Single-Pollen Genotyping [recurso electrónico] / edited by Yuji Isagi, Yoshihisa Suyama.

Por: Isagi, Yuji [editor.]Colaborador(es): Suyama, Yoshihisa [editor.] | SpringerLink (Online service)Tipo de material: TextoTextoSeries Ecological Research MonographsEditor: Tokyo : Springer Japan, 2011Descripción: XI, 127 p. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9784431539018Tema(s): Life sciences | Plant Ecology | Evolution (Biology) | Botany | Life Sciences | Plant Ecology | Plant Sciences | Evolutionary BiologyFormatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD: 581.7 Clasificación LoC:QK900-989Recursos en línea: Libro electrónicoTexto
Contenidos:
1 Signifi cance of Single-Pollen Genotyping in Ecological Research -- 2 Procedure for Single-Pollen Genotyping -- 3 Pollination Effi ciencies of Insects Visiting Magnolia obovata, as Determined by Single-Pollen Genotyping -- 4 Difference in Pollen Donor Composition During the Early Phases of Reproduction as Revealed by DNA Analysis of Pollen Grains and Seeds in the Monoecious Tree Castanea crenata -- 5 Expanded Home Range of Pollinator Birds Facilitates Greater Pollen Flow of Camellia japonica in a Forest Heavily Damaged by Volcanic Activity -- 6 Can Tiny Thrips Provide Suffi cient Pollination Service During a General Flowering Period in Tropical Rainforest?- 7 Alien Dandelions Displace a Native Related Species Through Interspecifi c Pollen Transfer -- 8 Single-Pollen Genotyping of Holocene Lake Sediments -- 9 Potential Application of Pollen Genotyping for Evolutionary Genetic and Genomic Studies: Linkage/Recombination Analysis and Haplotype Sequencing -- Index.
En: Springer eBooksResumen: Pollination is one of the most important processes in plant reproduction. It directly influences reproductive success and fitness and the genetic structure of the plant population. Methods exist to infer the pattern and distance of pollen dispersal, but direct observation of the movements of individual pollen grains during pollination is not feasible owing to their small size. Single-pollen genotyping is a novel technique for genotyping a single pollen grain. In this book, the principles, the experimental protocol, and several applications of this method in studies of plant ecology, reproductive biology, and evolutionary genetics have been described. More specifically, the information is useful for the analysis of linkage disequilibrium, intraspecific genetic variation, chromosome mapping, and the origins of polyploidy. It is also essential for achieving sustainable and optimal crop yield and is vital to agriculture and forestry. Written by pioneer researchers, the book provides novel research approaches that are proving useful in a growing number of fields. This volume is intended to encourage new and continued applications of single-pollen genotyping among many disciplines in the future.
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Libro Electrónico Biblioteca Electrónica
Colección de Libros Electrónicos QK900 -989 (Browse shelf(Abre debajo)) 1 No para préstamo 377212-2001

1 Signifi cance of Single-Pollen Genotyping in Ecological Research -- 2 Procedure for Single-Pollen Genotyping -- 3 Pollination Effi ciencies of Insects Visiting Magnolia obovata, as Determined by Single-Pollen Genotyping -- 4 Difference in Pollen Donor Composition During the Early Phases of Reproduction as Revealed by DNA Analysis of Pollen Grains and Seeds in the Monoecious Tree Castanea crenata -- 5 Expanded Home Range of Pollinator Birds Facilitates Greater Pollen Flow of Camellia japonica in a Forest Heavily Damaged by Volcanic Activity -- 6 Can Tiny Thrips Provide Suffi cient Pollination Service During a General Flowering Period in Tropical Rainforest?- 7 Alien Dandelions Displace a Native Related Species Through Interspecifi c Pollen Transfer -- 8 Single-Pollen Genotyping of Holocene Lake Sediments -- 9 Potential Application of Pollen Genotyping for Evolutionary Genetic and Genomic Studies: Linkage/Recombination Analysis and Haplotype Sequencing -- Index.

Pollination is one of the most important processes in plant reproduction. It directly influences reproductive success and fitness and the genetic structure of the plant population. Methods exist to infer the pattern and distance of pollen dispersal, but direct observation of the movements of individual pollen grains during pollination is not feasible owing to their small size. Single-pollen genotyping is a novel technique for genotyping a single pollen grain. In this book, the principles, the experimental protocol, and several applications of this method in studies of plant ecology, reproductive biology, and evolutionary genetics have been described. More specifically, the information is useful for the analysis of linkage disequilibrium, intraspecific genetic variation, chromosome mapping, and the origins of polyploidy. It is also essential for achieving sustainable and optimal crop yield and is vital to agriculture and forestry. Written by pioneer researchers, the book provides novel research approaches that are proving useful in a growing number of fields. This volume is intended to encourage new and continued applications of single-pollen genotyping among many disciplines in the future.

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