Identification of Genomic Regions Controlling Maturity in Maize (Zea Mays L.)

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ISBN 13 :
Total Pages : 276 pages
Book Rating : 4.:/5 (319 download)

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Book Synopsis Identification of Genomic Regions Controlling Maturity in Maize (Zea Mays L.) by : Tae San Kim

Download or read book Identification of Genomic Regions Controlling Maturity in Maize (Zea Mays L.) written by Tae San Kim and published by . This book was released on 1992 with total page 276 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Investigation of Genomic Regions Controlling Maturity in Maize (Zea Mays L.) Using an Advanced Backcross-derived Population

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ISBN 13 :
Total Pages : 208 pages
Book Rating : 4.:/5 (633 download)

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Book Synopsis Investigation of Genomic Regions Controlling Maturity in Maize (Zea Mays L.) Using an Advanced Backcross-derived Population by : John E. McLaughlin

Download or read book Investigation of Genomic Regions Controlling Maturity in Maize (Zea Mays L.) Using an Advanced Backcross-derived Population written by John E. McLaughlin and published by . This book was released on 1997 with total page 208 pages. Available in PDF, EPUB and Kindle. Book excerpt:

DNA Marker-Assisted Identification of Genomic Regions Controlling Anthesissilking Interval and Linear and Non-linear Components of Genotypic Variance in Maize (Zea Mays L.)

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (974 download)

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Book Synopsis DNA Marker-Assisted Identification of Genomic Regions Controlling Anthesissilking Interval and Linear and Non-linear Components of Genotypic Variance in Maize (Zea Mays L.) by : Neelavva Konanavar

Download or read book DNA Marker-Assisted Identification of Genomic Regions Controlling Anthesissilking Interval and Linear and Non-linear Components of Genotypic Variance in Maize (Zea Mays L.) written by Neelavva Konanavar and published by . This book was released on 2016 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Identification and Fine-mapping Genomic Regions Associated with Plant Regeneration Reponse in Maize (Zea Mays L.)

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ISBN 13 :
Total Pages : 153 pages
Book Rating : 4.:/5 (639 download)

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Book Synopsis Identification and Fine-mapping Genomic Regions Associated with Plant Regeneration Reponse in Maize (Zea Mays L.) by : Jason Patrick Cook

Download or read book Identification and Fine-mapping Genomic Regions Associated with Plant Regeneration Reponse in Maize (Zea Mays L.) written by Jason Patrick Cook and published by . This book was released on 2009 with total page 153 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (139 download)

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Book Synopsis Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems by : Frank Lloyd McFarland

Download or read book Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems written by Frank Lloyd McFarland and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Maize is one of the most economically important crops in the US and globally for food, feed, and biofuel production. Efficient production of regenerable, embryogenic tissue cultures of maize is necessary for both basic biological research and applied biotechnological approaches to maize genetic improvement. Efficient generation of regenerable cultures in maize is highly genotype-dependent and, historically, researchers in academia and industry have relied extensively upon a restrictively small number of genotypes amenable to conventional tissue culture. To identify the genetic basis for genotypic differences in culture response, a mapping-based approach was utilized. The tissue culture response trait from the regenerable maize inbred A188 was backcrossed into the recalcitrant inbred B73. An A188 genomic introgression spanning 3 Mb on chromosome 3 was strongly associated with regenerable tissue culture response. Three candidate genes were selected in the region based on their expression in A188 immature embryos and functional annotations of genes in the region. A screen of each candidate gene expressed under constitutive promoters identified a single candidate, Wox2a, which was found to induce somatic embryogenesis and embryogenic callus in B73.A complementary approach to mapping the A188 culture response trait was undertaken to map the genotype-dependent response of diverse maize lines to Wuschel2/Baby boom (Wus/Bbm)-mediated genetic transformation. Though Wus/Bbm-mediated transformation reduced recalcitrance of many lines through co-transformation with developmental regulators, strong trends of genotype-dependence were still observed. Ten diverse maize lines were screened to identify lines highly amenable to Wus/Bbm-mediated transformation. Transgenic plants/events were recovered from eight of the ten lines. One line, Gaspé Flint, generated transgenic events efficiently and at a wide range of embryo maturities. A Gaspé Flint x B73 introgression library was screened through Wus/Bbm-mediated transformation and Gaspé Flint introgressions associated with transformability were identified on chromosomes 1, 4, and 7. The scale of the transformation experiments necessitated isolation of thousands of immature embryo explants, for which a high-throughput method of embryo isolation (SIMPLE extraction) was developed. Methods for SIMPLE extraction, as well as optimized methods for Wus/Bbm-mediated and Wox2a-mediated maize transformation were developed to enable easy adoption these developing technologies.

Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (139 download)

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Book Synopsis Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems by : Frank Lloyd McFarland

Download or read book Identification and Characterization of a Maize (zea Mays L.) Gene Controlling Embryogenic Tissue Culture Response and Enhancement of Maize Transformation Systems written by Frank Lloyd McFarland and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Maize is one of the most economically important crops in the US and globally for food, feed, and biofuel production. Efficient production of regenerable, embryogenic tissue cultures of maize is necessary for both basic biological research and applied biotechnological approaches to maize genetic improvement. Efficient generation of regenerable cultures in maize is highly genotype-dependent and, historically, researchers in academia and industry have relied extensively upon a restrictively small number of genotypes amenable to conventional tissue culture. To identify the genetic basis for genotypic differences in culture response, a mapping-based approach was utilized. The tissue culture response trait from the regenerable maize inbred A188 was backcrossed into the recalcitrant inbred B73. An A188 genomic introgression spanning 3 Mb on chromosome 3 was strongly associated with regenerable tissue culture response. Three candidate genes were selected in the region based on their expression in A188 immature embryos and functional annotations of genes in the region. A screen of each candidate gene expressed under constitutive promoters identified a single candidate, Wox2a, which was found to induce somatic embryogenesis and embryogenic callus in B73.A complementary approach to mapping the A188 culture response trait was undertaken to map the genotype-dependent response of diverse maize lines to Wuschel2/Baby boom (Wus/Bbm)-mediated genetic transformation. Though Wus/Bbm-mediated transformation reduced recalcitrance of many lines through co-transformation with developmental regulators, strong trends of genotype-dependence were still observed. Ten diverse maize lines were screened to identify lines highly amenable to Wus/Bbm-mediated transformation. Transgenic plants/events were recovered from eight of the ten lines. One line, Gaspé Flint, generated transgenic events efficiently and at a wide range of embryo maturities. A Gaspé Flint x B73 introgression library was screened through Wus/Bbm-mediated transformation and Gaspe̹ Flint introgressions associated with transformability were identified on chromosomes 1, 4, and 7. The scale of the transformation experiments necessitated isolation of thousands of immature embryo explants, for which a high-throughput method of embryo isolation (SIMPLE extraction) was developed. Methods for SIMPLE extraction, as well as optimized methods for Wus/Bbm-mediated and Wox2a-mediated maize transformation were developed to enable easy adoption these developing technologies.

Identification of Quantitative Trait Loci Controlling Maturity and Plant Height Using Molecular Markers in Maize (Zea Mays L.)

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ISBN 13 :
Total Pages : 312 pages
Book Rating : 4.:/5 (264 download)

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Book Synopsis Identification of Quantitative Trait Loci Controlling Maturity and Plant Height Using Molecular Markers in Maize (Zea Mays L.) by : Ruth Petzold Koester

Download or read book Identification of Quantitative Trait Loci Controlling Maturity and Plant Height Using Molecular Markers in Maize (Zea Mays L.) written by Ruth Petzold Koester and published by . This book was released on 1992 with total page 312 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Drought Tolerance Traits in Maize (Zea Mays) at the Early Vegetative Growth Stage

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ISBN 13 :
Total Pages : 184 pages
Book Rating : 4.:/5 (17 download)

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Book Synopsis Drought Tolerance Traits in Maize (Zea Mays) at the Early Vegetative Growth Stage by : Abdalla I. Ibrahim

