Ejemplares similares: Response to two cycles of divergent selection for grain yield under drought stress in four rice breeding populations
- Breeding for drought tolerance: direct selection for yield, response to selection and use of drought-tolerant donors in upland and lowland-adapted populations
- Response to direct selection for grain yield under drought stress in rice
- Genetic loci responding to two cycles of divergent selection for grain yield under drought stress in a rice breeding population
- A large-effect QTL for rice grain yield under upland drought stress on chromosome 1
- Developing aerobic rice cultivars for water-short irrigated and drought-prone rainfed areas in the tropics
- Simultaneously improving yield under drought stress and non-stress conditions: a case study of rice (Oryza sativa L.)
Autor: Venuprasad, R.
- Germplasm acquisition and distribution by CGIAR Genebanks
- Rice near-isogenic-lines (NILs) contrasting for grain yield under lowland drought stress
- A QTL for rice grain yield in aerobic environments with large effects in three genetic backgrounds
- Genetic analysis of rainfed lowland rice drought tolerance under naturally-occurring stress in eastern India: heritability and QTL effects
- Identification of QTL for growth- and grain yield-related traits in rice across nine locations of Asia
- A large-effect QTL for rice grain yield under upland drought stress on chromosome 1
Autor: Sta. Cruz, Pompe C.
- Seed longevity phenotyping: recommendations on research methodology
- Deep sowing of dry direct-seeded rice: cultivar differences in seedling establishment and grain yield
- Fertilizer inputs, nutrient balance, and soil nutrient-supplying power in intensive, irrigated rice systems .1. Potassium uptake and k balance
- Use of NDVI for indirect selection of high yield in tropical rice breeding
- Clonal performance of perennial Oryza sativa/O. rufipogon selections and their combining ability with O. sativa cultivars for survival, stolon production and yield
- Molecular dissection of connected rice populations revealed important genomic regions for agronomic and biofortification traits