Non-parent of Origin Expression of Numerous Effector Genes Indicates a Role of Gene Regulation in Host Adaption of the Hybrid Triticale Powdery Mildew Pathogen
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Summary
RNA sequencing is used to study the molecular basis of host adaptation in B. triticale mildew and identified a core set of putative effector genes that are highly expressed in all formae speciales, suggesting that effectors play an important role in host adaptation that is mechanistically based on Avr-Resistance gene-Svr interactions.
- Type
- article
- Published
- 2018-01-30
- Cited by
- 41
- References
- 67
- Access
- Open access
- OpenAlex
- https://openalex.org/W2792078902
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3355267
Keywords
Triticale, Powdery mildew, Blumeria graminis, Biology, Effector
References
- RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies
- Genetic and molecular characterization of a locus involved in avirulence of Blumeria graminis f. sp. tritici on wheat Pm3 resistance alleles.
- Co-evolutionary interactions between host resistance and pathogen effector genes in flax rust disease
- Formae speciales of cereal powdery mildew: close or distant relatives?
- Maximum-likelihood estimation of phylogeny from DNA sequences when substitution rates differ over sites.
- Evidence on wheat for gene-for-gene relationship between formae speciales of Erysiphe graminis and genera of gramineous plants
- Host-induced gene silencing in barley powdery mildew reveals a class of ribonuclease-like effectors.
- Heterochromatin-like regions as ecological niches for avirulence genes in the Leptosphaeria maculans genome: map-based cloning of AvrLm6.
- The wheat powdery mildew genome shows the unique evolution of an obligate biotroph
- Transcriptome and Metabolite Profiling of the Infection Cycle of Zymoseptoria tritici on Wheat Reveals a Biphasic Interaction with Plant Immunity Involving Differential Pathogen Chromosomal Contributions and a Variation on the Hemibiotrophic Lifestyle Definition1[OPEN]
- The Majority of the Type III Effector Inventory of Pseudomonas syringae pv. tomato DC3000 Can Suppress Plant Immunity
- Gene-for-gene interactions between the rye mildew fungus and wheat cultivars.
- Obligate biotrophy features unraveled by the genomic analysis of rust fungi
- Crop losses to pests
- The Ustilago maydis Effector Pep1 Suppresses Plant Immunity by Inhibition of Host Peroxidase Activity
- Strategies for Wheat Stripe Rust Pathogenicity Identified by Transcriptome Sequencing
- Direct protein interaction underlies gene-for-gene specificity and coevolution of the flax resistance genes and flax rust avirulence genes.
- Conserved Fungal LysM Effector Ecp6 Prevents Chitin-Triggered Immunity in Plants
- Impact of powdery mildew on the yield of soft white spring wheat cultivars
- Oomycete RXLR effectors: delivery, functional redundancy and durable disease resistance.
Cited by
- Cereal powdery mildew effectors: a complex toolbox for an obligate pathogen.
- A chromosome‐scale genome assembly reveals a highly dynamic effector repertoire of wheat powdery mildew
- Plant nonhost resistance: paradigms and new environments.
- The AvrPm3-Pm3 effector-NLR interactions control both race-specific resistance and host-specificity of cereal mildews on wheat
- Rapid evolution in plant-microbe interactions - a molecular genomics perspective.
- Domestication of High-Copy Transposons Underlays the Wheat Small RNA Response to an Obligate Pathogen
- Role of RNA-interacting proteins in modulating plant-microbe interactions.
- Cross-Kingdom RNAi of Pathogen Effectors Leads to Quantitative Adult Plant Resistance in Wheat
- Single residues in the LRR domain of the wheat PM3A immune receptor can control the strength and the spectrum of the immune response.
- A highly differentiated region of wheat chromosome 7AL encodes a Pm1a immune receptor that recognizes its corresponding AvrPm1a effector from Blumeria graminis
- A membrane-bound ankyrin repeat protein confers race-specific leaf rust disease resistance in wheat
- Homogenization of sub-genome secretome gene expression patterns in the allodiploid fungus Verticillium longisporum
- Host adaptation through hybridization: Genome analysis of triticale powdery mildew reveals unique combination of lineage-specific effectors
- The Interspecific Fungal Hybrid Verticillium longisporum Displays Subgenome-Specific Gene Expression
- Comparative Transcriptome Analysis of Wheat Lines in the Field Reveals Multiple Essential Biochemical Pathways Suppressed by Obligate Pathogens
- Transposable Element Populations Shed Light on the Evolutionary History of Wheat and the Complex Co‐Evolution of Autonomous and Non‐Autonomous Retrotransposons
- A putative effector of the rubber-tree powdery mildew fungus has elicitor activity that can trigger plant immunity
- Comprehensive Genome-Scale Analysis of Esophageal Carcinoma With Esophageal Tissue-Resident Micro-Environment Discrepancy
- The broad use of the Pm8 resistance gene in wheat resulted in hypermutation of the AvrPm8 gene in the powdery mildew pathogen
- Long‐term and rapid evolution in powdery mildew fungi
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