Badu-Apraku, Baffour
246  Ergebnisse:
Personensuche X
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Identification and validation of QTLs for Striga resistance..:

Badu-Apraku, Baffour ; Adewale, Samuel A ; Masari, Adamu Abudakar...
Badu-Apraku, B., Adewale, S.A., Masari, A. A., Paterne, A.A., Gedil, M., Garcia Oliveira, A.L. and Asiedu, R. 2022. Identification and validation of QTLs for Striga resistance in maize. Ibadan: IITA. https://hdl.handle.net/10883/22434.  , 2023
 
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Mapping quantitative trait loci and predicting candidate ge..:

Badu-Apraku, Baffour ; Adewale, S ; Agre, P..
Badu-Apraku, B., Adewale, S., Agre, P., Offornedo, Q. & Gedil, M. (2023). Mapping quantitative trait loci and predicting candidate genes for Striga resistance in maize using resistance donor line derived from Zea diploperennis. Frontiers in Genetics, 14: 1012460, 1-14..  , 2023
 
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Genome-wide association studies of Striga resistance in ext..:

Okunlola, G ; Badu-Apraku, Baffour ; Ariyo, O...
Okunlola, G., Badu-Apraku, B., Ariyo, O., Agre, P., Offernedo, Q.N. & Ayo-Vaughan, M.A. (2023). Genome-wide association studies of Striga resistance in extra-early maturing quality protein maize inbred lines. G3-Genes Genomes Genetics, 13(2): jkac237, 1-11..  , 2023
 
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Trait profile of maize varieties preferred by farmers and v..:

Adu, G.B ; Badu-Apraku, Baffour ; Akromah, R...
Adu, G.B., Badu-Apraku, B., Akromah, R., Amegbor, I.K., Adogoba, D.S., Haruna, A., . & Wiredu, A. (2021). Trait profile of maize varieties preferred by farmers and value chain actors in northern Ghana. Agronomy for Sustainable Development, 41(4), 1-15..  , 2022
 
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Identification of early and extra-early maturing tropical m..:

Bankole, F ; Badu-Apraku, Baffour ; Salami, A.O...
Bankole, F., Badu-Apraku, B., Salami, A.O., Falade, T.D.O., Bandyopadhyay, R. & Ortega-Beltran, A. (2022). Identification of early and extra-early maturing tropical maize inbred lines with multiple disease resistance for enhanced maize production and productivity in sub-Saharan Africa. Plant Disease, 1-31..  , 2022
 
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Genome-wide association analysis reveals genetic architectu..:

Bhadmus, O.O ; Badu-Apraku, Baffour ; Adeyemo, O...
Bhadmus, O.O., Badu-Apraku, B., Adeyemo, O., Agre, A.P., Queen, O.N. & Ogunkanmi, L.A. (2022). Genome-wide association analysis reveals genetic architecture and candidate genes associated with grain yield and other traits under low soil nitrogen in early-maturing white quality protein maize inbred lines. Genes, 13(5): 826, 1-21..  , 2022
 
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Genetic diversity and inter-trait relationships among maize..:

Akaogu, I.C ; Badu-Apraku, Baffour ; Gracen, V.E...
Akaogu, I.C., Badu-Apraku, B., Gracen, V.E., Tongoona, P., Gedil, M., Unachukwu, N., . & Garcia-Oliveira, A.L. (2022). Genetic diversity and inter-trait relationships among maize inbreds containing genes from Zea diploperennis and hybrid performance under contrasting environments. Agronomy, 10(10), 1-25..  , 2022
 
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Accelerated genetic gains in early-maturing maize hybrids f..:

Badu-Apraku, Baffour ; Fakorede, M ; Abubakar, M
Badu-Apraku, B., Fakorede, M. & Abubakar, M. (2022). Accelerated genetic gains in early-maturing maize hybrids following three periods of genetic enhancement for grain yield under low and high soil-nitrogen environments. Plants, 11(9), 1-16..  , 2022
 
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Genome-wide association study reveals genetic architecture ..:

Osuman, A.S ; Badu-Apraku, Baffour ; Karikari, B...
Osuman, A.S., Badu-Apraku, B., Karikari, B., Ifie, B.E., Tongoona, P. & Danquah, E. (2022). Genome-wide association study reveals genetic architecture and candidate genes for yield and related traits under terminal drought, combined heat and drought in tropical maize germplasm. Genes, 13(2), 1-21..  , 2022
 
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