Resultados de búsqueda - Tenis~

  1. Den gröna ön: resurs eller museum por Löfstrand, Alma

    Publicado 2015
    Enlace del recurso
    First cycle, G1N, G1F, G2F or GXX
  2. Design and sustainability assessment of bioenergy double cropping system in southern Sweden por Lama, Sbatie

    Publicado 2016
    “…Qualitative method was used to investigate possible motives and constraints that might influence farmers’ decision to adopt double cropping system through semi-structured interviews. …”
    Enlace del recurso
    Second cycle, A2E
  3. Raster files of the diversity and climate change analyses of regionally priority CWR in the SADC region por Gaisberger, Hannes

    Publicado 2021
    “…File name: First three letters from ‘Genus’, plus first three letters from ‘Species’, plus first three letters from ‘Subspecies’ or ‘Variety’ if applicable, plus ‘cc_recl’. …”
    Enlace del recurso
    Conjunto de datos
  4. First report of Rice yellow mottle virus on rice in the Democratic Republic of Congo por Hubert, J.G., Pinel Galzi, A., Dibwe, D., Cinyabuguma, E., Kaboré, A., Fargette, D., Silué, D., Hébrard, E., Séré, Y.

    Publicado 2013
    “…Rice yellow mottle virus (RYMV), genus Sobemovirus, is a widespread rice pathogen reported in nearly all rice-growing countries of Africa. …”
    Enlace del recurso
    Journal Article
  5. Apparent density, trypanosome infection rates and host preference of tsetse flies in the sleeping sickness endemic focus of northwestern Uganda por Opiro, R., Opoke, R., Angwech, H., Nakafu, E., Oloya, F.A., Openy, G., Njahira, Moses, Macharia, Mercy, Echodu, R., Malinga, Geoffrey Maxwell, Opiyo, E.A.

    Publicado 2021
    “…Background African trypanosomiasis, caused by protozoa of the genus Trypanosoma and transmitted by the tsetse fly, is a serious parasitic disease of humans and animals. …”
    Enlace del recurso
    Journal Article
  6. Molecular survey of Babesia parasites in Kenya: first detailed report on occurrence of Babesia bovis in cattle por Githaka, Naftaly W., Bishop, Richard P., Šlapeta, J., Emery, D., Nguu, E.K., Kanduma, E.G.

    Publicado 2022
    “…Background Among protozoan parasites in the genus Babesia, Babesia bigemina is endemic and widespread in the East African region while the status of the more pathogenic Babesia bovis remains unclear despite the presence of the tick vector, Rhipicephalus microplus, which transmits both species. …”
    Enlace del recurso
    Journal Article
  7. Genome-wide association study of common resistance to rust species in tetraploid wheat por Marone, Daniela, Laidò, Giovanni, Saccomanno, Antonietta, Petruzzino, Giuseppe, Azevedo, Cleber V. Giaretta, De Vita, Pasquale, Mastrangelo, Anna Maria, Gadaleta, Agata, Ammar, Karim, Bassi, Filippo, Wang, Meinan, Chen, Xianming, Rubiales, Diego, Matny, Oadi, J. Steffenson, Brian, Pecchioni, Nicola

    Publicado 2024
    “…Rusts of the genus Puccinia are wheat pathogens. Stem (black; Sr), leaf (brown; Lr), and stripe (yellow; Yr) rust, caused by Puccinia graminis f. sp. tritici (Pgt), Puccinia triticina (Pt), and Puccinia striiformis f. sp. tritici (Pst), can occur singularly or in mixed infections and pose a threat to wheat production globally in terms of the wide dispersal of their urediniospores. …”
    Enlace del recurso
    Journal Article
  8. Taxonomic and functional shifts in the rumen microbiome of buffalo calves under long-term strategic supplementation of phyto-feed additives por Soni, P.K., Kala, A., Agarwal, P., Deka, Ram Pratim, Rahman, Habibur, Kennady, Vijayalakshmy, Chaudhary, L.C.

