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* Blast disease (causal agent Magnaporthe oryzae) has presented as a new and serious field disease of wheat in South America. Here, we investigated the responses of wheat to both adapted and nonadapted isolates of the blast fungus Magnaporthe, examining cellular defence and transcriptional changes. * Resistance towards the nonadapted isolate was associated with the formation of appositions, here termed halos, beneath attempted Magnaporthe grisea penetration sites that wheat-adapted, M. oryzae isolates were able to breach. * Transcriptome analysis indicated extensive transcriptional reprogramming following inoculation with both wheat-adapted and nonadapted isolates of Magnaporthe. Functional annotation of many of the differentially expressed transcripts classified into the categories: cell rescue and defence, plant metabolism, cellular transport and regulation of transcription (although a significant number of transcripts remain unclassified). * Defence-related transcripts induced in common by adapted and nonadapted isolates were differentially regulated in response to M. oryzae and M. grisea isolates over time. Differential expression of genes involved in cellular transport indicated the importance of this process in plant defence. Functional characterisation of these transcripts and their role in defence may eventually lead to the identification of broad-spectrum resistance mechanisms in wheat towards Magnaporthe.
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http://dx.doi.org/10.1111/j.1469-8137.2009.02970.x | DOI Listing |
Astrobiology
September 2025
Scripps Institution of Oceanography, University of California San Diego, La Jolla, California, USA.
Concentrated magnesium chloride brines are extreme environments that are inhospitable to life on Earth. The ionic strength of these brines significantly depresses water activity and concomitantly exerts significant chaotropic stress. Although these brines are largely considered sterile, the well-known preservative effects of magnesium chloride on certain biomolecules, such as DNA, confound life detection approaches and efforts to constrain precisely the habitable window of life on Earth.
View Article and Find Full Text PDFPlant Cell Environ
September 2025
Guangxi Key Laboratory of Agro-environment and Agro-product Safety, College of Agriculture, Guangxi University, Nanning, China.
Bacterial fruit blotch (BFB), caused by Paracidovorax citrulli (Pc), threatens global watermelon production, yet genetic resistance remains scarce. This study investigates the potential of non-adapted interaction triggered by Paracidovorax avenae (Pa), a maize pathogen, to combat BFB in watermelon. We demonstrate that Pa strain ATCC 19860 elicits a hypersensitive response (HR) in watermelon via its type III secretion system (T3SS), inducing effector-triggered immunity (ETI).
View Article and Find Full Text PDFISME J
August 2025
School of Oceanography & Astrobiology Program, University of Washington, Seattle, WA, USA.
Despite growing evidence for the role of DNA methylation in bacterial acclimation to environmental stress, this epigenetic mechanism remains unexplored in sea-ice microbial communities known to tolerate multiple stressors. This study presents a first analysis of DNA methylation patterns in bacterial communities and associated viruses across the vertical thickness of sea ice. Using a novel stepped-sackhole method, we collected sea-ice brines from distinct horizons of an Arctic ice floe, capturing microbial communities that had been exposed to different environmental conditions.
View Article and Find Full Text PDFAdapt Phys Activ Q
August 2025
University of Georgia, Athens, GA, USA.
Physical activity is vital for health, yet individuals with visual impairments face barriers in conventional fitness settings. This study aimed to understand the perceptions and lived experiences of exercisers with visual impairments (EVI) who participated in an adapted group exercise program (AGEP) and to identify the perceived barriers and facilitators to exercise participation among EVI in both AGEP and non-AGEP settings. Thematic analysis of focus-group interviews with nine EVI identified four themes; therein, participants described meaningful facilitators in AGEP (i.
View Article and Find Full Text PDFDev Cell
August 2025
State Key Laboratory of Plant Trait Design, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai 200032, China. Electronic address:
Most invading fungi can be recognized by the plant immune system and trigger host defenses, but adapted pathogens can cause susceptibility. Multicellular plants might use cell-differentiated strategies to restrict non-adapted fungi invasion and to yield adapted fungi colonization. Here, we employed single-cell RNA sequencing (scRNA-seq) to identify the responses of wheat coleoptiles to the adapted Fusarium graminearum (Fgr) and the non-adapted Fusarium oxysporum f.
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