Host auxin machinery is important in mediating root architecture changes induced by Pseudomonas fluorescens GM30 and Serendipita indica
Matthiadis, A.; Sukumar, P.; DeLeon, A.; Pelletier, D.; Labbe, J.; Tuskan, G. A.; Kalluri, U. C.
Show abstract
Auxin is a key phytohormone that is integral to plant developmental processes including those underlying root initiation, elongation, and branching. Beneficial microbes have been shown to have an impact on root development, potentially mediated through auxin. In this study, we explore the role of host auxin signaling and transport components in mediating the root growth promoting effects of beneficial microbes. Towards this end, we undertook co-culture studies of Arabidopsis thaliana plants with microbes previously reported to promote lateral root proliferation and produce auxin. Two types of beneficial microbes were included in the present study; a plant growth promoting bacterial species of interest, Pseudomonas fluorescens GM30, and a well-studied plant growth promoting fungal species, Serendipita indica (Piriformospora indica). Following co-culture, lateral root production was found restored in auxin transport inhibitor-treated plants, suggesting involvement of microbe and/or microbially-produced auxin in altering plant auxin levels. In order to clarify the role of host auxin signaling and transport pathways in mediating interactions with bacterial and fungal species, we employed a suite of auxin genetic mutants as hosts in co-culture screens. Our result show that the transport proteins PIN2, PIN3, and PIN7 and the signaling protein ARF19, are required for mediating root architecture effects by the bacterial and/or fungal species. Mutants corresponding to these proteins did not significantly respond to co-culture treatment and did not show increases in lateral root production and lateral root density. These results implicate the importance of host auxin signaling in both bacterial and fungal induced changes in root architecture and serve as a driver for future research on understanding the role of auxin-dependent and auxin-independent pathways in mediating plant-microbe interactions in economically important crop species.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
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.) 93%
- Broad-scale phenotyping in Arabidopsis reveals varied involvement of RNA interference across diverse plant-microbe interactions 93%
- MDF regulates a network of auxin-dependent and -independent pathways of adventitious root regeneration in Arabidopsis. 92%
Similar papers in this journal
- Ralstonia solanacearum depends on catabolism of myo-inositol, sucrose, and trehalose for virulence in an infection stage-dependent manner 95%
- A promiscuity locus confers Lotus burttii nodulation with rhizobia from five different genera 94%
- Differential virulence contributions of the efflux transporter MexAB-OprM in Pseudomonas syringae infecting a variety of host plants 94%
Similar papers in this journal
- Evidence that common arbuscular mycorrhizal network alleviates phosphate shortage in interconnected walnut sapling and maize plants 94%
- Tml1 And Tml2 Synergistically Regulate Nodulation And Affect Arbuscular Mycorrhiza In Medicago Truncatula 94%
- Colonization by orchid mycorrhizal fungi primes induced systemic resistance against a necrotrophic pathogen 94%
Similar papers in this journal
- Characterization of immunity-inducing rhizobacteria highlights diversity in plant-microbe interactions 97%
- Engineering the citrus phyllosphere microbiome for enhanced disease resistance to bacterial canker 93%
- Impact of soil salinity on the cowpea nodule-microbiome and the isolation of halotolerant PGPR strains to promote plant growth under salinity stress 93%
Similar papers in this journal
- Evidence for the plant recruitment of beneficial microbes to suppress soil-borne pathogen 94%
- A newly-evolved chimeric lysin motif receptor-like kinase in Medicago truncatula spp. tricycla R108 extends its Rhizobia symbiotic partnership 93%
- The ectomycorrhizal basidiomycete Laccaria bicolor releases a GH28 polygalacturonase that plays a key role in symbiosis establishment 93%
"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.