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MLO Differentially Regulates Barley Root Colonization by Beneficial Endophytic and Mycorrhizal Fungi
Magdalena Hilbert1, Mara Novero2, Hanna Rovenich3
1Department of Organismic Interactions, Max Planck Institute of Terrestrial Microbiology, Marburg, Germany.
Abstract:
Loss-of-function alleles of MLO (Mildew Resistance Locus O) confer broad-spectrum resistance to foliar infections by powdery mildew pathogens. Like pathogens, microbes that establish mutually beneficial relationships with their plant hosts, trigger the induction of some defense responses. Initially, barley colonization by the root endophyte Serendipita indica (syn. Piriformospora indica) is associated with enhanced defense gene expression and the formation of papillae at sites of hyphal penetration attempts. This phenotype is reminiscent of mlo-conditioned immunity in barley leaf tissue and raises the question whether MLO plays a regulatory role in the establishment of beneficial interactions. Here we show that S. indica colonization was significantly reduced in plants carrying mlo mutations compared to wild type controls. The reduction in fungal biomass was associated with the enhanced formation of papillae. Moreover, epidermal cells of S. indica-treated mlo plants displayed an early accumulation of iron in the epidermal layer suggesting increased basal defense activation in the barley mutant background. Correspondingly, the induction of host cell death during later colonization stages was impaired in mlo colonized plants, highlighting the importance of the early biotrophic growth phase for S. indica root colonization. In contrast, the arbuscular mycorrhizal fungus Funneliformis mosseae displayed a similar colonization morphology on mutant and wild type plants. However, the frequency of mycorrhization and number of arbuscules was higher in mlo-5 mutants. These findings suggest that MLO differentially regulates root colonization by endophytic and AM fungi.
Insights
Mildew Resistance Locus O (MLO) mutations reduce beneficial root endophyte colonization but enhance arbuscular mycorrhizal fungi interactions in barley. MLO plays a differential role in plant-microbe root colonization.
Area of Science:
- Plant Pathology
- Plant-Microbe Interactions
- Molecular Genetics
Background:
- Loss-of-function alleles of Mildew Resistance Locus O (MLO) confer resistance to powdery mildew.
- Beneficial microbes can also induce plant defense responses, similar to pathogens.
- The role of MLO in beneficial root endophyte interactions is unclear.
Purpose of the Study:
- To investigate the role of MLO in barley root colonization by the endophyte Serendipita indica.
- To determine if MLO regulates interactions with arbuscular mycorrhizal fungi (AMF).
Main Methods:
- Comparative analysis of S. indica and Funneliformis mosseae colonization in wild-type and mlo mutant barley.
- Assessment of fungal biomass, papillae formation, and host cell death.
- Iron accumulation analysis in epidermal cells.
Main Results:
- S. indica colonization was significantly reduced in mlo mutants, associated with enhanced papillae formation and iron accumulation.
- Host cell death induction was impaired in mlo mutants during later colonization stages.
- AMF colonization morphology was similar, but mycorrhization frequency and arbuscule number were higher in mlo-5 mutants.
Conclusions:
- MLO plays a regulatory role in the establishment of beneficial S. indica root colonization.
- MLO differentially regulates colonization by endophytic and AM fungi.
- MLO's function extends beyond pathogen resistance to modulating beneficial root-associated microbial interactions.
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