Search Results - "GALIAKPAROV, N"

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  1. 1

    Development of a “deconstructed” vector based on the genome of grapevine virus A by Gritsenko, D. A., Kenzhebekova, R. T., Deryabina, N. D., Galiakparov, N. N.

    Published in Plant biotechnology reports (01-04-2019)
    “…The development of new vectors based on plant viruses creates more efficient vectors driving high expression levels of heterologous proteins. Currently,…”
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  2. 2

    Enhancing Clonal Micropropagation of Zarya Alatau Apple by Yerbolova, Laura S., Rakhatkyzy, Akbota, Aubakirova, Karlygash P., Bakytzhanova, Zhibek N., Kryldakov, Ruslan V., Galiakparov, Nurbol N.

    Published in HortTechnology (Alexandria, Va.) (01-10-2024)
    “…The purpose of this study was to improve the protocol of clonal micropropagation for effective mass production of the Zarya Alatau apple cultivar through the…”
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  3. 3

    Evaluation of molecular genetic diversity of wild apple Malus sieversii populations from Zailiysky Alatau by microsatellite markers by Omasheva, M. E, Chekalin, S. V, Galiakparov, N. N

    Published in Russian journal of genetics (01-07-2015)
    “…The territory of Kazakhstan is part of the distribution range of Malus sieversii, which is one of the ancestors of cultivated apple tree varieties. The…”
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  4. 4

    Evaluation of Molecular Genetic Diversity of Wild Apple Malus sieversii Populations from Zailiysky Alatau by Microsatellite Markers by Omasheva, M E, Chekalin, S V, Galiakparov, N N

    Published in Genetika (01-07-2015)
    “…The territory of Kazakhstan is part of the distribution range of Malus sieversii, which is one of the ancestors of cultivated apple tree varieties. The…”
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  5. 5

    Evaluation of five protocols for DNA extraction from leaves of Malus sieversii, Vitis vinifera, and Armeniaca vulgaris by Aubakirova, K, Omasheva, M, Ryabushkina, N, Tazhibaev, T, Kampitova, G, Galiakparov, N

    Published in Genetics and molecular research (27-02-2014)
    “…Leaves of Malus sieversii, Vitis vinifera, and Armeniaca vulgaris contain substantial amounts of secondary metabolites, which limit the high-quality DNA…”
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  6. 6

    Genotyping and morphometric analysis of Kazakhstani grapevine cultivars versus Asian and European cultivars by Pozharskiy, AS, Aubakirova, KP, Gritsenko, DA, Tlevlesov, NI, Karimov, NZh, Galiakparov, NN, Ryabushkina, NA

    Published in Genetics and molecular research (2020)
    “…Grapes are an important fruit crop in Kazakhstan. Modern viticulture requires inclusion of traditional morphological and agronomical methods in the development…”
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  7. 7

    Functional analysis of the grapevine virus a genome by Galiakparov, N, Tanne, E, Sela, Ilan, Gafny, R

    Published in Virology (New York, N.Y.) (01-02-2003)
    “…Grapevine virus A (GVA) carries five open reading frames (ORFs). Only the coat protein ORF has been experimentally identified as such; the roles of some of the…”
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    To what extent do wild apples in Kazakhstan retain their genetic integrity? by Omasheva, Madina Y., Flachowsky, Henryk, Ryabushkina, Natalya A., Pozharskiy, Alexandr S., Galiakparov, Nurbol N., Hanke, Magda-Viola

    Published in Tree genetics & genomes (01-06-2017)
    “…Kazakhstan belongs to the center of origin of apple. Malus sieversii (Ledeb.) M. Roem., the ancestral progenitor of the cultivated apple is native to this…”
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  10. 10

    Improved detection of prunus necrotic ringspot virus by the polymerase chain reaction by SPIEGEL, S, SCOTT, S. W, BOWMAN-VANCE, V, TAM, Y, GALIAKPAROV, N. N, ROSNER, A

