Relationships between Transpiration Efficiency and Carbon Isotope Discrimination in Chickpea (C. arietinum L)
Explore this paper's citation graph
- Type
- article
- Published
- 2006-01-01
- Cited by
- 24
- References
- 4
- Access
- Open access
- OpenAlex
- https://openalex.org/W77941244
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:59143374
Keywords
Transpiration, Agronomy, Water-use efficiency, Arid, Biomass (ecology)
References
- Grain yield, harvest index, and water use of wheat.
- Genotypic variation in transpiration efficiency, carbon-isotype discrimination and carbon allocation during early growth in sunflower.
- On the Relationship Between Carbon Isotope Discrimination and the Intercellular Carbon Dioxide Concentration in Leaves
- Adaptation of grain legumes (pulses) to water-limited environments
Cited by
- Characterization of drought and adaptation of cool season food legumes to water-limiting environments
- Mini core germplasm collections for infusing genetic diversity in plant breeding programs
- Improving Water Use Efficiency of Wheat Crop Varieties in the North China Plain: Review and Analysis
- Variation in carbon isotope discrimination and its relationship with harvest index in the reference collection of chickpea germplasm.
- Partitioning coefficient—A trait that contributes to drought tolerance in chickpea
- Association of mid-reproductive stage canopy temperature depression with the molecular markers and grain yields of chickpea (Cicer arietinum L.) germplasm under terminal drought
- Mini Core Collection as a Resource to Identify New Sources of Variation
- Relationships Between Transpiration Efficiency and Its Surrogate Traits in the rd29A:DREB1A Transgenic Lines of Groundnut
- Traits of relevance to improve yield under terminal drought stress in chickpea (C. arietinum L.)
- Genomic tools and germplasm diversity for chickpea improvement
- PCR based identification of the virus causing yellow mosaic disease in wild Vigna accessions
- Intraspecific variability of carbon isotope discrimination and its correlation with grain yield in safflower: prospects for selection in a Mediterranean climate
- Quantitative analysis of induced phenotypic diversity in chickpea using physical and chemical mutagenesis
- The effects of elevated CO 2 (0.5%) on chloroplasts in the tetraploid black locust (Robinia pseudoacacia L.)
- Field measurements of bare soil evaporation and crop transpiration, and transpiration efficiency, for rainfed grain crops in Australia – A review
- Effect of salinity stress on phenotypic plasticity, yield stability, and signature of stable isotopes of carbon and nitrogen in safflower
- Genome-wide association mapping of leaf mass traits in a Vietnamese rice landrace panel
- Evaluation of Kabuli Chickpea Genotypes for Tropical Adaptation in Northern Australia
- Mungbean Response to Regulated Deficit Irrigation: A Trade‐Off Between Productivity and Adaptability?
- Chickpea genetic resources: collection, conservation, characterization, and maintenance
Related papers
- Genetic variability of drought-avoidance root traits in the mini-core germplasm collection of chickpea (Cicer arietinum L.).
- A conservative pattern of water use, rather than deep or profuse rooting, is critical for the terminal drought tolerance of chickpea
- Chickpea genotypes contrasting for seed yield under terminal drought stress in the field differ for traits related to the control of water use.
- Sources of tolerance to terminal drought in the chickpea (Cicer arietinum L.) minicore germplasm
- Improving Intrinsic Water-Use Efficiency and Crop Yield.
- Genetic structure, diversity, and allelic richness in composite collection and reference set in chickpea (Cicer arietinum L.)
- On the Relationship Between Carbon Isotope Discrimination and the Intercellular Carbon Dioxide Concentration in Leaves
- Consistent variation across soil types in salinity resistance of a diverse range of chickpea (Cicer arietinum L.) genotypes
- DREB1A allows for more water uptake in groundnut by a large modification in the root/shoot ratio under water deficit
- Genetic diversity of transpiration efficiency in sorghum