TÃtulo : |
Biotechnologies for Plant Mutation Breeding : Protocols |
Tipo de documento: |
documento electrónico |
Autores: |
Jankowicz-Cieslak, Joanna, ; Tai, Thomas H., ; Kumlehn, Jochen, ; Till, Bradley J., |
Mención de edición: |
1 ed. |
Editorial: |
[s.l.] : Springer |
Fecha de publicación: |
2017 |
Número de páginas: |
XX, 340 p. 76 ilustraciones, 69 ilustraciones en color. |
ISBN/ISSN/DL: |
978-3-319-45021-6 |
Nota general: |
Libro disponible en la plataforma SpringerLink. Descarga y lectura en formatos PDF, HTML y ePub. Descarga completa o por capítulos. |
Idioma : |
Inglés (eng) |
Palabras clave: |
BiotecnologÃa vegetal Agricultura BiotecnologÃa Genética vegetal BioingenierÃa QuÃmica |
Clasificación: |
631.52 |
Resumen: |
Este libro es de acceso abierto bajo una licencia CC BY-NC 2.5. Este libro ofrece 19 protocolos detallados sobre el uso de mutaciones inducidas en el mejoramiento de cultivos y estudios de genómica funcional, que cubren temas que incluyen mutagénesis quÃmica y fÃsica, métodos de detección fenotÃpica, TILLING tradicional y TILLING mediante secuenciación, doble haploidÃa, edición genómica dirigida y baja Métodos económicos para la caracterización molecular de plantas mutantes que sean adecuados para laboratorios de paÃses en desarrollo. La colección de protocolos equipa a los usuarios con las técnicas que necesitan para iniciar un programa sobre mejoramiento de mutaciones o genómica funcional utilizando enfoques genéticos directos e inversos. Se proporcionan métodos para semillas y cultivos propagados vegetativamente (por ejemplo, plátano, cebada, mandioca, jatropha, arroz) y pueden adaptarse para su uso en otras especies. |
Nota de contenido: |
Mutagenesis for Crop Breeding and Functional Genomics -- Chemical and Physical Mutagenesis in Jatropha curcas -- Chemical Mutagenesis and Chimera Dissolution in Vegetatively Propagated Banana -- Mutation Induction Using Gamma Irradiation and Embryogenic Cell Suspensions in Plantain (Musa spp.) -- Optimization of Somatic Embryogenesis in Cassava -- Creation of a TILLING Population in Barley after Chemical Mutagenesis with Sodium Azide and MNU -- Site-Directed Mutagenesis in Barley by Expression of TALE Nuclease in Embryogenic Pollen -- Doubled Haploidy as a Tool for Chimera Dissolution of TALEN-Induced Mutations in Barley -- Field Evaluation of Mutagenized Rice Material -- Root Phenotyping Pipeline for Cereal Plants -- Breeding New Aromatic Rice with High Iron using Gamma Radiation and Hybridization -- Utilizing NIRS for Qualitative and Non-Destructive Identification of Seed Mutants in Large Populations -- Protocols for Proteome Analyses of Jatropha curcas -- Low-Cost Methods for DNA Extraction and Quantification -- A Protocol for Benchtop Extraction of Single-Strand-Specific Nucleases for Mutation Discovery -- A Protocol for Validation of Doubled Haploid Plants by Enzymatic Mismatch Cleavage -- Bioinformatics-Based Assessment of the Relevance of Candidate Genes for Mutation Discovery -- Mutation Detection by Analysis of DNA Heteroduplexes in TILLING Populations of Diploid Species -- Determining Mutation Density using Restriction Enzyme Sequence Comparative Analysis (RESCAN) -- Next-Generation Sequencing for Targeted Discovery of Rare Mutations in Rice. |
Tipo de medio : |
Computadora |
Summary : |
This book is open access under a CC BY-NC 2.5 license. This book offers 19 detailed protocols on the use of induced mutations in crop breeding and functional genomics studies, which cover topics including chemical and physical mutagenesis, phenotypic screening methods, traditional TILLING and TILLING by sequencing, doubled haploidy, targeted genome editing, and low-cost methods for the molecular characterization of mutant plants that are suitable for laboratories in developing countries. The collection of protocols equips users with the techniques they need in order to start a program on mutation breeding or functional genomics using both forward and reverse-genetic approaches. Methods are provided for seed and vegetatively propagated crops (e.g. banana, barley, cassava, jatropha, rice) and can be adapted for use in other species. |
Enlace de acceso : |
