Insect and disease resistance from tropical maize for use in temperate zone hybrids

Biotic constraints (insects, diseases, parasitic weeds) and abiotic stresses (drought) are widespread and pose a constant threat to maize production worldwide. Tropical environments provide the greatest opportunity for evolution of insects and diseases because of the favourable year- round climatic conditions. Year-round breeding programs permit selection of stable general resistance against specific or combined challenges. The IITA Maize Program initiated a line-development project in 1979. The major objectives of this project were to develop vigorous, tropically adapted inbreds that confer general resistance or tolerance against specific African as well as common tropical production constraints. Important constraints in Africa are stem borer (Sesamia calamistis, Eldana saccharina and Busseola fusca), storage insects (Si-tophi/us spp.), foliar diseases (Maize Streak Virus, Puccinia palysora, Hel•mintho.parium maydu, Exserohilum turcicum, Curvularia palle.cens.downy mildew), stalk and ear rots (Fusarium moniliform, Botryodiplodiat Mobromae, Macrophomina phauolii, Striga hermonthica, and drought. Some of these problems occur in the U.S. Com Belt and in other parts of the world. The Maize Inbred Resistance (MIR) project of the University of Hawaii tested 120 tropically adapted inbred collections at 27 locations worldwide, including tropical. Sub-tropical and temperate regions. Sources for high levels of general resistance were found for most insects and diseases. The selected inbreds could be valuable sources of resistance for developing inbreds and hybrids adapted to the Com Belt. This paper presents current results regarding general resistance to the major production constraints of maize worldwide and introduces a pioneering approach for testing combining ability of tropical inbreds for temperate as well as tropical regions.

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Main Authors: Kim, S.K., Brewbaker, J.L., Hallauer, A.
Format: Conference Paper biblioteca
Language:English
Published: 1988
Subjects:inbred lines, maize, germplasm, drought, breeding, insects, diseases,
Online Access:https://hdl.handle.net/10568/98807
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spelling dig-cgspace-10568-988072023-06-08T14:59:39Z Insect and disease resistance from tropical maize for use in temperate zone hybrids Kim, S.K. Brewbaker, J.L. Hallauer, A. inbred lines maize germplasm drought breeding insects diseases Biotic constraints (insects, diseases, parasitic weeds) and abiotic stresses (drought) are widespread and pose a constant threat to maize production worldwide. Tropical environments provide the greatest opportunity for evolution of insects and diseases because of the favourable year- round climatic conditions. Year-round breeding programs permit selection of stable general resistance against specific or combined challenges. The IITA Maize Program initiated a line-development project in 1979. The major objectives of this project were to develop vigorous, tropically adapted inbreds that confer general resistance or tolerance against specific African as well as common tropical production constraints. Important constraints in Africa are stem borer (Sesamia calamistis, Eldana saccharina and Busseola fusca), storage insects (Si-tophi/us spp.), foliar diseases (Maize Streak Virus, Puccinia palysora, Hel•mintho.parium maydu, Exserohilum turcicum, Curvularia palle.cens.downy mildew), stalk and ear rots (Fusarium moniliform, Botryodiplodiat Mobromae, Macrophomina phauolii, Striga hermonthica, and drought. Some of these problems occur in the U.S. Com Belt and in other parts of the world. The Maize Inbred Resistance (MIR) project of the University of Hawaii tested 120 tropically adapted inbred collections at 27 locations worldwide, including tropical. Sub-tropical and temperate regions. Sources for high levels of general resistance were found for most insects and diseases. The selected inbreds could be valuable sources of resistance for developing inbreds and hybrids adapted to the Com Belt. This paper presents current results regarding general resistance to the major production constraints of maize worldwide and introduces a pioneering approach for testing combining ability of tropical inbreds for temperate as well as tropical regions. 1988 2018-12-19T07:15:22Z 2018-12-19T07:15:22Z Conference Paper Kim, S.K., Brewbaker, J. & Hallauer, A. (1988). Insect and disease resistance from tropical maize for use in temperate zone hybrids. Proceedings of 43rd Annual Corn and Sorghum Research Conference. Ibadan, Nigeria: IITA, (p. 194-226). https://hdl.handle.net/10568/98807 en Open Access p. 194-226 application/pdf
institution CGIAR
collection DSpace
country Francia
countrycode FR
component Bibliográfico
access En linea
databasecode dig-cgspace
tag biblioteca
region Europa del Oeste
libraryname Biblioteca del CGIAR
language English
topic inbred lines
maize
germplasm
drought
breeding
insects
diseases
inbred lines
maize
germplasm
drought
breeding
insects
diseases
spellingShingle inbred lines
maize
germplasm
drought
breeding
insects
diseases
inbred lines
maize
germplasm
drought
breeding
insects
diseases
Kim, S.K.
Brewbaker, J.L.
Hallauer, A.
Insect and disease resistance from tropical maize for use in temperate zone hybrids
description Biotic constraints (insects, diseases, parasitic weeds) and abiotic stresses (drought) are widespread and pose a constant threat to maize production worldwide. Tropical environments provide the greatest opportunity for evolution of insects and diseases because of the favourable year- round climatic conditions. Year-round breeding programs permit selection of stable general resistance against specific or combined challenges. The IITA Maize Program initiated a line-development project in 1979. The major objectives of this project were to develop vigorous, tropically adapted inbreds that confer general resistance or tolerance against specific African as well as common tropical production constraints. Important constraints in Africa are stem borer (Sesamia calamistis, Eldana saccharina and Busseola fusca), storage insects (Si-tophi/us spp.), foliar diseases (Maize Streak Virus, Puccinia palysora, Hel•mintho.parium maydu, Exserohilum turcicum, Curvularia palle.cens.downy mildew), stalk and ear rots (Fusarium moniliform, Botryodiplodiat Mobromae, Macrophomina phauolii, Striga hermonthica, and drought. Some of these problems occur in the U.S. Com Belt and in other parts of the world. The Maize Inbred Resistance (MIR) project of the University of Hawaii tested 120 tropically adapted inbred collections at 27 locations worldwide, including tropical. Sub-tropical and temperate regions. Sources for high levels of general resistance were found for most insects and diseases. The selected inbreds could be valuable sources of resistance for developing inbreds and hybrids adapted to the Com Belt. This paper presents current results regarding general resistance to the major production constraints of maize worldwide and introduces a pioneering approach for testing combining ability of tropical inbreds for temperate as well as tropical regions.
format Conference Paper
topic_facet inbred lines
maize
germplasm
drought
breeding
insects
diseases
author Kim, S.K.
Brewbaker, J.L.
Hallauer, A.
author_facet Kim, S.K.
Brewbaker, J.L.
Hallauer, A.
author_sort Kim, S.K.
title Insect and disease resistance from tropical maize for use in temperate zone hybrids
title_short Insect and disease resistance from tropical maize for use in temperate zone hybrids
title_full Insect and disease resistance from tropical maize for use in temperate zone hybrids
title_fullStr Insect and disease resistance from tropical maize for use in temperate zone hybrids
title_full_unstemmed Insect and disease resistance from tropical maize for use in temperate zone hybrids
title_sort insect and disease resistance from tropical maize for use in temperate zone hybrids
publishDate 1988
url https://hdl.handle.net/10568/98807
work_keys_str_mv AT kimsk insectanddiseaseresistancefromtropicalmaizeforuseintemperatezonehybrids
AT brewbakerjl insectanddiseaseresistancefromtropicalmaizeforuseintemperatezonehybrids
AT hallauera insectanddiseaseresistancefromtropicalmaizeforuseintemperatezonehybrids
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