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PMID: 23442150 Published · epublish English Journal Article Research Support, Non-U.S. Gov't

qDTY12.1: a locus with a consistent effect on grain yield under drought in rice.

BMC genetics ·Vol. 14 ·2013-02-26 ·Pages 12

Mishra KK, Vikram P, Yadaw RB, Swamy BP, Dixit S, Cruz MT, Maturan P, Marker S, Kumar A

Abstract

Selection for grain yield under drought is an efficient criterion for improving the drought tolerance of rice. Recently, some drought-tolerant rice varieties have been developed using this selection criterion and successfully released for cultivation in drought-prone target environments. The process can be made more efficient and rapid through marker-assisted breeding, a well-known fast-track approach in crop improvement. QTLs have been identified for grain yield under drought with large effects against drought-susceptible varieties. Most of the identified QTLs show large QTL × environment or QTL × genetic background interactions. The development of mapping populations in the background of popular high-yielding varieties, screening across environments, including the target environments, and the identification of QTLs with a consistent effect across environments can be a suitable alternative marker-assisted breeding strategy. An IR74371-46-1-1 × Sabitri backcross inbred line population was screened for reproductive-stage drought stress at the International Rice Research Institute, Philippines, and Regional Agricultural Research Station, Nepalgunj, Nepal, in the dry and wet seasons of 2011, respectively. A bulk segregant analysis approach was used to identify markers associated with high grain yield under drought. A QTL, qDTY12.1, significantly associated with grain yield under reproductive-stage drought stress was identified on chromosome 12 with a consistent effect in two environments: IRRI, Philippines, and RARS, Nepalgunj, Nepal. This QTL explained phenotypic variance of 23.8% and contributed an additive effect of 45.3% for grain yield under drought. The positive QTL allele for qDTY12.1 was contributed by tolerant parent IR74371-46-1-1. In this study, qDTY12.1 showed a consistent effect across environments for high grain yield under lowland reproductive-stage drought stress in the background of popular high-yielding but drought-susceptible recipient variety Sabitri. qDTY12.1 was also reported previously [Crop Sci 47:507-516, 2007] to increase grain yield under upland reproductive-stage drought stress situations. qDTY12.1 is the only QTL reported so far in rice to have shown a large effect against multiple recipient genetic backgrounds as well as under highly diverse upland and lowland rice ecosystems. qDTY12.1 can be successfully introgressed to improve grain yield under drought of popular high-yielding but drought-susceptible lowland as well as upland adapted varieties following marker-assisted breeding.

MeSH Terms
Asia, Western Droughts Ecosystem Genes, Plant Genetics, Population Oryza/genetics,physiology Phenotype Quantitative Trait Loci
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Mishra Krishna Kumar
International Rice Research Institute (IRRI), DAPO Box 7777, Metro Manila, Philippines.
Vikram Prashant
Yadaw Ram Baran
Swamy B P Mallikarjuna
Dixit Shalabh
Cruz Ma Teresa Sta
Maturan Paul
Marker Shailesh
Kumar Arvind
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Article Info
Journal
BMC genetics
Abbr.
BMC Genet
ISSN
1471-2156
Published
2013-02-26
Epub
2013-00-26
Pages
12
Language
English
Region
England
NLM ID
100966978
PMCID
PMC3616849
Subset
IM
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