Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions
For efficient production of doubled haploid (DH) lines in maize, maternal haploid inducer lines with high haploid induction rate (HIR) and good adaptation to the target environments is an important requirement. In this study, we present second-generation Tropically Adapted Inducer Lines (2GTAILs), developed using marker assisted selection (MAS) for qhir1, a QTL with a significant positive effect on HIR from the crosses between elite tropical maize inbreds and first generation Tropically Adapted Inducers Lines (TAILs). Evaluation of 2GTAILs for HIR and agronomic performance in the tropical and subtropical environments indicated superior performance of 2GTAILs over the TAILs for both HIR and agronomic performance, including plant vigor, delayed flowering, grain yield, and resistance to ear rots. One of the new inducers 2GTAIL006 showed an average HIR of 13.1% which is 48.9% higher than the average HIR of the TAILs. Several other 2GTAILs also showed higher HIR compared to the TAILs. While employing MAS for qhir1 QTL, we observed significant influence of the non-inducer parent on the positive effect of qhir1 QTL on HIR. The non-inducer parents that resulted in highest mean HIR in the early generation qhir1+ families also gave rise to highest numbers of candidate inducers, some of which showed transgressive segregation for HIR. The mean HIR of early generation qhir1+ families involving different non-inducer parents can potentially indicate recipient non-inducer parents that can result in progenies with high HIR. Our study also indicated that the HIR associated traits (endosperm abortion rate, embryo abortion rate, and proportion of haploid plants among the inducer plants) can be used to differentiate inducers vs. non-inducers but are not suitable for differentiating inducers with varying levels of haploid induction rates. We propose here an efficient methodology for developing haploid inducer lines combining MAS for qhir1 with HIR associated traits.
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2018
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Subjects: | AGRICULTURAL SCIENCES AND BIOTECHNOLOGY, Doubled Haploid, Maternal Haploid Inducers, Phenotyping, MAIZE, HAPLOIDY, ARTIFICIAL SELECTION, MARKER-ASSISTED SELECTION, PHENOTYPES, |
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dig-cimmyt-10883-196632023-07-11T14:46:05Z Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions Chaikam, V. Nair, S.K. Martinez, L. Lopez, L.A. Utz, H.F. Melchinger, A.E. Prasanna, B.M. AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES For efficient production of doubled haploid (DH) lines in maize, maternal haploid inducer lines with high haploid induction rate (HIR) and good adaptation to the target environments is an important requirement. In this study, we present second-generation Tropically Adapted Inducer Lines (2GTAILs), developed using marker assisted selection (MAS) for qhir1, a QTL with a significant positive effect on HIR from the crosses between elite tropical maize inbreds and first generation Tropically Adapted Inducers Lines (TAILs). Evaluation of 2GTAILs for HIR and agronomic performance in the tropical and subtropical environments indicated superior performance of 2GTAILs over the TAILs for both HIR and agronomic performance, including plant vigor, delayed flowering, grain yield, and resistance to ear rots. One of the new inducers 2GTAIL006 showed an average HIR of 13.1% which is 48.9% higher than the average HIR of the TAILs. Several other 2GTAILs also showed higher HIR compared to the TAILs. While employing MAS for qhir1 QTL, we observed significant influence of the non-inducer parent on the positive effect of qhir1 QTL on HIR. The non-inducer parents that resulted in highest mean HIR in the early generation qhir1+ families also gave rise to highest numbers of candidate inducers, some of which showed transgressive segregation for HIR. The mean HIR of early generation qhir1+ families involving different non-inducer parents can potentially indicate recipient non-inducer parents that can result in progenies with high HIR. Our study also indicated that the HIR associated traits (endosperm abortion rate, embryo abortion rate, and proportion of haploid plants among the inducer plants) can be used to differentiate inducers vs. non-inducers but are not suitable for differentiating inducers with varying levels of haploid induction rates. We propose here an efficient methodology for developing haploid inducer lines combining MAS for qhir1 with HIR associated traits. 2018-10-31T19:27:39Z 2018-10-31T19:27:39Z 2018 Article 1664-462X https://hdl.handle.net/10883/19663 10.3389/fpls.2018.01527 English https://ndownloader.figshare.com/files/13303238 CIMMYT manages Intellectual Assets as International Public Goods. The user is free to download, print, store and share this work. In case you want to translate or create any other derivative work and share or distribute such translation/derivative work, please contact CIMMYT-Knowledge-Center@cgiar.org indicating the work you want to use and the kind of use you intend; CIMMYT will contact you with the suitable license for that purpose. Open Access PDF Switzerland Frontiers art. 1527 9 Frontiers in Plant Science |
