Tolerance of Hordeum marinum accessions to O2 deficiency, salinity and these stresses combined.
Explore this paper's citation graph
Summary
Stagnant treatment plus salinity reduced growth more than salinity alone, or stagnant alone, but some accessions of H. marinum were still relatively tolerant of these combined stresses, maintaining Na(+) and Cl(-) 'exclusion' even in an O(2)-deficient, saline rooting medium.
- Type
- article
- Published
- 2009-01-01
- Cited by
- 69
- References
- 54
- Access
- Open access
- OpenAlex
- https://openalex.org/W18701600
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:16050069
Keywords
Computer science
References
- Genes and salt tolerance: bringing them together.
- Handbook of plant and crop stress
- Polarographic oxygen electrodes and their use in plant aeration studies
- Control of water uptake by rice (Oryza sativa L.): role of the outer part of the root
- Long-distance transport of gases in plants: a perspective on internal aeration and radial oxygen loss from roots
- Protein synthesis in halophytes: The influence of potassium, sodium and magnesium in vitro
- The development of waterlogging damage in wheat seedlings (Triticum aestivum L.)
- Improving salt tolerance of wheat and barley: future prospects
- Potassium and sodium relations in salinised barley tissues as a basis of differential salt tolerance.
- Na+ exclusion and salt resistance of wheat (Triticum aestivum) in saline-waterlogged conditions are improved by the development of adventitious nodal roots and cortical root aerenchyma
- The Use of Agar Nutrient Solution to Simulate Lack of Convection in Waterlogged Soils
- Visual Quantification of Wheat Development1
- Spatial patterns of radial oxygen loss and nitrate net flux along adventitious roots of rice raised in aerated or stagnant solution.
- K + Nutrition and Na + Toxicity: The Basis of Cellular K + /Na + Ratios
- Apoplastic barriers to radial oxygen loss and solute penetration: a chemical and functional comparison of the exodermis of two wetland species, Phragmites australis and Glyceria maxima.
- Diversity in root aeration traits associated with waterlogging tolerance in the genus Hordeum.
- Combined effect of salinity and hypoxia in wheat (Triticum aestivum L.) and wheat-Thinopyrum amphiploids
- Aerenchyma formation and associated oxygen movement in seminal and nodal roots of wheat.
- Review of prospects for germplasm improvement for waterlogging tolerance in wheat, barley and oats
- Enhancement of the salt tolerance of Triticum turgidum L. by the Kna1 locus transferred from the Triticum aestivum L. chromosome 4D by homoeologous recombination
Cited by
- Transfer of the barrier to radial oxygen loss in roots of Hordeum marinum to wheat (Triticum aestivum): evaluation of four H. marinum-wheat amphiploids.
- A new major-effect QTL for waterlogging tolerance in wild barley (H. spontaneum)
- Waterlogging tolerance in barley is associated with faster aerenchyma formation in adventitious roots
- Quantitative Trait Loci for Salinity Tolerance Identified under Drained and Waterlogged Conditions and Their Association with Flowering Time in Barley (Hordeum vulgare. L)
- Growth, Water Status, and Nutrient Accumulation of Seedlings of Tamarindus indica Linn. in Response to Soil Salinity
- Effects of organic acids on the formation of the barrier to radial oxygen loss in roots of Hordeum marinum.
- Substitution of Hordeummarinum ssp. gussoneanum chromosome 7HL into wheat homoeologous group-7
- Hordeum marinum-wheat amphiploids maintain higher leaf K+:Na+ and suffer less leaf injury than wheat parents in saline conditions
- Growth responses of Melilotus siculus accessions to combined salinity and root-zone hypoxia are correlated with differences in tissue ion concentrations and not differences in root aeration
- Selection and characterization of wheat genotypes for saline soils prone to water‐logging
- Improvement of salt and waterlogging tolerance in wheat: comparative physiology of Hordeum marinum-Triticum aestivum amphiploids with their H. marinum and wheat parents.
- Roles of root porosity, radial oxygen loss, Fe plaque formation on nutrient removal and tolerance of wetland plants to domestic wastewater.
- Responses of barley to hypoxia and salinity during seed germination, nutrient uptake, and early plant growth in solution culture
- Predictions of watertable depth and soil salinity levels for land capability assessment using site indicator species
- The role of mitochondrial respiration in salinity tolerance.
- Evolution and mechanisms of plant tolerance to flooding stress.
- Growth and yield potential of Echinochloa pyramidalis (Lam.) Hitchc Chase: A forage plant used in vertical-flow constructed wetlands in Cameroon
- Oxygen deficiency and salinity affect cell-specific ion concentrations in adventitious roots of barley (Hordeum vulgare).
- Growth, water status and nutrient accumulation of seedlings of Jatropha curcas L. (Euphorbiaceae) in response to soil salinity
- Submergence tolerance in Hordeum marinum: dissolved CO2 determines underwater photosynthesis and growth