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2015 | 18 | 4 |

Tytuł artykułu

Induced chemical mutation in Liatris ligulistylis and Liatris pycnostachya

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Wydawca

-

Rocznik

Tom

18

Numer

4

Opis fizyczny

http://www.ejpau.media.pl/volume18/issue4/art-06.html

Twórcy

  • Department of Plant Genetics, Breeding and Biotechnology, West Pomeranian University of Technology in Szczecin, Slowackiego St. 17, 71-434 Szczecin, Poland
autor
  • Study of Ornamental Plants, West Pomeranian University of Technology in Szczecin, 3A Papieza Pawla VI St. 71-459 Szczecin, Poland
autor
  • Department of Plant Genetics, Breeding and Biotechnology, West Pomeranian University of Technology in Szczecin, Slowackiego St. 17, 71-434 Szczecin, Poland

Bibliografia

  • Berenschot A.S., Zucchi M.I., Tulmann-Neto A., Quecini V., 2008. Mutagenesis in Petunia x hybrida Vilm. and isolation of a novel morphological mutant. Braz. J. Plant Physiol., 20, 2, 16–27.
  • Bhagwat B., Duncan E.J., 1998. Mutation breeding of banana cv. Highgate (Musa spp., AAA Group) for tolerance to Fusarium oxysporum f. sp. cubense using chemical mutagens. Sci. Hort., 73, 11–22.
  • Bhate R.H., 2001. Chemically induced floral morphological mutations in two cultivars of Ipomoea purpurea (L.), Roth. Sci. Hort., 88, 133–145.
  • Hofman N.E., Raja R., Nelson R.L., Korban S.S., 2004. Mutagenesis of embryogenic cultures of soybean and detecting polymorphisms using RAPD markers. Biol. Plant., 48, 2, 173–177.
  • Jain S.M., 2005. Major mutation-assisted plant breeding programs supported by FAO/IAEA. Plant Cell Tiss Org. Cult., 82, 113–123.
  • Jain S.M., 2006. Mutation-Assisted Breeding for Improving Ornamental Plants. Acta Hort., 714, 85–98.
  • Kelly C.A., Dyer R.J. 2002. Demographic consequences of inflorescence-feeding insects for Liatris cylindracea, an interoparous perennial. Oecologia, 132, 350–360.
  • Kochieva E.Z., Ryzhowa N.N., Khrapalova I.A., Pukhalskyi V.A., 2002. Genetic diversity and phylogenetic relationships in the genus Lycopersicon (Tourn.) Mill. as revealed by inter-simple sequence repeat (ISSR) analysis. Rus. J. Genet., 38, 958–966.
  • Koh Y.C., Davies F.T., 2001. Mutagenesis and in vitro culture of Tillandsia fasciculata Swartz var. fasciculata (Bromeliaceae). Sci. Hort., 87, 225–240.
  • Krupa-Małkiewicz M., 2009. Wpływ mutagenów chemicznych na cechy morfologiczne u petunii (Petunia × atkinsiana D.Don) [Influence of chemical mutagens on morphological traits in petunia (Petunia × atkinsiana D.Don)]. Biul. IHAR, 251, 305–314 [in Polish].
  • Krupa-Małkiewicz M., 2010. Influence of chemical mutagens on morphological traits in kalanchoe (Kalanchoe hybrida). Folia Pomer. Univ. Technol. Stetin, 279, 15, 11–18.
  • Lammerts van Bueren E.T., Backes G., de Vriend H., Østergård H., 2010. The role of molecular markers and marker assisted selection in breeding for organic agriculture. Euphytica, 175, 51–64.
  • Latado R.R., Adames A.H., Neto A.T., 2004. In vitro mutation of chrysanthemum (Dendranthema grandiflora Tzvelev) with ethylmethanesulphonate (EMS) in immature floral pedicels. Plant Cell Tiss Org. Cult., 77, 103–106.
  • Lema-Rumińska J., Zalewska M., Sadoch Z., Jerzy M., 2005. Identification of chrysanthemum (Dendranthema grandiflora Tzvelev) mutants on Nero and Wonder groups using RAPD markers. EJPAU, 8, 2, #04.
  • Li X., Zhang Y., 2002. Reverse genetics by fast neutron mutagenesis in higher plants. Genomics, 2, 254–258.
  • Lu G., Zhang X., Zou Y., Zou Q., Xiang X., Cao J., 2007. Effect of radiation on regeneration of Chinese narcissus and analysis of genetic variation with AFLP and RAPD markers. Plant Cell Tiss Organ. Cult., 88, 319–327.
  • Mandal A.K.A., Chakrabarty D., Datta S.K., 2000. Application of in vitro techniques in mutation breeding of chrysanthemum. Plant Cell Tiss Org. Cult., 60, 33–38.
  • Maluszynski M., Nichterlein K., van Zanten L., Ahloowalia B., 2000. Official released mutant varieties – the FAO/IAEA database. Mut. Breed, 12, 1–88.
  • McManus L.J., Sasse J., Blomstedt C.K., Bossinger G., 2007. The effect of ethyl methanesulfonate treatment on Eucalyptus pollen behavior in vitro. Trees, 21, 379–383.
  • Patade V.Y. Suprasanna P., 2008. Radiation induced in vitro mutagenesis for sugar cane improvement. Sugar Tech., 10, 1, 14–19.
  • Predieri S., 2001. Mutation induction and tissue culture in improving fruits. Plant Cell, Tiss. Org. Cult., 64, 185–210.
  • Rzepka-Plevneš D., Misiak K., Skrzypiec K., 1998. Wpływ azydku sodu i gibereliny na zmiany fenotypowe petunii (Petunia x hybrida) [Influence of sodium aside and giberelin on phenotype traits in petunia (Petunia x hybrida)]. Zesz. Nauk. AR im. H. Kołłątaja w Krakowie, 33, 769–772 [in Polish].
  • Rzepka-Plevneš D., Smolik M., Chochłowska A., Krupa-Małkiewicz M., 2004. Molekularna charakterystyka wybranych grup roślin pokolenia M1 petunii (Petunia x hybrida) przy użyciu markerów ISSR [Molecular characteristic of selected groups of plants of the M1 generation of petunia (Petunia x hybrida) using the ISSR markers]. Folia Univ. Agric. Stetin., Agric., 242, 98, 157–160 [in Polish].
  • Van de Peer Y., De Wachter R., 1994. TREECON for Windows: a software package for the construction and drawing of evolutionary trees for the Microsoft Windows environment. Computer App. Biosci., 10, 569–570.
  • Wani M.R., Khan S., Kozgar M.J., 2011. Induced chlorophyll mutations. I Mutagenic effectiveness and efficiency of EMS, HZ and SA in mungbean. Front. Agric. China, 5, 4, 514–518.
  • Zietkiewicz E., Rafalski A., Labuda S.D., 1994. Genomic fingerprinting by simple sequence repeat (SSR)-anchored polymerase chain reaction amplification. Genomics, 20, 176–183.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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