    “…The reverse transcription-polymerase chain reaction (RT-PCR) technique was used for detection of prunus necrotic ringspot virus in dormant peach trees which…”
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  11. 11

    CRYOTHERAPY AS A METHOD FOR REDUCING THE VIRUS INFECTION OF APPLES (Malus sp.) by Romadanova, Natalya V, Mishustina, Svetlana A, Gritsenko, D ilyara A, Omasheva, Madina Y, Galiakparov, Nurbol N, Reed, Barbara M, Kushnarenko, Svetlana V

    Published in Cryo-Letters (01-01-2016)
    “…There is an urgent need in Kazakhstan for virus-free nursery stock to reinvigorate the industry and preserve historic cultivars. An in vitro collection of…”
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  12. 12

    Serological detection of grapevine virus A using antiserum to a nonstructural protein, the putative movement protein by RUBINSON, E, GALIAKPAROV, N, RADIAN, S, SELA, I, TANNE, E, GAFNY, R

    Published in Phytopathology (01-10-1997)
    “…ABSTRACT Grapevine virus A (GVA) is implicated in the etiology of the rugose wood disease. The coat protein (CP) and the putative movement protein (MP) genes…”
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  13. 13

    Genetic Diversity of Apple Cultivars Growing in Kazakhstan by Omasheva, M. E., Pozharsky, A. S., Smailov, B. B., Ryabushkina, N. A., Galiakparov, N. N.

    Published in Russian journal of genetics (01-02-2018)
    “…Identification of the varieties is the primary requirement for characterization of the gene pool in agricultural production and implementation of breeding…”
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  14. 14

    Engineering the genome of Grapevine virus A into a vector for expression of proteins in herbaceous plants by Haviv, Sabrina, Galiakparov, Nurbol, Goszczynski, Dariusz E., Batuman, Ozgur, Czosnek, Henryk, Mawassi, Munir

    Published in Journal of virological methods (01-03-2006)
    “…Grapevine virus A (GVA), a species of the genus Vitivirus, consists of a ∼7.4 kb single-stranded RNA genome of positive polarity, organized into five open…”
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  15. 15

    Two classes of subgenomic RNA of grapevine virus A produced by internal controller elements by Galiakparov, Nurbol, Goszczynski, Dariusz E, Che, Xibing, Batuman, Ozgur, Bar-Joseph, Moshe, Mawassi, Munir

    Published in Virology (New York, N.Y.) (01-08-2003)
    “…Grapevine virus A (GVA), a species of the recently established genus Vitivirus, consists of an ∼7.3-kb single-stranded RNA genome of positive polarity,…”
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  16. 16

    ORF 5 of grapevine virus A encodes a nucleic acid-binding protein and affects pathogenesis by Galiakparov, Nurbol, Tanne, Edna, Mawassi, Munir, Gafny, Rony, Sela, Ilan

    Published in Virus genes (01-12-2003)
    “…A previous functional analysis of the genome of grapevine virus A (GVA) was not conclusive as to the role of open reading frame 5 (ORF 5). This ORF encodes a…”
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  17. 17

    Infectious RNA transcripts from grapevine virus A cDNA clone by Galiakparov, N, Tanne, E, Sela, I, Gafny, R

    Published in Virus genes (1999)
    “…A full length cDNA clone of grapevine virus A (GVA) was constructed downstream from the bacteriophage T7 RNA polymerase promoter. Capped in vitro-transcribed…”
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  18. 18

