Abstract Leaf collection from the field, labeling and tracking back to the source plants after genotyp-ing are rate limiting steps in leaf DNA-based genotyping. In this study, an optimized genotyping method using endosperm DNA sampled from single maize seeds was developed, which can be used to replace leaf DNA-based genotyping for both genetic studies and breeding applications. A similar approach is likely to be suitable for all plants with relatively large seeds. Part of the endosperm was excised from imbibed maize seeds and DNA extracted in 96-tube plates using individuals from eight F2 populations and seven inbreds. The quality of the resultant DNA was functionally comparable to DNA extracted from leaf tissue. Extraction from 30 mg of en...
Over the past decades, wide theoretical and practical experience has been obtained in application of...
Background High density genotyping data are indispensable for genomic analyses of complex traits in ...
Molecular markers have revolutionized and modernized our ability to characterize genetic variation a...
DNA based characterisation of maize germplasm has become the easiest and fastest approach to identif...
Development of a seed DNA-based genotyping system for marker-assisted selection (MAS) has provided a...
As a contribution to DUS testing within the system of protection of plant breeders' rights (PBR), th...
<div><p>Quality control (QC) of germplasm identity and purity is a critical component of breeding an...
The objective of this work was to distinguish the parental source of alleles in heterozygous progeny...
Maize is one of major crop species over the world. With lots of genetic resources and genomic tools,...
The AFLP technology was used to develop AFLP markers characterizing 10 maize inbred lines and genera...
Maize is an important crop for food, feed, forage, and fuel across tropical and temperate areas of t...
Aims: Morphological evaluation of seeds and growing plants used for certification for purity and var...
We have developed a method for detecting a transgene and its protein product in maize endosperm that...
The objective of the present study was to conduct DNA based genotyping analysis for hybrid identific...
Genetic engineering and biotechnology are providing new tools for genetic improvement of food crops....
Over the past decades, wide theoretical and practical experience has been obtained in application of...
Background High density genotyping data are indispensable for genomic analyses of complex traits in ...
Molecular markers have revolutionized and modernized our ability to characterize genetic variation a...
DNA based characterisation of maize germplasm has become the easiest and fastest approach to identif...
Development of a seed DNA-based genotyping system for marker-assisted selection (MAS) has provided a...
As a contribution to DUS testing within the system of protection of plant breeders' rights (PBR), th...
<div><p>Quality control (QC) of germplasm identity and purity is a critical component of breeding an...
The objective of this work was to distinguish the parental source of alleles in heterozygous progeny...
Maize is one of major crop species over the world. With lots of genetic resources and genomic tools,...
The AFLP technology was used to develop AFLP markers characterizing 10 maize inbred lines and genera...
Maize is an important crop for food, feed, forage, and fuel across tropical and temperate areas of t...
Aims: Morphological evaluation of seeds and growing plants used for certification for purity and var...
We have developed a method for detecting a transgene and its protein product in maize endosperm that...
The objective of the present study was to conduct DNA based genotyping analysis for hybrid identific...
Genetic engineering and biotechnology are providing new tools for genetic improvement of food crops....
Over the past decades, wide theoretical and practical experience has been obtained in application of...
Background High density genotyping data are indispensable for genomic analyses of complex traits in ...
Molecular markers have revolutionized and modernized our ability to characterize genetic variation a...