QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses

Bibliographic Details
Main Authors: Neiff, Nicolás, González Perez, Lorena, Mendoza Lugo, Jose Alberto, Martínez, Carlos, Kettler, Belén Araceli, Dhliwayo, Thanda, Babu, Raman, Trachsel, Samuel
Format: Journal Article
Language:Inglés
Published: Informa UK Limited 2023
Subjects:
Online Access:https://hdl.handle.net/10568/127591
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author Neiff, Nicolás
González Perez, Lorena
Mendoza Lugo, Jose Alberto
Martínez, Carlos
Kettler, Belén Araceli
Dhliwayo, Thanda
Babu, Raman
Trachsel, Samuel
author_browse Babu, Raman
Dhliwayo, Thanda
González Perez, Lorena
Kettler, Belén Araceli
Martínez, Carlos
Mendoza Lugo, Jose Alberto
Neiff, Nicolás
Trachsel, Samuel
author_facet Neiff, Nicolás
González Perez, Lorena
Mendoza Lugo, Jose Alberto
Martínez, Carlos
Kettler, Belén Araceli
Dhliwayo, Thanda
Babu, Raman
Trachsel, Samuel
author_sort Neiff, Nicolás
collection Repository of Agricultural Research Outputs (CGSpace)
format Journal Article
id CGSpace127591
institution CGIAR Consortium
language Inglés
publishDate 2023
publishDateRange 2023
publishDateSort 2023
publisher Informa UK Limited
publisherStr Informa UK Limited
record_format dspace
spelling CGSpace1275912025-02-19T13:49:56Z QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses Neiff, Nicolás González Perez, Lorena Mendoza Lugo, Jose Alberto Martínez, Carlos Kettler, Belén Araceli Dhliwayo, Thanda Babu, Raman Trachsel, Samuel maize climate change doubled haploids plant breeding drought stress 2023-09-03 2023-01-19T16:59:54Z 2023-01-19T16:59:54Z Journal Article https://hdl.handle.net/10568/127591 en Limited Access Informa UK Limited Neiff, N., González Pérez, L., Mendoza Lugo, J.A., Martínez, C., Kettler, B.A., Dhliwayo, T., Babu, R. and Trachsel, S. 2022. QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses. Journal of Crop Improvement, 1–26.
spellingShingle maize
climate change
doubled haploids
plant breeding
drought stress
Neiff, Nicolás
González Perez, Lorena
Mendoza Lugo, Jose Alberto
Martínez, Carlos
Kettler, Belén Araceli
Dhliwayo, Thanda
Babu, Raman
Trachsel, Samuel
QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title_full QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title_fullStr QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title_full_unstemmed QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title_short QTL and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat-drought stresses
title_sort qtl and genomic prediction accuracy for grain yield and secondary traits in a maize population under heat and heat drought stresses
topic maize
climate change
doubled haploids
plant breeding
drought stress
url https://hdl.handle.net/10568/127591
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