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7 results for “Ramularia”
Ramularia detection dates by country
<p>Dark and light themed maps showing the detection rate of ramularia by country. Detection rates are taken from the following two publications.</p> <pre>Walters, D. R., Havis, N. D., and Oxley, S. J. P. <strong>2008</strong>. Ramularia collo-cygni: the biology of an emerging pathogen of barley. FEMS Microbiology Letters 279:1–7. https://doi.org/10.1111/j.1574-6968.2007.00986.x </pre> <pre>Havis N. D., Brown J. K. M., Clemente G., Frei P., Jedryczka M., Kaczmarek J., Kaczmarek M., Matusinsky P., McGrann GRD., Pereyra S., Piotrowska M., Sghyer H., Tellier A., and Hess M., <strong>2015</strong>. Ramularia collo-cygni - an emerging pathogen of barley crops. Phytopathology 105: 895-904. https://doi.org/10.1094/PHYTO-11-14-0337-FI </pre> <p>Country outlines were taken from Natural Earth: http://www.naturalearthdata.com/downloads/50m-cultural-vectors/</p>
SNP call data for: The current epidemic of the barley pathogen Ramularia collo-cygni derives from a recent population expansion and shows global admixture
<p>Ramularia Leaf Spot is becoming an ever increasing problem in main barley growing regions since the 1980s, causing up to 70% yield loss in extreme cases. Yet, the causal agent <em>Ramularia collo-cygni</em>, remains poorly studied. The diversity of the pathogen in the field thus far remains unknown. Furthermore, it is unknown to which extend the pathogen has a sexual reproductive cycle. To date, the teleomorph of <em>R. collo-cygni</em> has not been observed.</p> <p>To study the genetic diversity of <em>R. collo-cygni </em>and to get more insights into its biology, we sequenced the genomes of 19 <em>R. collo-cygn</em>i isolates from multiple geographic locations and diverse hosts. Here we share the SNP call data as well as the reference genome.</p> <p>The reference genome files and assembly can be found on ENI: GCA_900074925.1</p> <p>https://www.ebi.ac.uk/ena/data/view/GCA_900074925.1</p> <p>The raw sequence data is also available through ENI: ERX2296228</p> <p>https://www.ebi.ac.uk/ena/data/view/ERX2296228</p>
FIGURE 3 in Ramularia titarpaniensis-a new species of ramularioid complex from central India
FIGURE 3. Microphotographs of Ramularia titarpaniensis (holotype, AMH 9826). a–d. Conidia (arrows indicate catenation points). e, f. Germinating conidia. Scale bars a = 10 µm, b, c = 25 µm, d–f = 20 µm.
FIGURE 2 in Ramularia titarpaniensis-a new species of ramularioid complex from central India
FIGURE 2. Microphotographs of Ramularia titarpaniensis (holotype, AMH 9826). a–c. Conidiophores in fasicle with stromata. d. Developing conidia at conidiogenous loci. Scale bars a, c = 20 µm, b = 30 µm, d = 15 µm (arrows indicate developing conidia at conidiogenous loci).
FIGURE 1 in Ramularia titarpaniensis-a new species of ramularioid complex from central India
FIGURE 1. Ramularia titarpaniensis on Wendlandia sp. a, b. Infected host plant. c. Infection spots on upper surface. d. Infection spots on lower surface. Scale bars c–d = 10 mm.
FIGURE 4 in Ramularia titarpaniensis-a new species of ramularioid complex from central India
FIGURE 4. SEM of Ramularia titarpaniensis (holotype, AMH 9826). a. Catenation in conidia. b, c. Conidia. d. Top view of conidiogenous cell. e, f. Conidiogenous loci. g–i. Hila of conidia. Scale bars a = 10 µm, b = 5 µm, c = 3 µm, d = 2 µm, e–i = 1 µm.
Expression profiles of Ramularia collo-cygni (strain urug 2) grown on 6 conditions revealed common and different sets of regulated genes
GEO Series GSE109135. Ramularia collo-cygni. 6 samples. Type: Expression profiling by high throughput sequencing.
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