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Animal Behaviour: Evolution and Mechanisms, Nils Anthes; Peter M. Kappeler; Ralph Bergm?ller;


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Автор: Nils Anthes; Peter M. Kappeler; Ralph Bergm?ller;
Название:  Animal Behaviour: Evolution and Mechanisms
ISBN: 9783662502358
Издательство: Springer
Классификация:





ISBN-10: 3662502356
Обложка/Формат: Paperback
Страницы: 707
Вес: 1.01 кг.
Дата издания: 23.08.2016
Язык: English
Издание: Softcover reprint of
Иллюстрации: Xxi, 707 p.; xxi, 707 p.
Размер: 156 x 234 x 40
Читательская аудитория: General (us: trade)
Основная тема: Life Sciences
Ссылка на Издательство: Link
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Поставляется из: Германии
Описание: This up-to-date review examines key areas of animal behaviour, including communication, cognition, conflict, cooperation, sexual selection and behavioural variation. Various tests are covered, including recent empirical examples.
Дополнительное описание: Communication and cognition.- Visual communication: evolution, ecology, and functional mechanisms.- Vocal communication in social groups.- Kin recognition: an overview of conceptual issues, mechanisms and evolutionary theory.- Honeybee cognition.- Individ



Ecology, Evolution and Behaviour of Wild Cattle

Автор: Melletti
Название: Ecology, Evolution and Behaviour of Wild Cattle
ISBN: 110703664X ISBN-13(EAN): 9781107036642
Издательство: Cambridge Academ
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Цена: 24235.00 р.
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Описание: A beautifully illustrated reference work on the biology, ecology, conservation status and management of all thirteen species of wild cattle and buffalo. This book will be a valuable resource for students, researchers, and professionals in animal behaviour, behavioural ecology, evolutionary biology and conservation biology.

Molecular Mechanisms of Microbial Evolution

Автор: Pabulo H. Rampelotto
Название: Molecular Mechanisms of Microbial Evolution
ISBN: 3319690779 ISBN-13(EAN): 9783319690773
Издательство: Springer
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Цена: 30745.00 р.
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Описание:

One of the most profound paradigms that have transformed our understanding about life over the last decades was the acknowledgement that microorganisms play a central role in shaping the past and present environments on Earth and the nature of all life forms. Each organism is the product of its history and all extant life traces back to common ancestors, which were microorganisms. Nowadays, microorganisms represent the vast majority of biodiversity on Earth and have survived nearly 4 billion years of evolutionary change. Microbial evolution occurred and continues to take place in a great variety of environmental conditions. However, we still know little about the processes of evolution as applied to microorganisms and microbial populations. In addition, the molecular mechanisms by which microorganisms communicate/interact with each other and with multicellular organisms remains poorly understood. Such patterns of microbe-host interaction are essential to understand the evolution of microbial symbiosis and pathogenesis.
Recent advances in DNA sequencing, high-throughput technologies, and genetic manipulation systems have enabled studies that directly characterize the molecular and genomic bases of evolution, producing data that are making us change our view of the microbial world. The notion that mutations in the coding regions of genomes are, in combination with selective forces, the main contributors to biodiversity needs to be re-examined as evidence accumulates, indicating that many non-coding regions that contain regulatory signals show a high rate of variation even among closely related organisms. Comparative analyses of an increasing number of closely related microbial genomes have yielded exciting insight into the sources of microbial genome variability with respect to gene content, gene order and evolution of genes with unknown functions. Furthermore, laboratory studies (i.e. experimental microbial evolution) are providing fundamental biological insight through direct observation of the evolution process. They not only enable testing evolutionary theory and principles, but also have applications to metabolic engineering and human health.
Overall, these studies ranging from viruses to Bacteria to microbial Eukaryotes are illuminating the mechanisms of evolution at a resolution that Darwin, Delbruck and Dobzhansky could barely have imagined. Consequently, it is timely to review and highlight the progress so far as well as discuss what remains unknown and requires future research. This book explores the current state of knowledge on the molecular mechanisms of microbial evolution with a collection of papers written by authors who are leading experts in the field.

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