Download or read book Drought Tolerance Traits in Maize (Zea Mays) at the Early Vegetative Growth Stage written by Abdalla I. Ibrahim and published by . This book was released on 2017 with total page 184 pages. Available in PDF, EPUB and Kindle. Book excerpt: Early seedling vigor and juvenile vegetative growth are important traits that allow the strong establishment of plants and access to nutrients and water, providing competition against weeds, and allowing mechanical cultivation in production systems that do not use herbicides. Drought stress at this early growth stage may be lethal or damaging. We used to the plant Digital Biomass as predicted from digital images to track plant growth under both well-watered and water-stressed conditions. To achieve these goals, we developed a manual imaging system that allowed us to track the plant growth over a period of 32 days. We imaged 30,36 plants representing 449 inbred lines daily from 13 to 32 days after planting with both a top and a side image. The drought treatment started 23 days after planting by completely withholding water from the water-stress treatment. Using Integrated Analysis Platform (IAP) software, we extracted 137 traits from the images including plant architectural traits and color traits. Phenotypic analysis of several traits showed variability across inbreds. Digital Biomass, for example, showed a great variability across inbreds with a 6.6-fold difference at the beginning of the experiment. Digital Biomass, estimated from the top and side images, was shown to be a good measure of plant vigor and strongly correlated with plant shoot weight at harvest. Vigorous seedling utilized more water, reflecting their ability to take advantage of available resources. The value of image-based traits of young plants was evaluated as a predictive tool for adult phenotypes grown in the field. Weak to moderate correlations were obtained between Digital Biomass at the seedling stage, with r-squared values of -0.35, -0.31 for GDD to Anthesis, and GDD to Silking respectively. The correlation between early maize growth and flowering time may suggest a common genetic control of growth and development of both stages with some possible genes with pleiotropic effects. To identify genomic regions associated with the several phenotypic traits, we utilized a dataset of 436,576 SNP markers to conduct Genome-wide Association (GWAS) using the GAPIT package in R. Several candidate genes were identified for growth rate and total leaf area at specific growth stages, as well as for other correlated traits. GWAS of image-derived plant color traits detected genes associated with plant pigments such as anthocyanin and chlorophyll, which confirms earlier reports on the utility of plant imaging in identifying plant pigments. We wanted to test whether growth, as measured by Digital Biomass, was controlled by a fixed or a dynamic set of genes, so we carried out GWAS analysis of Digital Biomass for each day as a separate phenotype. Results have shown that variation for early vegetative growth in maize is controlled by a dynamic set of genes over time, highlighting the importance of repeated measurement over time in GWAS and QTL studies designed to characterize the genetic architecture of plant development. The analysis of the drought-stressed plants showed variability in different drought tolerance traits ranging from 1.2 to 12.2-fold difference. The several measured traits included traits such as 1) leaf expansion sensitivity to water content and traits related to the ability to recover after drought such as 2) surviving green tissue after drought stress, 3) water use efficiency, and 4) growth rate after recovery with. No or weak correlations were found between the plant's ability to tolerate drought and its ability to recover. Photosynthesis Efficiency measured as Fv/Fm on a subset of 140 plants at three time-points during drought stress, showed that photosynthetic efficiency is less sensitive to drought stress than leaf growth. The candidate genes identified in this study, as well as correlations with field agronomic traits, may provide an insight that helps future understanding of the genetic control of biomass-related traits under both well-watered and drought stress conditions.

Genome-Wide Association Studies and Genomic Prediction

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Publisher : Humana Press
ISBN 13 : 9781627034463
Total Pages : 0 pages
Book Rating : 4.0/5 (344 download)

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Book Synopsis Genome-Wide Association Studies and Genomic Prediction by : Cedric Gondro

Download or read book Genome-Wide Association Studies and Genomic Prediction written by Cedric Gondro and published by Humana Press. This book was released on 2013-06-12 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: With the detailed genomic information that is now becoming available, we have a plethora of data that allows researchers to address questions in a variety of areas. Genome-wide association studies (GWAS) have become a vital approach to identify candidate regions associated with complex diseases in human medicine, production traits in agriculture, and variation in wild populations. Genomic prediction goes a step further, attempting to predict phenotypic variation in these traits from genomic information. Genome-Wide Association Studies and Genomic Prediction pulls together expert contributions to address this important area of study. The volume begins with a section covering the phenotypes of interest as well as design issues for GWAS, then moves on to discuss efficient computational methods to store and handle large datasets, quality control measures, phasing, haplotype inference, and imputation. Later chapters deal with statistical approaches to data analysis where the experimental objective is either to confirm the biology by identifying genomic regions associated to a trait or to use the data to make genomic predictions about a future phenotypic outcome (e.g. predict onset of disease). As part of the Methods in Molecular Biology series, chapters provide helpful, real-world implementation advice.

