Role of genetic resources from different geographic and climatic regions in simultaneous breeding for high quality protein maize (HQPM) and stress tolerance

Author:

Denic Miloje1,Ignjatovic-Micic Dragana2ORCID,Stankovic Goran2ORCID,Markovic Ksenija3ORCID,Zilic Sladjana2,Lazic-Jancic Vesna2,Chauque Pedro4,Fato Pedro4,Senete Constantino4,Mariote David4,Haag Wayne5

Affiliation:

1. Maize Research Institute “Zemun polje”, Belgrade + Institute for Agricultural Research of Mozambique (IIAM), Maputo, Mozambique + Sasakawa Global, Maputo, Mozambique

2. Maize Research Institute “Zemun polje”, Belgrade, Serbia

3. Maize Research Institute Zemun polje, Belgrade, Serbia

4. Institute for Agricultural Research of Mozambique (IIAM), Maputo, Mozambique

5. Sasakawa Global, Maputo, Mozambique

Abstract

Due to the low biological value of proteins of common maize, it was reinitiated breeding for high protein quality maize (HQPM) using three genetic systems, namely: opaque-2 gene, endosperm modifier genes and enhancer genes, which are increasing lysine and tryptophan content in opaque-2 background In order to alleviate effect of abiotic and biotic stress factors, the genotypes with tolerance to those factors were included. Genetic resources originating from North, Central and South America, then West, Central and Southern Africa and gene bank of Maize Research Institute ?Zemun Polje? were used. Combining breeding approaches in selection of genetic resources, field plot techniques and laboratory analysis, it was created large number of early QPM varieties, inbred lines and hybrids with modified endosperm and high yield potential under poor and good growing conditions. Created lines exhibited high combining ability in conventional and non-conventional hybrids. Yield trials showed that QPM hybrids are competing with commercial hybrids of common maize.

Publisher

National Library of Serbia

Subject

Plant Science,Genetics

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