Similar Items: Non-destructive phenotyping to identify brachiaria hybrids tolerant to waterlogging stress under field conditions
- Waterlogging-induced changes in root architecture of germplasm accessions of the tropical forage grass Brachiaria humidicola
- Nile grass (Acroceras macrum) for Argentinean waterlogged soils
- Advances in improving tolerance to waterlogging in Brachiaria grasses
- Critical Periods for Waterlogging Effects on Yield and Grain Components in Sunflower (Helianthus annuus), Soybean (Glycine max) and Sorghum (Sorghum bicolor): A Comparative Study
- Waterlogging response in BH_22 population of Urochloa humidicola
- Análisis exploratorio del efecto de distintos períodos de anegamiento sobre germoplasma de agropiro alargado = Exploratory analysis of tall wheatgrass germplasm growing under waterlogged conditions
Author: Jiménez Serna, Juan de la Cruz
- Morpho-anatomical traits of root and non-enzymatic antioxidant system of leaf tissue contribute to waterlogging tolerance in Brachiaria grasses
- Salinity tolerance in chickpea is associated with the ability to ‘exclude’ Na from leaf mesophyll cells
- Contrasting strategies to cope with drought conditions by two tropical forage C4 grasses
- Sustainability of crop rotation and ley pasture systems on the acid-soil savannas of South America
- Influence of fungal endophyte on plant water status, non-structural carbohydrate content and biomass partitioning in Brachiaria grasses grown under drought stress
- Fungal endophyte association with Brachiaria grasses and its influence on plant water status, total non-structural carbohydrates and biomass production under drought stress
Author: Cardoso Arango, Juan Andrés
- Creating a NIRS (Near Infrared Spectroscopy) database for tropical forages
- GxE interaction in interspecific Urochloa hybrids using factor analytic models
- Climate-smart Brachiaria grasses for improving livestock production in East Africa
- Evaluation of Brachiaria humidicola germplasm accessions for tolerance to waterlogging
- Biochar but not earthworms enhances rice growth through increased protein turnover
- Improving phosphorus acquisition efficiency through modification of root growth responses to phosphate starvation in legumes