    Abstracts of Presentations at the 19th Congress of the Israeli Phytopathological Society: February 16–17, 1998 ARO, the Volcani Center, Bet Dagan, Israel by Raviv, M., Nir, I., Pinkas, Y., Shabi, E., Elisha, S., Maimon, Marcell, Szmulewich, Y., Freeman, S., Nitzani, Y., Katan, Talma, Luzzati, Y., Tsror, Leah, Erlich, Orly, Hazanovsky, Marina, Nachmias, A., Aharon, M., Shtienberg, D., Vintal, H., Brener, S., Retig, B., Rekah, Y., Katan, J., Manisterski, J., Ben-Yehuda, Pnina, Eyal, Z., Eilam, Tamar, Anikster, Y., Shaharabani, Galit, Elad, Y., Dinoor, A., Yedidia, I., Chet, I., Zutra, D., Hadas, Rivka, Kritzman, G., Ben-Yephet, Y., Reuven, Michal, Mor, I., Gera, A., Gerson, U., Taler, D., Cohen, Y., Bitton, Ruth, Baider, A., Reuveni, M., Benhamou, Nicolle, Kapulnik, Y., Ezrati, Smadar, Schuster, Sylvie, Eshel, A., Assaraf, M., Ginzburg, C., Yarden, O., Yatzkan, Enat, Korolev, Nadia, Jimenez-Diaz, R. M., Maor, R., Robinson, M., Puyesky, Mariella, Horwitz, B. A., Sharon, A., Pivonia, S., Kigel, J., Cohen, R., Tanne, Edna, Orenstein, Sigalit, Sela, I., Zehavi, Tirza, Klein, M., Gafny, R., Rubinson, E., Galiakparov, N., Piestun, D., Tanne, E., Cohen, J., Zeidan, M., Franck, A., Bekelman, E., Gotman, S., Kritzman, Anat, Bekelman, Elena, Raccah, B., Manor, H., Ganaim, N., Yunis, H., Kadouri, D., Gal-On, A., Peng, Y. -H., Wang, Y., Singer, Sima, Huet, H., Edelstein, M., Paris, H. S., Offenbach, Rivka, Levita, Rachel, Maduel, A., Isikson, A., Ucko, Orna, Galperin, Mariana, Kenigsbuch, D.

    Published in Phytoparasitica (01-06-1998)
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  19. 19

    Correction by Zeidan, Muhamad, Czosnek, Henryk, van den Heuvel, J F; J; M, Taiwo, M A, Martinez, B, López-moya, J J, Salomon, Raffi, Raccah, B, Singer, S, Huet, H, Visser, Peter B, Bol, John F, Hernández, Carmen, Brown, Derek J; F, Culbreath, A K, Todd, J W, Mcpherson, R M, Sherwood, J L, Schönfelder, M, Barg, E, Syller, J, Romero, Javier, Molina-garcia, Antonio, Babin, Mar, Palukaitis, P, Kaplan, I B, Puehringer, H, Katinger, H, Carrier, K, Sanfacon, H, Balázs, Ervin, Astier, S, Renou, J P, Djelouah, K, García, M L, Benvenisti, Luna, Gelman, Boris, Cerovská, N, Filigarová, M, Nemchinov, L, Hadidi, A, Randles, J W, Wilford, J N, Chapman, S, King, Linda, Possee, Robert, Zhu, Fanxiu, Qi, Yipeng, Huang, Yongxiu, Hu, Jianhong, Oker-blom, Christian, Chauhan, B K, French, T J, Finkelstein, Y, Wang, Fushan, Watson, S K, Kalmakoff, J, Vlak, J M, Heldens, J G; M, Chejanovsky, N, Gershburg, E, Faruchi, S, Stockholm, D, Zilberberg, N, King, L A, Windass, J D, Jacobs, C, Jarvis, D L, Reilly, L, Gordon, K H; J, Lincoln, M R, Hanzlik, T N, Larkin, P J, Stephens, Rachel, Barnett, Anna, Clarke, E, Tristem, Michael, Cory, Jennifer, Li, Shoudong, Qi, Bing, Wang, Jiawang, Alaoui-ismaili, M H, Kobayashi, J, Inouye, K, Kimura, T, Nuss, D L, Matsuura, Y, García, Juan Antonio, Miller, W A, Browning, K, Potrykus, Ingo, Li, Liu, Burns, Thomas M, Hefferon, K L, Hulanicka, D, Juszczuk, M, Iskakov, B K, Dale, J L, Beetham, P R, Harding, R M

    Published in Phytoparasitica (01-06-1998)
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