Molecular Dissection of Complex Traits

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Publisher : CRC Press
ISBN 13 : 9781420049381
Total Pages : 328 pages
Book Rating : 4.0/5 (493 download)

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Book Synopsis Molecular Dissection of Complex Traits by : Andrew H. Paterson

Download or read book Molecular Dissection of Complex Traits written by Andrew H. Paterson and published by CRC Press. This book was released on 2019-09-17 with total page 328 pages. Available in PDF, EPUB and Kindle. Book excerpt: In the past 10 years, contemporary geneticists using new molecular tools have been able to resolve complex traits into individual genetic components and describe each such component in detail. Molecular Dissection of Complex Traits summarizes the state of the art in molecular analysis of complex traits (QTL mapping), placing new developments in thi

Wolf Prize In Agriculture

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Publisher : World Scientific
ISBN 13 : 9814469602
Total Pages : 1158 pages
Book Rating : 4.8/5 (144 download)

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Book Synopsis Wolf Prize In Agriculture by : Ilan Chet

Download or read book Wolf Prize In Agriculture written by Ilan Chet and published by World Scientific. This book was released on 2009-05-04 with total page 1158 pages. Available in PDF, EPUB and Kindle. Book excerpt: This specially compiled, one-of-a-kind volume contains exemplary contributions from Wolf Prize laureates in agriculture. There is no higher prize than the Wolf Prize. Thus, the reader has the opportunity to learn from the very top in various aspects of this field. Indeed, the book includes a list of publications and the most important papers in plant and animal breeding, genetics, biochemistry and plant protection, biotechnology, as well as chemistry and the physics of soils. In this volume one can learn about the developments in particular fields in agriculture at the highest level through the scientific activities of its world-class contributors.

Molecular Marker Analysis of Days to Flowering and Leaf Abscisic Acid Concentration in Corn

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ISBN 13 :
Total Pages : 200 pages
Book Rating : 4.:/5 (319 download)

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Book Synopsis Molecular Marker Analysis of Days to Flowering and Leaf Abscisic Acid Concentration in Corn by : Roberto Tuberosa

Download or read book Molecular Marker Analysis of Days to Flowering and Leaf Abscisic Acid Concentration in Corn written by Roberto Tuberosa and published by . This book was released on 1997 with total page 200 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Breeding for drought and nitrogen stress tolerance in maize: From theory to practice

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Publisher : CIMMYT
ISBN 13 : 9706480463
Total Pages : 69 pages
Book Rating : 4.7/5 (64 download)

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Book Synopsis Breeding for drought and nitrogen stress tolerance in maize: From theory to practice by : M. Bänzinger

Download or read book Breeding for drought and nitrogen stress tolerance in maize: From theory to practice written by M. Bänzinger and published by CIMMYT. This book was released on 2000 with total page 69 pages. Available in PDF, EPUB and Kindle. Book excerpt: Introduction - why breed for drought and low N tolerance?; Conceptual framework - breeding; Conventional approaches to improving the drought and low N tolerance of maize; Conventional approaches challenged; The challenge of breeding for drought and low N tolerance; Maize under drought and low N stress; Conceptual framework - physiology; Water and the maize plant; Nitrogen and the maize plant; Maize under drought and low N stress - consequences for breeding; Stress management; Drought; Low N stress; Statistical designs and layout of experiments; Increasing the number of replicates; Improved statistical designs; Field layout; Border effects from alleys; Secondary traits; Why use secondary traits?; How do we decide on the value of secondary traits in a drought or low N breeding program?; Secondary traits that help to identify drought tolerance; Secondary traits that help to identify low N tolerance: Selection indices - Combining information on secondary traits with grain yield; Combining information from various experiments; Breeding strategies; Choice of germplasm; Breeding schemes; Biotechnology: potential and constraints for improving drought and low N tolerance; The role of the farmer in selection; What is farmer participatory research and why is it important?; What is new about farmer participatory research?; Participatory methodologies.

