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8 results for “Bipolaris”
Decomposition of Microstegium vimineum litter, plants grew through the Big Oaks National Wildlife Refuge in 2019. Litter used in this experiment naturally senesced in the fall 2019, decomposition data collected through 2020. Plants were infected or not-infected with the foliar fungal pathogen Bipolaris gigantea during the 2019 growing season.
Decomposition of plant litter, facilitated primarily by microbial decomposers, plays a critical role in biogeochemical cycling and ecosystem function. Emerging pathogens have the potential to impact litter decomposition by altering the chemical composition and associated microbial community of host tissue. Here, we compared litter decomposition of the invasive grass Microstegium vimineum collected from sites with Bipolaris leaf spot symptoms and sites with no apparent disease symptoms in a common garden experiment. Our results revealed that leaf tissue from litter from non-infected sites decomposed more rapidly through the spring than litter from infected sites. Differences in fungal composition between infected and non-infected litter at the start of the experiment largely persisted through the summer. Our work demonstrates that pathogen colonization may facilitate the persistence of infected host litter, potentially slowing the return of nutrients to the environmental pool while also promoting the survival and dispersal of primary inoculum the following season.
The genome files of Bipolaris zeicola
<p>The genome files of Bipolaris zeicola</p>
Genome data of Bipolaris zeicola
<p>The assembly and annotation files of <em>Bipolaris zeicola.</em></p>
FIGURE 2 in Bipolaris omanensis, a novel saprobic species of Bipolaris from Oman based on morphology and sequence data
FIGURE 2. Bipolaris omanensis (SQUCC 13828) a–e Conidiophores. f–i Conidia. j–l Conidiophore with conidia under scanning electron microscope. Scale bars a, b, d, f, j, i = 25 μm, Scale bar of b applies to b–c. Scale bar of d applies to d–e, Scale bar of f applies to f–i, Scale bar of j applies to j–k.
FIGURE 1 in Bipolaris omanensis, a novel saprobic species of Bipolaris from Oman based on morphology and sequence data
FIGURE 1. Phylogram generated from maximum likelihood analysis (ML) of combined ITS and GAPD sequence data of species of Bipolaris. ML bootstrap support values ≥50 % and ML bootstrap support values ≥50 % are given at the nodes (ML/MP). The new isolates are in red and the tree is rooted with Curvularia lunata (CBS 157.34) and Curvularia subpapendorfii (CBS 656.74). The scale bar represents the expected number of changes per site.
FIGURES 223–226. Neoperla bipolaris n in Revision of the African Neoperla Needham, 1905 (Plecoptera: Perlidae: Perlinae) based on morphological and molecular data
FIGURES 223–226. Neoperla bipolaris n. sp.: 223, 224, egg, SEM micrograph (from Moore, 1991); 225–226, egg and genital situs of holotype. FIGURES 227–230. Neoperla schuelei n. sp.: 227, female genital situs, paratype; 228–230, egg from holotype; 229, enlarged detail of chorion; 230, oblique view of anchor pole showing the relation between striae and cells on collar. Scale lines are 100µm, unless differently indicated. Arrows indicate micropyles.
Functional Analysis of Histone ZmH2B in Regulating Maize Resistance to Bipolaris maydis
GEO Series GSE290889. Zea mays. 6 samples. Type: Expression profiling by high throughput sequencing.
RNA-Seq data used to explore transcriptional dynamics in multipartite fungus-plant interactions: Hordeum vulgare, Serendipita vermifera, Bipolaris sorokiniana
GEO Series GSE130517. Bipolaris sorokiniana; Hordeum vulgare; Serendipita vermifera. 33 samples. Type: Expression profiling by high throughput sequencing.
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