    Publicado 2025
    “…The main archaeal phylum was <i>Euryarchaeota</i> (>85%), along with notable presence of <i>Candidatus_Bathyarchaeota</i> and <i>Thaumarchaeota</i>. At the genus level, <i>Methanomicrobium</i> and <i>Methanobrevibacter</i> each accounted for approximately 30% of the archaeal community, followed by <i>Methanosphaera</i>, <i>Methanosarcina</i>, and <i>Methanomassiliicoccus</i>. …”
    Enlace del recurso
    Journal Article
  9. Identification and sequence characterization of novel Theileria genotypes from the waterbuck (Kobus defassa) in a Theileria parva-endemic area in Kenya por Githaka, Naftaly W., Konnai, S., Bishop, Richard P., Odongo, D., Lekolool, I., Kariuki, E., Gakuya, F., Kamau, L., Isezaki, M., Murata, S., Ohashi, K.

    Publicado 2014
    “…The RLB assay, including a generic probe for the genus Theileria, indicated that 25/26 (96%) of the waterbuck samples were positive for Theileria, while none of the 11 Theileria species-specific probes hybridized with the waterbuck-derived PCR products. …”
    Enlace del recurso
    Journal Article
  10. Zoonotic surveillance for rickettsiae in domestic animals in Kenya por Mutai, B.K., Wainaina, J.M., Magiri, C.G., Ng'ang'a, J.K., Ithondeka, P.M., Njagi, O.N., Jiang, J., Richards, A.L., Waitumbi, J.N.

    Publicado 2013
    “…Blood samples and ticks were collected from 1019 cattle, 379 goats, and 299 sheep and were screened for rickettsiae by a quantitative PCR (qPCR) assay (Rick17b) using primers and probe that target the genus-specific 17-kD gene (htrA). The ticks were identified using standard taxonomic keys. …”
    Enlace del recurso
    Journal Article
  11. Spatial and temporal distribution of insect vectors of Xanthomonas campestris pv. musacearum and their activity across banana cultivars grown in Rwanda. por Rutikanga, A., Night, G., Tusiime, Geoffrey, Ocimati, W., Blomme, Guy

    Publicado 2015
    “…Collected insects were immediately sorted into taxonomic groups and conserved in vials containing 70% ethanol for further identification to genus and species level. Five insect specimens in each taxon were put aside for the isolation of Xcm on their external body parts. …”
    Enlace del recurso
    Conference Paper
  12. The prevalence of badnaviruses in West African yams (Dioscorea cayenensisrotundata) and evidence of endogenous pararetrovirus sequences in their genomes por Seal, S., Turaki, A., Muller, E., Kumar, P. Lava, Kenyon, L., Filloux, D., Galzi, S., López Montes, Antonio José, Iskra Caruana, M.L.

    Publicado 2014
    “…All the D. cayenensis and D.rotundata samples from the CIRAD and IITA collections tested PCR-positive, and sequencing of a selectionof the PCR products confirmed they were typical of the genus Badnavirus. A comparison of serolog-ical and nucleic acid techniques was used to investigate whether the PCR-positives were sequencesamplified from badnavirus particles or putative endogenous badnavirus sequences in the yam genome.Protein A sandwich-enzyme-linked immunosorbent assay (PAS-ELISA) with badnavirus polyclonal antis-era detected cross-reacting viral particles in only 60% (92 of 153) of the CIRAD collection samples analysed,in contrast to the aforementioned 81% by PCR. …”
    Enlace del recurso
    Journal Article
  13. Lay knowledge and management of malaria in Baringo county, Kenya por Mutua, Edna N., Bukachi, S.A., Bett, Bernard K., Estambale, B.B.A., Nyamongo, I.K.

    Publicado 2016
    “…Background Malaria, a disease caused by protozoan parasites of the genus Plasmodium and transmitted by female anopheline mosquitoes, is a major cause of morbidity, mortality and loss in productivity in humans. …”
    Enlace del recurso
    Journal Article

Herramientas de búsqueda: