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245 results for “Rust”
FIGURE 1 in Note on Psila helvetica Shatalkin & Merz, 2010: a new rust fly (Diptera: Psilidae) for mainland France, with key to French species and male genitalia illustration
FIGURE 1. Site where specimen of Psila helvetica Shatalkin & Merz, 2010 was captured. (Photo: Gilbert Chabot).
Supplementary material 2 from: Martone M, Murray-Rust P, Molloy J, Arrow T, MacGillivray M, Kittel C, Kasberger S, Steel G, Oppenheim C, Ranganathan A, Tennant J, Udell J (2016) ContentMine/Hypothes.is Proposal. Research Ideas and Outcomes 2: e8424. https://doi.org/10.3897/rio.2.e8424
An example of how amanuens.is could combine ContentMine and Hypothes.is technologies to discover information about the Zika vector Aedes aegypti and the symbiont bacterium Wolbachia.
Genomic Selection Paves Way for the Identification of Rust Disease Resistant Genotypes in Bread Wheat (Triticum aestivum).
<p><span>In the last two decades, genomic prediction (GP) or Genomic Selection (GS) methods have been widely adopted in various plant and animal breeding programs globally. GP/GS is a promising method that employs genomic markers to calculate genomic-estimated breeding values (GEBVs) to select best individuals. To evaluate the performance of different genomic selection (GS) models, we examined six different models namely, ridge regression (RR), least absolute shrinkage and selection operator (LASSO), genomic best linear unbiased prediction (GBLUP), elastic net (EN), reproducing kernel Hilbert spacing (RKHS), and random forest (RF) models, for seedling and adult plant resistance to leaf, stem and stripe rust of wheat using a panel of 347 wheat germplasm accessions. The GBLUP and RF models performed noticeably better than the other GS models, with mean predictive abilities of 0.5 and 0.4 for seedling resistance and 0.4 and 0.3 for adult plant resistance (APR) for leaf and stem rust, respectively. Unfortunately, except for a few environments, the performance of GP models in the current study is quite low for stripe rust for both seedling and APR. The outcomes of this study revealed the capability of GP to be applied for breeding initiatives aimed at developing wheat varieties resistant to rust diseases. </span><span>Moreover, based on favorable allele analysis we also identified a total of 2 lines (CRP-165/42, HGP1-470) that showed resistance to most of the pathotypes at seedling and adult plant stage to all three rusts.<strong><span> </span></strong>These lines can serve as valuable resources for future breeding programs focused on rust resistance.</span></p> <p><strong><span>Keywords: </span></strong><span>GS;</span><strong><span> </span></strong><span>GEBVs; leaf rust; stem rust; stripe rust; seedling resistance; APR</span></p>
the Linux kernel & Rust commits
<p>Historical commit data for the Linux kernel (2001/09/17-2023/11/22)/Rust (2010/06/23-2021/12/06)</p>
Supplementary material 3 from: Ebinghaus M, Maier W, Wingfield MJ, Begerow D (2018) New host associations and a novel species for the gall-inducing acacia rust genus Ravenelia in South Africa. MycoKeys 43: 1-21. https://doi.org/10.3897/mycokeys.43.25090
Table S1 : Explanation note: List of measurements of teliospore characters of R.evansii. Obtained values were sorted by voucher and by individual teliospores. All measurements are given in μm.
Supplementary material 4 from: Ebinghaus M, Maier W, Wingfield MJ, Begerow D (2018) New host associations and a novel species for the gall-inducing acacia rust genus Ravenelia in South Africa. MycoKeys 43: 1-21. https://doi.org/10.3897/mycokeys.43.25090
Table S2 : Explanation note: List of measurements of teliospore characters of R.macowaniana and R.xanthophloeae. Obtained values were sorted by voucher and by individual teliospores. All measurements are given in μm.
Supplementary material 2 from: Ebinghaus M, Maier W, Wingfield MJ, Begerow D (2018) New host associations and a novel species for the gall-inducing acacia rust genus Ravenelia in South Africa. MycoKeys 43: 1-21. https://doi.org/10.3897/mycokeys.43.25090
Figure S2 : Explanation note: Boxplot of measurements of the six defined teliospore characteristics of R.macowaniana and R.xanthophloeae. Values were obtained from teliospores derived from three different host species of in total 10 individual trees. The boxplots are based on mean values calculated for all investigated teliospores for each specimen, respectively.
Supplementary material 1 from: Ebinghaus M, Maier W, Wingfield MJ, Begerow D (2018) New host associations and a novel species for the gall-inducing acacia rust genus Ravenelia in South Africa. MycoKeys 43: 1-21. https://doi.org/10.3897/mycokeys.43.25090
Figure S1 : Explanation note: Boxplot of measurements of the six defined teliospore characters of R.evansii. Values were obtained from teliospores derived from seven different host species of in total 18 individual trees. The boxplots are based on mean values calculated for all investigated teliospores for each specimen, respectively.
FIGURES 1–8 in New Mycodiplosis gall midge (Diptera: Cecidomyiidae) feeding on fungal rusts (Fungi: Pucciniomycetes) that are pathogenic on cultured plants
FIGURES 1–8. Mycodiplosis puccinivora. Male. (1) occipital protuberance on head dorsally, (2) 3rd flagellomere (3) mouth parts, (4) fore claw, (5) mid claw, (6) hind claw, (7) terminalia dorsally, (8) terminalia ventrally.
