Resultados de búsqueda - KAPD~

  1. Genetic diversity in South American Colletotrichum gloeosporioides isolates from Stylosanthes guianensis, a tropical forage legume por Kelemu, Segenet, Skinner, DZ, Badel, JL, Moreno, CX, Rodríguez, M.X., Fernandes, C.D., Charchar, Maria José, Chakraborty, S.

    Publicado 1999
    “…The RAPD products revealed scorable polymorphism among the isolates, and a total of 80 band positions were scored. …”
    Enlace del recurso
    Journal Article
  2. Characterization of Zebu cattle breeds in Tanzania using random amplified polymorphic DNA markers por Gwakisa, P.S., Kemp, Stephen J., Teale, A.J.

    Publicado 2009
    “…Two primers, which discriminated between the breed‐specific DNA pools were used further to amplify individual pool components in order to establish band frequencies of the amplified fingerprints. One of the primers (ILO 1127) amplified a RAPD fingerprint in 61%of TSZ animals but less than 6% in the other breeds, while another primer (ILO 1065) revealed a DNA sequence common to 89% of the Boran animals and less than 30% in the other two breeds. …”
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    Journal Article
  3. Biodiversity, epidemiology and virulence of Colletotrichum gloeosporioides. I. Genetic and pathogenic diversity in Colletotrichum gloeosporioides isolates from Stylosanthes guianen... por Kelemu, Segenet, Badel, JL, Moreno, CX, Miles, John W., Chakraborty, S., Fernandes, C.D., Charchar, Maria José

    Publicado 1997
    “…The amount of genetic diversity was measured at molecular level by polymerase chain reaction amplifications of DNA with 9 arbitrary primers of 10 bases each using the Random Amplified Polymorphic DNA (RAPD) markers. The amplifications revealed scorable polymorphism among the isolates, and a total of 80 band positions were scored. …”
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    Journal Article
  4. Knowledge, attitude, and practices to zoonotic disease risks from livestock birth products among smallholder communities in Ethiopia por Alemayehu, Gezahegn, Mamo, G., Desta, Hiwot, Alemu, Biruk G., Wieland, Barbara

    Publicado 2021
    “…The differential item functioning test showed that 19 of 37 (51.35%) and 12 of 37 (32.43%) items of the retained KAPs survey items had non-uniform and uniform DIF linked to at least one covariate respectively and all the covariates were related with DIF in at least one item. …”
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    Journal Article
  5. Caracterización genética y patogénica en Colombia de Sphaerotheca pannosa var. rosae, agente causal del mildeo polvoso en la rosa por Álvarez, E., Claroz, José Luis, Loke, John Bernard, Echeverri, C.

    Publicado 2001
    “…After a preliminary molecular screening using RAPD, 16 isolates, collected in floricultural enterprises located in five municipalities of the savannas of Bogotá, Colombia, were seleced as representative of the variability present in S. pannosa. …”
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    Journal Article
  6. Relations among sorghum ergot strains from the United States, Mexico, Puerto Rico, Bolivia, India and Australia por Pazoutova, S., Bandyopadhyay, Ranajit, Frederickson, D.E., Mantle, P.G., Frederiksen, R.A.

    Publicado 2000
    “…In addition, random amplified polymorphic DNA (RAPD) banding patterns of sorghum ergot pathogen isolates from the United States, Mexico, Puerto Rico, Bolivia, Australia, and India were evaluated with nearly 100 primers. …”
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    Journal Article
  7. Molecular aspects of phylogenetic relationships among trypanosoma (Nannomonas) congolense. por Osanya, A.

    Publicado 1995
    “…The patterns of randomly amplified polymorphic DNA (RAPD) have been used in the calculation of pairwise genetic similarity indices among these trypanosomes without making assumptions regarding relative band intensities. …”
    Enlace del recurso
    Tesis
  8. AVONET: morphological, ecological and geographical data for all birds por Tobias, Joseph A., Sheard, Catherine, Pigot, Alex L., Devenish, Adam J.M., Jingyi Yang, Sayol, Ferran, Neate‐Clegg, Montague H.C., Alioravainen, Nico, Weeks, Thomas L., Barber, Robert A., Walkden, Patrick A., MacGregor, Hannah E.A., Jones, Samuel E.I., Vincent, Claire, Phillips, Anna G., Marples, Nicola M., Montaño Centellas, Flavia A., Leandro Silva, Victor, Claramunt, Santiago, Darski, Bianca, Freeman, Benjamin G., Bregman, Tom P., Cooney, Christopher R., Hughes, Emma C., Capp, Elliot J.R., Varley, Zoë K., Friedman, Nicholas R., Korntheuer, Heiko, Corrales Vargas, Andrea, Trisos, Christopher H., Weeks, Brian C., Hanz, Dagmar M., Töpfer, Till, Bravo, Gustavo A., Remeš, Vladimír, Nowak, Larissa, Carneiro, Lincoln S., Moncada R., Amilkar J., Matysioková, Beata, Baldassarre, Daniel T., Alejandra Martínez‐Salinas, Jared D. Wolfe, Philip M. Chapman, Benjamin G. Daly, Sorensen, Marjorie C., Alexander Neu, Ford, Michael A., Rebekah J. Mayhew, Luis Fabio Silveira, Kelly, David J., Nathaniel N. D. Annorbah, Henry S. Pollock, Ada M. Grabowska‐Zhang, Jay P. McEntee, Juan Carlos T. Gonzalez, Camila G. Meneses, Muñoz, Marcia C., Luke L. Powell, Gabriel A. Jamie, Matthews, Thomas J., Oscar Johnson, Brito, Guilherme R.R., Zyskowski, Kristof, Ross Crates, Harvey, Michael G., Maura Jurado Zevallos, Hosner, Peter A., Bradfer‐Lawrence, Tom, James M. Maley, Stiles, F. Gary, Lima, Hevana S., Kaiya L. Provost, Moses Chibesa, Mmatjie Mashao, Jeffrey T. Howard, Edson Mlamba, Chua, Marcus A.H., Bicheng Li, Gómez, M. Isabel, Natalia C. García, Martin Päckert, Jérôme Fuchs, Jarome R. Ali, Elizabeth P. Derryberry, Monica L. Carlson, Rolly C. Urriza, Kristin E. Brzeski, Dewi M. Prawiradilaga, Matt J. Rayner, Eliot T. Miller, Rauri C. K. Bowie, René‐Marie Lafontaine, R. Paul Scofield, Yingqiang Lou, Lankani Somarathna, Denis Lepage, Illif, Marshall, Neuschulz, Eike Lena, Templin, Mathias, Dehling, D. Matthias, Cooper, Jacob C., Olivier S. G. Pauwels, Kangkuso Analuddin, Jon Fjeldså, Nathalie Seddon, Sweet, Paul R., DeClerck, Fabrice A.J., Naka, Luciano N., Brawn, Jeffrey D., Alexandre Aleixo, Katrin Böhning‐Gaese, Carsten Rahbek, Susanne A. Fritz, Gavin H. Thomas, Matthias Schleuning

