Early transcriptomic response of Alnus glutinosa to Frankia alni symbiont, an upregulated nsLTP (non-specific Lipid Transfer Protein) is implicated in early and late stages of symbiosis
Gasser, M.; Alloisio, N.; Fournier, P.; Balmand, S.; Kharrat, O.; Tulumello, J.; Heddi, A.; Da Silva, P.; Normand, P.; Boubakri, H.; Pujic, P.
Show abstract
Alnus glutinosa response to Frankia alni is driven by several sequential physiological modifications that include calcium spiking, root hair deformation, penetration, induction of primordium, formation and growth of nodule. Here, we have conducted a transcriptomic study to analyse plant responses to Frankia alni at early stages of symbiosis establishment. Forty-two genes were significantly activated by either with a Frankia culture supernatant or with living cells separated from the roots by a dialysis membrane permitted to identify plant genes which expression changes upon early contact with Frankia. Most of these genes encode biological processes, including oxidative stress and response to stimuli. The most upregulated gene is the non-specific lipid transfer protein (nsLTP) encoding gene with a fold change of 141. Physiological experiments showed that nsLTP increases Frankia nitrogen fixation at sub-lethal concentration. Immunohistochemistry experiments conducted at an early infection stage indicated that nsLTP protein is localized at the deformed root hair region after Frankia inoculation and later in nodules, precisely around bacterial vesicles. Taken together, these results suggest that nsLTP acts at early and late stages of symbiosis, probably by increasing nitrogen uptake by Frankia.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Primed responses to damage signals mediate mycorrhiza-induced resistance in tomato plants 96%
- Shoot-root interaction in control of camalexin exudation in Arabidopsis 96%
- Detailed characterization of the UMAMITs provides insight into their evolution, functional properties as amino acid transporters and role in the plant 95%
Similar papers in this journal
- Identification of an isoflavonoid transporter required for the nodule establishment of the Rhizobium-Fabaceae symbiotic interaction 97%
- Evidence that common arbuscular mycorrhizal network alleviates phosphate shortage in interconnected walnut sapling and maize plants 95%
- The genomic impact of mycoheterotrophy: targeted gene losses but extensive expression reprogramming. 95%
Similar papers in this journal
- The ectomycorrhizal basidiomycete Laccaria bicolor releases a GH28 polygalacturonase that plays a key role in symbiosis establishment 96%
- A newly-evolved chimeric lysin motif receptor-like kinase in Medicago truncatula spp. tricycla R108 extends its Rhizobia symbiotic partnership 96%
- GmVTL1 is an iron transporter on the symbiosome membrane of soybean with an important role in nitrogen fixation. 96%
Similar papers in this journal
- Ammonium regulates the development and architecture of pine roots through hormonal crosstalk and differential expression of transcription factors in the apex 96%
- High-resolution metabolite imaging: luteolinidin accumulates at the host-cyanobiont interface during cold-acclimation in Azolla symbioses 96%
- The volatile cedrene from plant beneficial Trichoderma guizhouense modulates Arabidopsis root development through auxin transport and signaling 95%
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.