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320 results for “Beans”
Green wrap hat made by Vanilla Beane
Smithsonian source data can be found [here](https://ids.si.edu/ids/media_view?id=3d_package:cddb0bd1-c30c-4804-9fb7-8c0efa854628) This media file is in the public domain (free of copyright restrictions). You can copy, modify, and distribute this work without contacting the Smithsonian. For more information and to review the 3D disclaimer, visit the Smithsonian's [Terms of Use](https://www.si.edu/Termsofuse) page. Green wrap hat made by Vanilla Beane Created by: Vanilla Beane, American, born 1919 Medium: velveteen on buckram Dimensions: 5 1/4 × 7 1/4 × 8 1/4 in. (13.3 × 18.4 × 21 cm) Type: hats Place made: Washington, District of Columbia, United States, North and Central America Date: 1950-1969 Credit Line: Collection of the Smithsonian National Museum of African American History and Culture, Gift of Vanilla Beane Object number: 2013.141.1 Classification: Clothing-Fashion Data Source: National Museum of African American History and Culture EDAN-URL: edanmdm:nmaahc_2013.141.1 Source: Objaverse 1.0 / Sketchfab
Composition of coffee beans influenced by bioprocessing with selected bacteria
<p>Dataset contains calculation files (Ex2 and Ex3_raw data.xlsx) and summary excel file (Statistics_data.xlsx), on which statistical analysis was performed using attached code in R programming language.</p> <p>Ex1 - Experiment 1; Screening of bacterial strains’ growth.</p> <p>Ex2 - Experiment 2; Coffee fermentation with selected bacterial strains.</p> <p>Ex3 - Experiment 3; Influence of time on coffee fermentation with selected bacterium.</p>
Ecological divergence despite common mating sites: Genotypes and symbiotypes shed light on cryptic diversity in the black bean aphid species complex
<p>Different host plants represent ecologically dissimilar environments for phytophagous insects. The resulting divergent selection can promote the evolution of specialized host races, provided that gene flow is reduced between populations feeding on different plants. In black bean aphids belonging to the <em>Aphis fabae </em>complex, several morphologically cryptic taxa have been described based on their distinct host plant preferences. However, host choice and mate choice are largely decoupled in these insects: they are host-alternating and migrate between specific summer host plants and shared winter hosts, with mating occurring on the shared hosts. This provides a yearly opportunity for gene flow among aphids using different summer hosts, and raises the question if and to what extent the ecologically defined taxa are reproductively isolated. Here, we analyzed a geographically and temporally structured dataset of microsatellite genotypes from <em>A. fabae </em>that were mostly collected from their main winter host <em>Euonymus europaeus,</em> and additionally from another winter host and fourteen summer hosts. The data reveals multiple, strongly differentiated genetic clusters, which differ in their association with different summer and winter hosts. The clusters also differ in the frequency of infection with two heritable, facultative endosymbionts, separately hinting at reproductive isolation and divergent ecological selection. Furthermore, we found evidence for occasional hybridization among genetic clusters, with putative hybrids collected more frequently in spring than in autumn. This suggests that similar to host races in other phytophagous insects, both prezygotic and postzygotic barriers including selection against hybrids maintain genetic differentiation among <em>A. fabae </em>taxa, despite a common mating habitat.</p>
Data from: Translocation experiment of taiga bean geese Anser fabalis provides evidence for oblique social learning of moult migration
<p>While there is ample evidence supporting genetic control of migratory behaviour in short-lived passerines, long-lived social species have been assumed to rely solely on cultural inheritance of migratory routes. Evidence from experimental studies supporting this idea is scarce. We tested whether the moult migration in taiga bean geese <em>Anser fabalis </em>has an inherited component or whether the birds need oblique social learning (where knowledge on migration is transferred from any experienced individual to any naïve individual conspecific) to carry out this journey. In many waterfowl species, non-breeders and failed breeders migrate to remote places for wing moult while successful breeders stay at the breeding grounds and moult with their chicks. We translocated one-year-old taiga bean geese before their first moult migration to sites outside of the breeding range to examine whether they display innate moult migration behaviour without experienced conspecifics or not. The birds were equipped with GPS-transmitters and released in randomly assigned groups of two. Wild control one-year-old birds were released immediately after capture with other non-breeding geese, while a procedural control group consisting of older birds was held in captivity until released at the same time with the translocated one-year-old birds but in the place where they were captured. Most translocated birds found conspecifics and either joined locally moulting breeders or followed experienced birds to moulting sites in Russia. Two of the translocated birds did not find other bean geese and settled to moult together in SW Finland. The wild control birds moult-migrated as expected, while only one of the procedural control birds moult-migrated to Russia and the remaining three stayed with locally moulting breeders in Finland. Our results support the idea that moult migration in geese is culturally inherited, highlighting the importance of the non-relative, experienced adult individuals have in maintaining population-specific behaviours.</p>
genotyping matrix for common bean GWAS.