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AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES |
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AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES Chaikam, V. Nair, S.K. Martinez, L. Lopez, L.A. Utz, H.F. Melchinger, A.E. Prasanna, B.M. Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
description |
For efficient production of doubled haploid (DH) lines in maize, maternal haploid inducer lines with high haploid induction rate (HIR) and good adaptation to the target environments is an important requirement. In this study, we present second-generation Tropically Adapted Inducer Lines (2GTAILs), developed using marker assisted selection (MAS) for qhir1, a QTL with a significant positive effect on HIR from the crosses between elite tropical maize inbreds and first generation Tropically Adapted Inducers Lines (TAILs). Evaluation of 2GTAILs for HIR and agronomic performance in the tropical and subtropical environments indicated superior performance of 2GTAILs over the TAILs for both HIR and agronomic performance, including plant vigor, delayed flowering, grain yield, and resistance to ear rots. One of the new inducers 2GTAIL006 showed an average HIR of 13.1% which is 48.9% higher than the average HIR of the TAILs. Several other 2GTAILs also showed higher HIR compared to the TAILs. While employing MAS for qhir1 QTL, we observed significant influence of the non-inducer parent on the positive effect of qhir1 QTL on HIR. The non-inducer parents that resulted in highest mean HIR in the early generation qhir1+ families also gave rise to highest numbers of candidate inducers, some of which showed transgressive segregation for HIR. The mean HIR of early generation qhir1+ families involving different non-inducer parents can potentially indicate recipient non-inducer parents that can result in progenies with high HIR. Our study also indicated that the HIR associated traits (endosperm abortion rate, embryo abortion rate, and proportion of haploid plants among the inducer plants) can be used to differentiate inducers vs. non-inducers but are not suitable for differentiating inducers with varying levels of haploid induction rates. We propose here an efficient methodology for developing haploid inducer lines combining MAS for qhir1 with HIR associated traits. |
format |
Article |
topic_facet |
AGRICULTURAL SCIENCES AND BIOTECHNOLOGY Doubled Haploid Maternal Haploid Inducers Phenotyping MAIZE HAPLOIDY ARTIFICIAL SELECTION MARKER-ASSISTED SELECTION PHENOTYPES |
author |
Chaikam, V. Nair, S.K. Martinez, L. Lopez, L.A. Utz, H.F. Melchinger, A.E. Prasanna, B.M. |
author_facet |
Chaikam, V. Nair, S.K. Martinez, L. Lopez, L.A. Utz, H.F. Melchinger, A.E. Prasanna, B.M. |
author_sort |
Chaikam, V. |
title |
Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
title_short |
Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
title_full |
Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
title_fullStr |
Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
title_full_unstemmed |
Marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
title_sort |
marker-assisted breeding of improved maternal haploid inducers in maize for the tropical/subtropical regions |
publisher |
Frontiers |
publishDate |
2018 |
url |
https://hdl.handle.net/10883/19663 |
work_keys_str_mv |
AT chaikamv markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT nairsk markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT martinezl markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT lopezla markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT utzhf markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT melchingerae markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions AT prasannabm markerassistedbreedingofimprovedmaternalhaploidinducersinmaizeforthetropicalsubtropicalregions |
_version_ |
1771642099191513088 |