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2016 | 58 | 2 |

Tytuł artykułu

High frequency of doubled haploid plant production in spelt wheat

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
This is the first study to report an efficient anther culture (AC) method for spelt wheat, which has an increasing importance not only in applied research but also in organic farming and changing nutritional standards. In this study, an efficient AC protocol has been described for ‘GK Fehér’ spelt wheat. The number of AC-derived embryolike structures (ELS) was 62.2/100 anthers, from which we were able to regenerate 30.6 green plantlets per 100 anthers. The percentage of green plantlets production was 89.0% among the regenerated plantlets, while the phenomenon of albinism was restricted (3.8/100 anthers). Altogether, from AC of ‘GK Fehér’ 306 green plantlets were produced in vitro and 241 plants were acclimatized to the greenhouse conditions. Based on ploidy level analyses, 83 spontaneous doubled haploid (DH) plants were produced (8.3 DH plants/100 anthers), so the percentage of spontaneous rediploidization was 34.4%. The spontaneous DH plants produced fertile spikes, while a few seeds were harvested from seven partially fertile plants.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

58

Numer

2

Opis fizyczny

p.107-112,fig.,ref.

Twórcy

autor
  • Cereal Research Non-Profit Ltd., Department of Biotechnology, P.O. Box 391, H-6701 Szeged, Hungary
autor
  • Department of Plant Biotechnology, Plant Cell Biology Group, Agricultural Biotechnology Institute, Szent-Gyorgyi Albert u. 4, 2100 Godollo, Hungary
autor
  • Cereal Research Non-Profit Ltd., Department of Minor Cereals, P.O. Box 391, H-6701 Szeged, Hungary
autor
  • Department of Genetics, Cell Biology and Anatomy, University of Nebraska Medical Center, 42 nd and Emile street, Omaha, NE, 68198, USA
autor
  • Cereal Research Non-Profit Ltd., Department of Biotechnology, P.O. Box 391, H-6701 Szeged, Hungary

