Characterization of genetic diversity of maize (Zea mays L.) germplasm is of great importance in hybrid maize breeding. The objectives of this study were to (i) investigate genetic diversity in CIMMYT subtropical, tropical midaltitude and highland inbreds with simple sequence repeat (SSR) markers, (ii) identify appropriate testers for the development of new inbred lines, (iii) compare this sample to U.S. and European elite maize lines and CIMMYT tropical lowland inbreds, and (iv) use the marker and pedigree information as a guide to understanding the heterotic relationship among the CIMMYT maize lines (CMLs) and their potential practical use in maize breeding programs worldwide. Inbreds included in the study were assayed with 79 SSR markers...
Historically important public inbred lines continue to play an important role in maize (Zea maysL.) ...
The classification of maize inbred lines into heterotic groups is an important undertaking in hybrid...
Maize (Zea mays L.) displays large genetic diversity created during the history of introduction from...
Genetic diversity in maize (Zea mays L.) plays a key role for future breeding progress. The main obj...
Seventeen elite maize inbred lines of West and Central Africa adaptation with tropical and temperate...
Genetically diverse and complementary elite inbred lines are fundamental for hybrid maize breedi...
Genetic diversity of 24 tropical and subtropical elite maize lines was assessed at molecular level e...
Maize (Zea mays L.) is an important cereal crop of different countries of world. Undoubtedly, the co...
Heterotic groups and patterns are of fundamental importance in hybrid breeding of maize (Zea mays L....
The objectives of this study were to identify the population structure and to assess the genetic div...
An insight on diversity and relationships among germplasm is important in any breeding program for c...
CIMMYT is the source of improved maize (Zea mays L.) breeding material for a significant portion of ...
This study focuses on the standardization of techniques across laboratories to enable multiple datas...
Creating new maize hybrids with greater yield potential is a permanent goal of breeding programs all...
The establishment of heterotic groups and heterotic patterns is crucial to a successful maize h...
Historically important public inbred lines continue to play an important role in maize (Zea maysL.) ...
The classification of maize inbred lines into heterotic groups is an important undertaking in hybrid...
Maize (Zea mays L.) displays large genetic diversity created during the history of introduction from...
Genetic diversity in maize (Zea mays L.) plays a key role for future breeding progress. The main obj...
Seventeen elite maize inbred lines of West and Central Africa adaptation with tropical and temperate...
Genetically diverse and complementary elite inbred lines are fundamental for hybrid maize breedi...
Genetic diversity of 24 tropical and subtropical elite maize lines was assessed at molecular level e...
Maize (Zea mays L.) is an important cereal crop of different countries of world. Undoubtedly, the co...
Heterotic groups and patterns are of fundamental importance in hybrid breeding of maize (Zea mays L....
The objectives of this study were to identify the population structure and to assess the genetic div...
An insight on diversity and relationships among germplasm is important in any breeding program for c...
CIMMYT is the source of improved maize (Zea mays L.) breeding material for a significant portion of ...
This study focuses on the standardization of techniques across laboratories to enable multiple datas...
Creating new maize hybrids with greater yield potential is a permanent goal of breeding programs all...
The establishment of heterotic groups and heterotic patterns is crucial to a successful maize h...
Historically important public inbred lines continue to play an important role in maize (Zea maysL.) ...
The classification of maize inbred lines into heterotic groups is an important undertaking in hybrid...
Maize (Zea mays L.) displays large genetic diversity created during the history of introduction from...