Identification and Characterization of RFLP Markers Linked to Crown Rust Resistance in Oat (Avena Sp.)

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ISBN 13 :
Total Pages : 208 pages
Book Rating : 4.:/5 (319 download)

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Book Synopsis Identification and Characterization of RFLP Markers Linked to Crown Rust Resistance in Oat (Avena Sp.) by : William Lloyd Rooney

Download or read book Identification and Characterization of RFLP Markers Linked to Crown Rust Resistance in Oat (Avena Sp.) written by William Lloyd Rooney and published by . This book was released on 1992 with total page 208 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Report of Annual Corn and Sorghum Research Conference

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ISBN 13 :
Total Pages : 776 pages
Book Rating : 4.:/5 (89 download)

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Book Synopsis Report of Annual Corn and Sorghum Research Conference by :

Download or read book Report of Annual Corn and Sorghum Research Conference written by and published by . This book was released on 1990 with total page 776 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Quantitative Genetics in Maize Breeding

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Publisher : Springer Science & Business Media
ISBN 13 : 1441907661
Total Pages : 669 pages
Book Rating : 4.4/5 (419 download)

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Book Synopsis Quantitative Genetics in Maize Breeding by : Arnel R. Hallauer

Download or read book Quantitative Genetics in Maize Breeding written by Arnel R. Hallauer and published by Springer Science & Business Media. This book was released on 2010-09-28 with total page 669 pages. Available in PDF, EPUB and Kindle. Book excerpt: Maize is used in an endless list of products that are directly or indirectly related to human nutrition and food security. Maize is grown in producer farms, farmers depend on genetically improved cultivars, and maize breeders develop improved maize cultivars for farmers. Nikolai I. Vavilov defined plant breeding as plant evolution directed by man. Among crops, maize is one of the most successful examples for breeder-directed evolution. Maize is a cross-pollinated species with unique and separate male and female organs allowing techniques from both self and cross-pollinated crops to be utilized. As a consequence, a diverse set of breeding methods can be utilized for the development of various maize cultivar types for all economic conditions (e.g., improved populations, inbred lines, and their hybrids for different types of markets). Maize breeding is the science of maize cultivar development. Public investment in maize breeding from 1865 to 1996 was $3 billion (Crosbie et al., 2004) and the return on investment was $260 billion as a consequence of applied maize breeding, even without full understanding of the genetic basis of heterosis. The principles of quantitative genetics have been successfully applied by maize breeders worldwide to adapt and improve germplasm sources of cultivars for very simple traits (e.g. maize flowering) and very complex ones (e.g., grain yield). For instance, genomic efforts have isolated early-maturing genes and QTL for potential MAS but very simple and low cost phenotypic efforts have caused significant and fast genetic progress across genotypes moving elite tropical and late temperate maize northward with minimal investment. Quantitative genetics has allowed the integration of pre-breeding with cultivar development by characterizing populations genetically, adapting them to places never thought of (e.g., tropical to short-seasons), improving them by all sorts of intra- and inter-population recurrent selection methods, extracting lines with more probability of success, and exploiting inbreeding and heterosis. Quantitative genetics in maize breeding has improved the odds of developing outstanding maize cultivars from genetically broad based improved populations such as B73. The inbred-hybrid concept in maize was a public sector invention 100 years ago and it is still considered one of the greatest achievements in plant breeding. Maize hybrids grown by farmers today are still produced following this methodology and there is still no limit to genetic improvement when most genes are targeted in the breeding process. Heterotic effects are unique for each hybrid and exotic genetic materials (e.g., tropical, early maturing) carry useful alleles for complex traits not present in the B73 genome just sequenced while increasing the genetic diversity of U.S. hybrids. Breeding programs based on classical quantitative genetics and selection methods will be the basis for proving theoretical approaches on breeding plans based on molecular markers. Mating designs still offer large sample sizes when compared to QTL approaches and there is still a need to successful integration of these methods. There is a need to increase the genetic diversity of maize hybrids available in the market (e.g., there is a need to increase the number of early maturing testers in the northern U.S.). Public programs can still develop new and genetically diverse products not available in industry. However, public U.S. maize breeding programs have either been