<p>These files inculded twenty phenotypic characteristics were evaluated on 628 accessions. Of these, 15 were quantitative and two were binary traits. Yield-related traits that were evaluated across four locations for three different years.In addition, associations with qualitative traits and 3 datasets for diseases in the greenhouse and insect infestation in a seed chamber were also assessed.</p> <p>In additational, also included genotyping matrix for common bean GWAS.</p>
BRESOV common bean ILs collection , phenotypic data
<p><strong><span>Dataset_ILS_2018</span></strong></p> <p><span>Dataset including phenotypic data recorded on the introgression line population (IL), in the multi-locations field trials performed in Spain, Romania, Italy in 2018 </span></p> <p><strong><span>Dataset_ILS_2019</span></strong></p> <p><span>Dataset including phenotypic data recorded on the introgression line population (IL), in the multi-locations field trials performed in Spain, Romania, Italy in 2019 </span></p> <p><strong><span>Dataset_ILS_2020</span></strong></p> <p><span>Dataset including phenotypic data recorded on the introgression line population (IL), in the multi-locations field trials performed in Spain, Romania, Italy in 2020</span></p>
Supplementary Table S1. Combined analysis of variance containing the degrees of freedom (DF), mean squares (MS), P value (P val.), mean, coefficient of experimental variation (CEV%) and selective accuracy (SA) for the traits of luminosity (L*), chromaticity a* (a*), chromaticity b* (b*), grain length (length, mm), grain width (width, mm), grain thickness (thickness, mm), mass of 100 grains (Mass, g), normal grains (Ng, %), water absorption (absorption, %), cooking time (Ct, min:s), and concentrations of potassium (K, g kg-1 dry matter - DM), phosphorus (P, g kg-1 DM), calcium (Ca, g kg-1 DM), magnesium (Mg, g kg-1 DM), iron (Fe, mg kg-1 DM), zinc (Zn, mg kg-1 DM), and copper (Cu, mg kg-1 DM) obtained in 25 common bean cultivars evaluated in four experiments carried out from 2019 to 2021
<p><strong><span>Table S1.</span></strong><span> Combined analysis of variance.</span></p> <p><strong><span>Indirect selection for multiple technological and nutritional traits in common bean cultivars under different degrees of multicollinearity</span></strong></p> <p><strong><span>Bragantia, 2024.</span></strong></p>
Context-dependent effects of Trichoderma seed inoculation on anthracnose disease and seed yield of bean (Phaseolus vulgaris): ambient conditions override cultivar-specific differences
<p>Root colonizing <i>Trichoderma </i>fungi can stimulate plant immunity, but net effects are strain × cultivar-specific and changing ambient conditions further contribute to variable outcomes. Here, we used four <i>Trichoderma</i> spp. to inoculate seeds of four common bean (<i>Phaseolus vulgaris</i>) cultivars and explored in three different experimental setups the effects on fungal anthracnose after leaf inoculation with <i>Colletotrichum lindemuthianum</i>. Plants growing in pots with field soil under greenhouse conditions exhibited the highest and those in the open field the lowest overall levels of disease. Among 48 <i>Trichoderma</i> strain × bean cultivar × setup combinations, <i>Trichoderma</i>-inoculation enhanced disease in six and decreased disease in ten cases, but with the exception of <i>T. asperellum</i> B6-inoculated Negro San Luis beans, the strain × cultivar-specific effects on anthracnose severity differed among the setups, and anthracnose severity did not predict seed yield in the open field. In the case of Flor de Mayo beans, <i>Trichoderma</i> even reduced yield in anthracnose-free field plots, although this effect was counterbalanced in anthracnose-infected plots. We consider our work as a case study that calls for stronger emphasis on field experiments in the early phases of screenings of <i>Trichoderma</i> inoculants as plant biostimulants.</p>
Effect of Rice Bran and Cooked Navy Beans on Cholesterol Levels in Healthy Children
ClinicalTrials.gov study NCT01911390. IPD Sharing: NO. Countries: 1. Publications: 1.
Evolution of SSR diversity from wild types to U.S. advanced cultivars in the Andean and Mesoamerican domestications of common bean (Phaseolus vulgaris)
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Root and shoot variation in relation to potential intermittent drought adaptation of Mesoamerican wild common bean (Phaseolus vulgaris L.)
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Is the USDA core collection of common bean representative of genetic diversity of the species, as assessed by SNP diversity?
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Common bean PvIND locus bisulfite sequencing reads
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Effect of Drought Stress on the Genetic Architecture of Photosynthate Allocation and Remobilization in Pods of Common Bean (Phaseolus vulgaris L.), a Key Species for Food Security
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Experimental evolution of competing bean beetle species reveals long-term reversals of short-term evolution, but no consistent character displacement
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Tropical agroforestry supports insect pollinators and improves bean yield
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Identification of potential western bean cutworm (<em>Striacosta albicosta</em>) predators in field corn through molecular gut-content analysis
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Data from: Does the genomic landscape of species divergence in Phaseolus beans coerce parallel signatures of adaptation and domestication?
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Context-dependent effects of Trichoderma seed inoculation on anthracnose disease and seed yield of bean (Phaseolus vulgaris): ambient conditions override cultivar-specific differences
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Development and application of Faba_bean_130K Targeted Next-Generation Sequencing SNP genotyping platform based on transcriptome sequencing
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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.