FIGURES 19–27 in New Mycodiplosis gall midge (Diptera: Cecidomyiidae) feeding on fungal rusts (Fungi: Pucciniomycetes) that are pathogenic on cultured plants
FIGURES 19–27. Mycodiplosis puccinivora feeding on fungal rust Maravalia pterocarpi infesting leaves of Dalbergia tonkinensis. 19–20: adult, 21: egg, 22–24: larva, 25–27: pupa. (19) female, (20) male, (21) egg on leaf surface, (22) mature larva spinning cocoon on leaf surface, (23) larvae feeding on uredinia, (24) larvae feeding on uredinia, arows indiacte larave in the distance, (25) young pupa, (26) mature pupa, (27) pupal exhiviae anchored in cocoon following emergence of adult. Fig. 24 is from Wang et al. (2017).
FIGURES 14–18. Mycodiplosis puccinivora. 14–17 in New Mycodiplosis gall midge (Diptera: Cecidomyiidae) feeding on fungal rusts (Fungi: Pucciniomycetes) that are pathogenic on cultured plants
FIGURES 14–18. Mycodiplosis puccinivora. 14–17: larva, 18: pupal exhuviae. (14) head in dorsal view, (15) sternal spatula with adjacent papillae, (16) terminal segment in dorsal view, (17, 18) habitus.
FIGURES 9–13 in New Mycodiplosis gall midge (Diptera: Cecidomyiidae) feeding on fungal rusts (Fungi: Pucciniomycetes) that are pathogenic on cultured plants
FIGURES 9–13. Mycodiplosis puccinivora. Female. (9) 3rd flagellomere, (10) wing, (11) hypoproct ventrally, (12) postabdomen from 7th segment to end dorsally, (13) postabdomen from 7th segment to end laterally.
Fig. 2 in A new perspective on the evolution of white blister rusts: Albugo s.str. (Albuginales; Oomycota) is not restricted to Brassicales but also present on Fabales
Fig. 2 Phylogenetic tree of Albuginales species inferred from ML analysis using partial cox2 mtDNA. Number terms at nodes: ML/MP bootstrap support values>50%. Branch length reflects number of nucleotide changes between respective taxa; scale bar represents number of nucleotide substitutions per site
Fig. 1 in A new perspective on the evolution of white blister rusts: Albugo s.str. (Albuginales; Oomycota) is not restricted to Brassicales but also present on Fabales
Fig. 1 Albugo mauginii on Onobrychis crista-galli. (a) Sori on infected leaves. (b, c) Sporogenous hyphae. (d) Primary sporangia. e Secondary sporangia. Scale bars= 20 μm
Fig. 2 in The only known white blister rust on a basal angiosperm is a member of the genus Albugo
Fig. 2 Oospores of Albugo tropica as seen in DIC light microscopy. a Within the oogonia. b liberated from an oogonium. Scale bars represent 20 μm in all pictures
Fig. 1 in The only known white blister rust on a basal angiosperm is a member of the genus Albugo
Fig. 1 Phylogenetic tree of concatenated cox2 and ITS sequences inferred using the Minimum Evolution criterion. Numbers on the branches indicate bootstrap support in Minimum Evolution and Maximum Likelihood, as well as posterior probabilities from Bayesian Inference greater than 50 % / 50 % / 0.9, in the respective order. The tree is rooted with Albugo ipomoeae-panduratae parasitic to Convolvulaceae, which constitutes an own distinct clade of Albuginaceae, as already recognised by Voglmayr and Riethmüller (2006). The bar indicates the amount of substitutions per site
Fig. 3 in The only known white blister rust on a basal angiosperm is a member of the genus Albugo
Fig. 3 Scanning electron micrographs of sporangia of Albugo tropica (a–c) and A. candida from Capsella bursa-pastoris (d–f). a, d Overview with secondary sporangia. b, e Primary sporangia. c, f Surface ornamentation of secondary sporangia. Scale bars represent 2 μm in (c) and 5 μm for the remaining pictures
FIGURE 2 in Puccinia melitenensis (Pucciniaceae), a new rust species on Campanula stevenii subsp. beauverdiana from Malatya in Turkey
FIGURE 2. Light microscope and SEM photographs of Puccinia melitenensis sp. nov. A. Teliospores (LM). B. Telium cross section (LM). C, D. Single teliospores (SEM).
FIGURE 1 in Puccinia melitenensis (Pucciniaceae), a new rust species on Campanula stevenii subsp. beauverdiana from Malatya in Turkey
FIGURE 1. Puccinia melitenensis sp. nov. on Campanula stevenii subsp. beauverdiana. A. Type herbarium specimen. B, C. Telia on the upper surface of leaf. D, E. Telia on the surface of petiole.
FIGURE 2 in Pustula junggarensis (Albuginales, Oomycota), a new species of white blister rust on Takhtajaniantha pusilla from Junggar Basin in China
FIGURE 2. Phylogenetic relationship between Pustula junggarensis specimens and some reference sequences retrieved from GenBank, inferred by Minimum Evolution, Maximum Liklihood and Bayesian analysis using the cox2 mtDNA. Sequences of Pustula junggarensis are shown in bold. Numbers above the branches represent bootstrap support values of over 50% obtained from 1,000 bootstrap replicates. Bar = Number of nucleotide substitutions per site.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.