https://link-springer-com.biblioproxy.umanizales.edu.co/referencework/10.1007/97 [...] |
Biotechnologies for Plant Mutation Breeding : Protocols [documento electrónico] / Jankowicz-Cieslak, Joanna, ; Tai, Thomas H., ; Kumlehn, Jochen, ; Till, Bradley J., . - 1 ed. . - [s.l.] : Springer, 2017 . - XX, 340 p. 76 ilustraciones, 69 ilustraciones en color. ISBN : 978-3-319-45021-6 Libro disponible en la plataforma SpringerLink. Descarga y lectura en formatos PDF, HTML y ePub. Descarga completa o por capítulos. Idioma : Inglés ( eng)
Palabras clave: |
BiotecnologÃa vegetal Agricultura BiotecnologÃa Genética vegetal BioingenierÃa QuÃmica |
Clasificación: |
631.52 |
Resumen: |
Este libro es de acceso abierto bajo una licencia CC BY-NC 2.5. Este libro ofrece 19 protocolos detallados sobre el uso de mutaciones inducidas en el mejoramiento de cultivos y estudios de genómica funcional, que cubren temas que incluyen mutagénesis quÃmica y fÃsica, métodos de detección fenotÃpica, TILLING tradicional y TILLING mediante secuenciación, doble haploidÃa, edición genómica dirigida y baja Métodos económicos para la caracterización molecular de plantas mutantes que sean adecuados para laboratorios de paÃses en desarrollo. La colección de protocolos equipa a los usuarios con las técnicas que necesitan para iniciar un programa sobre mejoramiento de mutaciones o genómica funcional utilizando enfoques genéticos directos e inversos. Se proporcionan métodos para semillas y cultivos propagados vegetativamente (por ejemplo, plátano, cebada, mandioca, jatropha, arroz) y pueden adaptarse para su uso en otras especies. |
Nota de contenido: |
Mutagenesis for Crop Breeding and Functional Genomics -- Chemical and Physical Mutagenesis in Jatropha curcas -- Chemical Mutagenesis and Chimera Dissolution in Vegetatively Propagated Banana -- Mutation Induction Using Gamma Irradiation and Embryogenic Cell Suspensions in Plantain (Musa spp.) -- Optimization of Somatic Embryogenesis in Cassava -- Creation of a TILLING Population in Barley after Chemical Mutagenesis with Sodium Azide and MNU -- Site-Directed Mutagenesis in Barley by Expression of TALE Nuclease in Embryogenic Pollen -- Doubled Haploidy as a Tool for Chimera Dissolution of TALEN-Induced Mutations in Barley -- Field Evaluation of Mutagenized Rice Material -- Root Phenotyping Pipeline for Cereal Plants -- Breeding New Aromatic Rice with High Iron using Gamma Radiation and Hybridization -- Utilizing NIRS for Qualitative and Non-Destructive Identification of Seed Mutants in Large Populations -- Protocols for Proteome Analyses of Jatropha curcas -- Low-Cost Methods for DNA Extraction and Quantification -- A Protocol for Benchtop Extraction of Single-Strand-Specific Nucleases for Mutation Discovery -- A Protocol for Validation of Doubled Haploid Plants by Enzymatic Mismatch Cleavage -- Bioinformatics-Based Assessment of the Relevance of Candidate Genes for Mutation Discovery -- Mutation Detection by Analysis of DNA Heteroduplexes in TILLING Populations of Diploid Species -- Determining Mutation Density using Restriction Enzyme Sequence Comparative Analysis (RESCAN) -- Next-Generation Sequencing for Targeted Discovery of Rare Mutations in Rice. |
Tipo de medio : |
Computadora |
Summary : |
This book is open access under a CC BY-NC 2.5 license. This book offers 19 detailed protocols on the use of induced mutations in crop breeding and functional genomics studies, which cover topics including chemical and physical mutagenesis, phenotypic screening methods, traditional TILLING and TILLING by sequencing, doubled haploidy, targeted genome editing, and low-cost methods for the molecular characterization of mutant plants that are suitable for laboratories in developing countries. The collection of protocols equips users with the techniques they need in order to start a program on mutation breeding or functional genomics using both forward and reverse-genetic approaches. Methods are provided for seed and vegetatively propagated crops (e.g. banana, barley, cassava, jatropha, rice) and can be adapted for use in other species. |
Enlace de acceso : |
https://link-springer-com.biblioproxy.umanizales.edu.co/referencework/10.1007/97 [...] |
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