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Bryophyte Biology provides an extensive overview of the hornworts, liverworts, and mosses; diverse groups of land plants that occupy a great variety of habitats throughout the world. This edition covers essential aspects of bryophyte biology, from morphology, physiological ecology and conservation, to speciation, and genomics. Revised classifications incorporate contributions from recent phylogenetic studies. Six new chapters complement fully updated chapters from the original book to provide a completely up-to-date resource. New chapters focus on the contributions of Physcomitrella to plant…mehr

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Produktbeschreibung
Bryophyte Biology provides an extensive overview of the hornworts, liverworts, and mosses; diverse groups of land plants that occupy a great variety of habitats throughout the world. This edition covers essential aspects of bryophyte biology, from morphology, physiological ecology and conservation, to speciation, and genomics. Revised classifications incorporate contributions from recent phylogenetic studies. Six new chapters complement fully updated chapters from the original book to provide a completely up-to-date resource. New chapters focus on the contributions of Physcomitrella to plant genomic research, population ecology of bryophytes, mechanisms of drought tolerance, a phylogenomic perspective on land plant evolution, and problems and progress of bryophyte speciation and conservation. Written by leaders in the field, this book offers an authoritative treatment of bryophyte biology, with rich citation of the current literature, suitable for advanced students and researchers.

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Autorenporträt
Bernard Goffinet completed his Ph.D. at the University of Alberta, Canada. As a research associate of Dr A. J. Shaw he pursued his interest in the phylogeny of mosses, with a special focus on the evolution of entomophily in the dung mosses. He joined the University of Connecticut in 1999, where he is an associate professor in Ecology and Evolutionary Biology. He has co-authored nearly 70 publications. His current research spans choroplast genome evolution in liverworts, the phylogenetic history of the new model taxon, Physcomitrella patens, as well as the evolution of multisymbiosis in lichen-forming fungi.