discontinued or are eroding because of decreasing state and federal funding toward basic science. Future significant genetic gains in maize are dependent on the incorporation of useful and unique genetic diversity not available in industry (e.g., NDSU EarlyGEM lines). The integration of pre-breeding methods with cultivar development should enhance future breeding efforts to maintain active public breeding programs not only adapting and improving genetically broad-based germplasm but also developing unique products and training the next generation of maize breeders producing research dissertations directly linked to breeding programs. This is especially important in areas where commercial hybrids are not locally bred. More than ever public and private institutions are encouraged to cooperate in order to share breeding rights, research goals, winter nurseries, managed stress environments, and latest technology for the benefit of producing the best possible hybrids for farmers with the least cost. We have the opportunity to link both classical and modern technology for the benefit of breeding in close cooperation with industry without the need for investing in academic labs and time (e.g., industry labs take a week vs months/years in academic labs for the same work). This volume, as part of the Handbook of Plant Breeding series, aims to increase awareness of the relative value and impact of maize breeding for food, feed, and fuel security. Without breeding programs continuously developing improved germplasm, no technology can develop improved cultivars. Quantitative Genetics in Maize Breeding presents principles and data that can be applied to maximize genetic improvement of germplasm and develop superior genotypes in different crops. The topics included should be of interest of graduate students and breeders conducting research not only on breeding and selection methods but also developing pure lines and hybrid cultivars in crop species. This volume is a unique and permanent contribution to breeders, geneticists, students, policy makers, and land-grant institutions still promoting quality research in applied plant breeding as opposed to promoting grant monies and indirect costs at any short-term cost. The book is dedicated to those who envision the development of the next generation of cultivars with less need of water and inputs, with better nutrition; and with higher percentages of exotic germplasm as well as those that pursue independent research goals before searching for funding. Scientists are encouraged to use all possible breeding methodologies available (e.g., transgenics, classical breeding, MAS, and all possible combinations could be used with specific sound long and short-term goals on mind) once germplasm is chosen making wise decisions with proven and scientifically sound technologies for assisting current breeding efforts depending on the particular trait under selection. Arnel R. Hallauer is C. F. Curtiss Distinguished Professor in Agriculture (Emeritus) at Iowa State University (ISU). Dr. Hallauer has led maize-breeding research for mid-season maturity at ISU since 1958. His work has had a worldwide impact on plant-breeding programs, industry, and students and was named a member of the National Academy of Sciences. Hallauer is a native of Kansas, USA. José B. Miranda Filho is full-professor in the Department of Genetics, Escola Superior de Agricultura Luiz de Queiroz - University of São Paulo located at Piracicaba, Brazil. His research interests have emphasized development of quantitative genetic theory and its application to maize breeding. Miranda Filho is native of Pirassununga, São Paulo, Brazil. M.J. Carena is professor of plant sciences at North Dakota State University (NDSU). Dr. Carena has led maize-breeding research for short-season maturity at NDSU since 1999. This program is currently one the of the few public U.S. programs left integrating pre-breeding with cultivar development and training in applied maize breeding. He teaches Quantitative Genetics and Crop Breeding Techniques at NDSU. Carena is a native of Buenos Aires, Argentina. http://www.ag.ndsu.nodak.edu/plantsci/faculty/Carena.htm

Maize Kernel Development

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Author :
Publisher : CABI
ISBN 13 : 178639121X
Total Pages : 255 pages
Book Rating : 4.7/5 (863 download)

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Book Synopsis Maize Kernel Development by : Brian A Larkins

Download or read book Maize Kernel Development written by Brian A Larkins and published by CABI. This book was released on 2017-11-21 with total page 255 pages. Available in PDF, EPUB and Kindle. Book excerpt: This is an authoritative book that acts as a guide to understanding maize kernel development. Written by a team of experts, it covers topics spanning pre- and post-fertilization events, embryo and endosperm development, grain filling and maturation, and factors influencing crop yield. It explores the significance of maize and other cereal grains, existing hypotheses and research, and important gaps in our knowledge and how we might fill them. This is a valuable resource for researchers of maize and other cereals, and anyone working on basic or applied science in the fields of seed development, plant genetics, and crop physiology.