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2004 | 46 |

Tytuł artykułu

Cleared-ovule technique used for rapid access to early embryo development in Secale cereale x Zea mays crosses

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Nine rye genotypes and pollen mixture of three maize cultivars were evaluated for embryo formation in rye x maize crosses. Based on cleared ovule preparations, the development of embryo and endosperm were observed at 48, 72 and 96 h after pollination. Embryos were formed in eight cross combinations (3.3% to 23.3% depending on rye genotype), but in five combinations ovules had both embryos and endosperm nuclei. In a sample of 344 cleared ovules, 28 (8.1%) had both embryo and endosperm, 15 (4.4%) had only embryo, and 13 (3.8%) had only endosperm.

Wydawca

-

Rocznik

Tom

46

Opis fizyczny

p.133-137,fig.,ref.

Twórcy

autor
  • Polish Academy of Sciences, Strzeszynska 34, 60-479 Poznan, Poland

Bibliografia

  • Altenhofer P, Oertel C, and Matzk F. 1997. Chromosome elimination in wide crosses of Poaceae. Current topics in plant cytogenetics related to plant improvement. International Symposium held at Tulln, Austria, February 21-22, 1997, 310-317.
  • Comeau A, Nadeau P, Ploudre A, Simard R, Mays O, Kelly S, Harper L, Lettere J, Landry B, and St-Pierre CA. 1992. Media for the in ovulo culture of proembryos of wheat and wheat-derived interspecific hybrids or haploids. Plant Science 81: 117-125.
  • Deimling S, Flehinghaus-Roux T, Röber F, Schechert A, Roux SR, and Geiger HH. 1994. Doubled haploid production-now reproducible in rye. In: Abstracts VIIIth International Congress of Plant Tissue and Cell Culture, Firenze, June 12-17, 1994, 95.
  • Herr JM JR. 1971. A new clearing-squash technique for the study of ovule development in angiosperms. American Journal of Botany 58: 785-790.
  • Immonen S. 1999. Androgenetic green plants from winter rye, Secale cereale L., of diverse origin. Plant Breeding 118: 319-322.
  • Immonen S, and Anttila H. 1999. Cold pretreatment to enhance green plant regeneration from rye anther culture. Plant Cell Tissue and Organ Culture 57: 121-127.
  • Immonen S, and Anttila H. 2000. Media composition and anther plating for production of androgenetic green plants from cultivated rye (Secale cereale L.). Journal of Plant Physiology 156: 204-210.
  • Kasha KJ, and Kao KN. 1970. High frequency haploid production in barley (Hordeum vulgare L.). Nature 225: 874-876.
  • Laurie DA, and Bennett MD. 1988. The production of haploid wheat plants from wheat x maize crosses. Theoretical and Applied Genetics 76: 393-397.
  • Laurie DA, O’Donoughue LS, and Bennett MD. 1990. Wheat x maize and other wide sexual hybrids: their potential for genetic manipulation and crop improvement. In: Gustafson JP [ed.], Genetic manipulation in plant improvement II, 95-126. Plenum Press, New York.
  • Laurie DA, and Reymondie S. 1991. High frequencies of fertilization and haploid seedling production in crosses between commercial hexaploid wheat varieties and maize. Plant Breeding 106: 182-189.
  • O’Donoughue LS, and Bennett MD. 1994. Comparative responses of tetraploid wheats pollinated with Zea mays L. and Hordeum bulbosum L. Theoretical and Applied Genetics 88: 673-680.
  • Riera-Lizarazu O, Mujeeb-Kazi A, and William MDHM. 1992. Maize (Zea mays L.) mediated polyhaploid production in some Triticeae using a detached tiller method. Journal Genetic Breeding 46: 335-346.
  • Suenaga K, and Nakajima K. 1989. Efficient production of haploid wheat (Triticum aestivum) through crosses between Japanese wheat and maize (Zea mays). Plant Cell Reports 8: 263-266.
  • Suenaga K, Tamaki M, and Nakajima K. 1991. Influence of wheat (Triticum aestivum) and maize (Zea mays) genotypes on haploid wheat production in crosses between wheat and maize. Bulletin National Institute of Agrobiology 6: 131-142.
  • Ślusarkiewicz-Jarzina A, Ponitka A, and Zwierzykowski Z. 1994. In vitro culture of ovules and embryos in intergeneric hybridization within the Lolium-Festuca complex. Genetica Polonica 35: 135-142.
  • Ślusarkiewicz-Jarzina A, Ponitka A, and Wojciechowska B. 2000. Rapid assessment of early embryo development in some wide crosses of cereals. Journal of Applied Genetics 41: 75-80.
  • Wędzony M, and Van Lammeren AAM. 1996. Pollen tube growth and early embryogenesis in wheat x maize crosses influenced by 2,4-D. Annals of Botany 77: 639-647.
  • Wędzony M, Marcińska I, Ponitka A, Ślusarkiewicz-Jarzina A, and Woźna J. 1998. Production of doubled haploids in triticale (xTriticosecale Wittm.) by means of crosses with maize (Zea mays L.) using picloram and dicamba. Plant Breeding 117: 211-215.
  • Young BA, Sherwood RT, and Bashaw EC. 1979. Cleared-pistil and thick-sectioning techniques for detecting aposporous apomixis in grasses. Canadian Journal of Botany 57:1668-1672.
  • Zenkteler M, and Nitzsche W. 1984. Wide hybridization experiments in cereals. Theoretical and Applied Genetics 68: 311-315.
  • Zhang J, Friebe B, Raupp WJ, Harrison SA, and Gill BS. 1996. Wheat embryogenesis and haploid production in wheat x maize hybrids. Euphytica 90: 315-324.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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