    Publicado 2022
    “…These data are also summarised as species averages in three taxonomic formats, allowing integration with a global phylogeny, geographical range maps, IUCN Red List data and the eBird citizen science database. …”
    Enlace del recurso
    Journal Article
  9. Comparative analysis of phenotypic and genoytpic diversity among plantain landraces (Musa spp., AAB group) por Crouch, H.K., Crouch, J.H., Madsen, S., Vuylsteke, D.R., Ortíz, R.

    Publicado 2000
    “…There was a good correlation (R2=0.78) between estimates of genetic diversity based on 76 RAPD bands and 164 RAPD bands. However, there was a poor correlation between RAPD-based estimates of genetic diversity and a phenotypic index based on agronomic characters. …”
    Enlace del recurso
    Journal Article
  10. Community-Level Impacts of Climate-Smart Agriculture Interventions on Food Security and Dietary Diversity in Climate-Smart Villages in Myanmar por Hanley, Andrew, Brychkova, Galina, Barbon, Wilson John, Noe, Su Myat, Myae, Chan, Thant, Phyu Sin, McKeown, Peter, Gonsalves, Julian Francis, Spillane, Charles

    Publicado 2021
    “…Our KAP findings indicate that current nutrition education interventions in the Myanmar CSVs are inadequate and will need further improvement for health and nutrition outcomes from the portfolio of CSA interventions.…”
    Enlace del recurso
    Journal Article
  11. Analysis of genetic diversity and relationships in East African banana germplasm por Pillay, M., Ogundiwin, E., Nwakanma, D., Ude, G., Tenkouano, A.

    Publicado 2001
    “…Nevertheless, there were sufficient RAPD polymorphisms that were collectively useful in distinguishing the cultivars. …”
    Enlace del recurso
    Journal Article
  12. Delineation of Pseudomonas savastanoi pv. savastanoi strains isolated in Tunisia by random-amplified polymorphic DNA analysis por Krid, S., Rhouma, A., Quesada, Jose M., Penyalver, Ramón, Gargouri, A.

    Publicado 2017
    “…This is the first application of RAPD in the delineation of P. savastanoi pv. savastanoi strains.…”
    Enlace del recurso
    Artículo
  13. Genetic diversity in cowpea as revealed by random amplified polymorphic DNA por Mignouna, Hodeba D., Ng, N.Q., Ikea, J., Thottappilly, G.

    Publicado 1998
    “…One hundred and twenty random decamer primers were screened on four accessions, to assess their ability to detect polymorphisms in cowpea and nine of them were used in this study. RAPD fingerprinting patterns were analysed, and amplified polymorphic DNA bands used to construct a dendrogram based on the unweighed pair-group method using arithmetic averages (UPGMA). …”
    Enlace del recurso
    Journal Article
  14. Molecular variation in population structure of Xanthomonas axonopodis pv Manihotis in the south eastern Nigeria por Ogunjobi, A.A., Fagade, O., Dixon, A.

    Publicado 2006
    “…Seventeen Xam strains and two reference strains were analyzed with four RAPD primers. RAPD fragment data showed five major clusters at 80% similarity coefficient level. …”
    Enlace del recurso
    Journal Article
  15. A polymorphism in randomly amplified DNA that differentiates the Y chromosomes of Bos indicus and Bos taurus por Teale, A.J., Wambugu, J., Gwakisa, P.S., Stranzinger, G., Bradley, D., Kemp, Stephen J.

    Publicado 1995
    “…The ILO1065-primed RAPd can be used in a simple dot blot assay as a probe of RAPD-PCR products, to provide a convenient, reliable and effective means of detecting introgression of zebu genes in B. taurus cattle populations.…”
    Enlace del recurso
    Journal Article

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