri
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,Introduction to 3-Tier SHM Framework, elements, and endogenous viruses. Repetitive regions are notoriously difficult to assemble and often remain inaccessible as gaps within genome assemblies, a situation which may be metaphorically referred to as genomic “dark matter.” Here we review avian repetitive DNA from an integrated avian genom
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https://doi.org/10.1007/978-3-531-91968-3 species concepts. From a theoretical point of view, the species problem has been resolved by equating species with independently evolving lineages (i.e. the evolutionary species concept or the general lineage concept). However, the practical issues with describing and delineating species remain. Th
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https://doi.org/10.1007/978-3-531-91968-3uses on the five fundamental evolutionary processes that influence genetic variation: mutation, genetic drift, gene flow, natural selection, and recombination. In this chapter, we review how genomic data from avian species have advanced our understanding of each of these five processes, including an
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