A soil-binding polysaccharide complex released from root hairs functions in rhizosheath formation
Galloway, A. F.; Akhtar, J.; Burak, E.; Marcus, S. E.; Field, K.; Dodd, I. C.; Knox, J. P.
Show abstract
To elucidate factors involved in rhizosheath formation, wild type (WT) barley (Hordeum vulgare L. cv. Pallas) and a root hairless mutant, bald root barley (brb), were investigated with a combination of physiological, biochemical and immunochemical assays. When grown in soil, WT barley roots bound [~]5-fold more soil than brb per unit root length. High molecular weight (HMW) polysaccharide exudates of brb roots had less soil-binding capacity than those of WT root exudates. Carbohydrate and glycan monoclonal antibody analyses of HMW polysaccharide exudates indicated differing glycan profiles. Relative to WT plants, root exudates of brb had reduced signals for arabinogalactan-protein (AGP), extensin and heteroxylan epitopes than brb. In contrast, the brb root exudate contained [~]25-fold more detectable xyloglucan epitope relative to WT. Epitope detection chromatography indicated that the increased detection of xyloglucan in brb exudates was due to enhanced abundance of a neutral polymer. Exudate preparations from brb had decreased amounts of an acidic form of xyloglucan associated with root-hair located glycoprotein and heteroxylan epitopes and with soil-binding properties. Therefore, in addition to physically structuring soil particles, root hairs facilitate rhizosheath formation by releasing a soil-binding polysaccharide complex. One sentence summaryThe root exudate of a root hairless mutant of barley, relative to wild type, has an altered pattern of polysaccharide epitopes and lesser amounts of an acidic soil-binding polysaccharide complex.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Early root-root interactions weaken foliar defense responses against Septoria tritici blotch in a durum wheat varietal mixture 93%
- The role of CLV signalling in the negative regulation of mycorrhizal colonisation and nitrogen response of tomato 92%
- Iron retention coupled with trade-offs in localized symbiotic effects confers tolerance to combined iron deficiency and drought in soybean 92%
Similar papers in this journal
- Inoculation with the mycorrhizal fungus Rhizophagus irregularis modulates the relationship between root growth and nutrient content in maize (Zea mays L.) 92%
- Sorghum Root Epigenetic Landscape During Limiting Phosphorus Conditions 92%
- Nodal root diameter and node number in maize (Zea mays L.) interact to influence plant growth under nitrogen stress 92%
Similar papers in this journal
- Identification of an isoflavonoid transporter required for the nodule establishment of the Rhizobium-Fabaceae symbiotic interaction 93%
- Evidence that common arbuscular mycorrhizal network alleviates phosphate shortage in interconnected walnut sapling and maize plants 92%
- A bench-top dark-root device built with LEGO bricks enables a non-invasive plant root development analysis in soil conditions mirroring nature 92%
Similar papers in this journal
- GmVTL1 is an iron transporter on the symbiosome membrane of soybean with an important role in nitrogen fixation. 92%
- Root growth responses to mechanical impedance are regulated by a network of ROS, ethylene and auxin signalling in Arabidopsis. 92%
- Functional phenomics and genetics of the root economics space in winter wheat using high-throughput phenotyping of respiration and architecture 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.