Open Access Journal; Published online: 5 April 2019Background Maize yield potential is rarely maximized in sub-Saharan Africa (SSA) due to the devastating effects of drought stress and Striga hermonthica parasitism. This study was conducted to determine the gains in grain yield and associated changes in an early-maturing yellow bi-parental maize population (TZEI 17 x TZEI 11) F3 following genomic selection (GS) for improved grain yield, Striga resistance and drought tolerance. Fifty S1 lines were extracted from each of cycles C0, C1, C2 and C3 of the population and crossed to a tester TZEI 23 to generate 200 testcrosses. The testcrosses were evaluated under drought, artificial Striga-infested and optimal (free from Striga infestation and w...
Studies on genetic gains in grain yield in maize (Zea mays L) is crucial to identify traits of poten...
Open Access Article; Published online: 17 Aug 2018Maize production is constrained by Striga hermonth...
Open Access Journal; Published online: 24 Sept 2019Availability of multiple-stress tolerant maize is...
Abstract Background Maize yield potential is rarely maximized in sub-Saharan Africa (SSA) due to the...
Maize is a strategic food crop in sub-Saharan Africa. However, most maize growing tropical savannas ...
Open Access Journal; Published online: 13 Aug 2020Striga hermonthica is a major maize production con...
Open Access Article; Published online: 27 Jan 2023Identification of hybrids for commercialization is...
Open Access Journal; Published online: 23 Apr 2021Genetic gain studies in a breeding program are ver...
Open Access Article; Published online: 30 Aug 2018Drought is a key maize (Zea mays L.) production co...
The major challenges of maize production and productivity in Sub-Saharan Africa (SSA) include Striga...
Drought and Striga are principal constraints to maize production in sub-Saharan Africa. An early yel...
Open Access JournalMaize is a food security crop cultivated in the African savannas that are vulnera...
Published online: 17 October 2016Drought is a major constraint to maize production in West and Centr...
Open Access Article; Published online: 03 Oct 2019.Striga hermonthica (Del.) Benth parasitizes maiz...
Maize is the most important staple cereal crop in sub-Saharan Africa (SSA) and has great potential t...
Studies on genetic gains in grain yield in maize (Zea mays L) is crucial to identify traits of poten...
Open Access Article; Published online: 17 Aug 2018Maize production is constrained by Striga hermonth...
Open Access Journal; Published online: 24 Sept 2019Availability of multiple-stress tolerant maize is...
Abstract Background Maize yield potential is rarely maximized in sub-Saharan Africa (SSA) due to the...
Maize is a strategic food crop in sub-Saharan Africa. However, most maize growing tropical savannas ...
Open Access Journal; Published online: 13 Aug 2020Striga hermonthica is a major maize production con...
Open Access Article; Published online: 27 Jan 2023Identification of hybrids for commercialization is...
Open Access Journal; Published online: 23 Apr 2021Genetic gain studies in a breeding program are ver...
Open Access Article; Published online: 30 Aug 2018Drought is a key maize (Zea mays L.) production co...
The major challenges of maize production and productivity in Sub-Saharan Africa (SSA) include Striga...
Drought and Striga are principal constraints to maize production in sub-Saharan Africa. An early yel...
Open Access JournalMaize is a food security crop cultivated in the African savannas that are vulnera...
Published online: 17 October 2016Drought is a major constraint to maize production in West and Centr...
Open Access Article; Published online: 03 Oct 2019.Striga hermonthica (Del.) Benth parasitizes maiz...
Maize is the most important staple cereal crop in sub-Saharan Africa (SSA) and has great potential t...
Studies on genetic gains in grain yield in maize (Zea mays L) is crucial to identify traits of poten...
Open Access Article; Published online: 17 Aug 2018Maize production is constrained by Striga hermonth...
Open Access Journal; Published online: 24 Sept 2019Availability of multiple-stress tolerant maize is...