Bibliografia

  • BARNABÁS B, PFAHLER PL, and KOVÁCS G. 1991. Direct effect of colchicine on the microspore embryogenesis to produce dihaploid plants in wheat (Triticum aestivum L.). Theoretical and Applied Genetics 81: 675–678.
  • BROUGHTON S. 2011. The application of n-butanol improves embryo and green plant production in anther culture of Australian wheat (Triticum aestivum L.) genotypes. Crop and Pasture Science 62: 813–822.
  • CASTILLO AM, SANCHEZ-DÍAZ RA, and VALLÉS MP. 2015. Effect of ovary induction on bread wheat anther culture: ovary genotype and developmental stage, and candidate gene association. Frontiers in Plant Sciences 6: 402.
  • DVORAK J, DEAL KR, LUO MC, YOU FM, VON BORSTEL K, and DEHGHANI H. 2012. The origin of spelt and free-threshing hexaploid wheat. Journal of Heredity 103: 426–441.
  • DUNWELL JM. 2010. Haploids in flowering plants: origins and exploitation. Plant Biotechnology Journal 8: 377–424.
  • ESCARNOT E, THIBAUT C, and FORGEOIS P. 2014. Study of the impact of growth substance treatment and maize (Zea mays L.) variety in spelt (Triticum spelta L.) haplodiploidization. Biotechnology, Agronomy, Society and Environment 18: 32–36.
  • GOMEZ-BECERRA HF, ERDEM H, YAZICI A, TUTUS Y, TORUN B, OZTURK L, and CAKMAK I. 2010. Grain concentration of protein and mineral nutrients in a large collection of spelt wheat grown under different environments. Journal of Cereal Science 52: 342–349.
  • GUZMÁN C, MEDINA-LARQUÉ AS, VELU G, GONZÁLEZ-SANTOYO H, SINGH RP, HUERTA-ESPINO J, ORTIZ-MONASTERIO I, and PENA RJ. 2014. Use of wheat genetic resources to develop biofortified wheat with enhanced grain zinc and iron concentration and desirable processing quality. Journal of Cereal Science 60: 617–622.
  • HOLME IB, OLESEN A, HANSEN NJP, and ANDERSEN SB. 1999. Anther and isolated microspore culture response of wheat lines from northwestern and eastern Europe. Plant Breeding 118: 111–117.
  • JAUHAR PP, XU SS, and BAEZINGER PS. 2009. Haploidy in cultivated wheats: induction and utility in basic and applied research. Crop Science 49: 737–755.
  • KRZEWSKA M, CZYCZYLO-MYSZA I, DUBAS E, GOLEBIOWSKA-PIKANIA G, and ZUR I. 2015. Identification of QTLs associated with albino plant formation and some new facts concerning green and albino ratio determinants in triticale (X Triticosecale Wittm.) anther culture. Euphytica 206: 263–278.
  • KUMARI M, CLARKE HJ, SMALL I, and SIDDIQUE KHM. 2009. Albinism in Plants: A major bottleneck in wide hybridization, androgenesis and doubled haploid culture. Critical Reviews in Plant Sciences 28: 393–409.
  • LANTOS C, WEYEN J, ORSINI JM, GNAD H, SCHLIETER B, LEIN V, KONTOWSKI S, JACOBI A, MIHÁLY R, BROUGHTON S, and PAUK J. 2013. Efficient application of in vitro anther culture for different European winter wheat (Triticum aestivum L.) breeding programs. Plant Breeding 132: 149–154.
  • LANTOS C, JUHÁSZ AG, VÁGI P, MIHÁLY R, KRISTÓF Z, and PAUK J. 2012. Androgenesis induction in microspore culture of sweet pepper (Capsicum annuum L.). Plant Biotechnology Reports 6: 123–132.
  • MAKOWSKA K, and OLESZCZUK S. 2014. Albinism in barley androgenesis. Plant Cell Reports 33: 385–392.
  • MALUSZYNSKI M, KASHA KJ, FORSTER BP, and SZAREJKO I. 2003. Doubled Haploid Production in Crop Plants. A Manual. Kluwer Academic Publishers, Dordrecht, The Netherlands.
  • MARQUES C, D’AURIA L, CANI PD, BACCELLI C, ROZENBERG R, RUIBAL-MENDIETA NL, PETITJEAN G, DELACROIX DL, QUETONLECLERCQ J, HABIB-JIWAN JL, MEURENS M, and DELZENNE NM, 2007. Comparison of glycemic index of spelt and wheat bread in human volunteers. Food Chemistry 100: 1265–1271.
  • MUTERKO A, KALENDAR S, COCKRAM J, and BALASHOVA I. 2015. Discovery, evaluation and distribution of haplotypes and new alleles of the Photoperiod-A1 gene in wheat. Plant Molecular Biology 88: 149–164.
  • NIELSEN NH, ANDERSEN SU, STOUGAARD J, JENSEN A, BACKES G, and JAHOOR A. 2015. Chromosomal regions associated with the in vitro culture response of wheat (Triticum aestivum L.) microspores. Plant Breeding 134: 255–263.
  • NIU Z, JIANG A, ABU HAMMAD W, OLADZADABBASABADI A, XU SS, MERGOUM M, and ELIAS EM. 2014. Review of doubled haploid production in durum and common wheat through wheat × maize hybridization. Plant Breeding 133: 313–320.
  • OUYANG JW, JIA SE, ZHANG C, CHEN X, and FEN G. 1989. A new synthetic medium (W14) for wheat anther culture. Annual Report, 91-92. Institute of Genetics, Academia Sinica, Beijing.
  • OUYANG JW, LIANG H, JIA S, ZHANG C, ZHAO TH, HE LZ, and JIA X. 1994. Studies on the chromosome doubling of wheat pollen plants. Plant Science 98: 209-214.
  • PAUK, J, MIHÁLY R, and PUOLIMATKA M. 2003. Protocol of wheat (Triticum aestivum L.) anther culture. In: MALUSZYNSKI M, KASHA KJ, FORSTER BP, and SZAREJKO I [eds.], Doubled Haploid Production in Crop Plants. A Manual, 59–64 Kluwer Academic Publishers, Dordrecht, The Netherlands.
  • SCHMID J. 1990. In vitro production of haploids in Triticum spelta. In: Bajaj, Y. P. S. [ed.], Biotechnology and in Agriculture and Forestry – 13 Wheat, 363–381. Springer-Verlag, Berlin, Heidelberg.
  • SORIANO M, CISTUÉ L, VALLÉS MP, and CASTILLO AM. 2007. Effects of colchicine on anther and microspore culture of bread wheat (Triticum aestivum L.). Plant Cell Tissue and Organ Culture 91: 225–234.
  • TAKÁCS I, KOVÁCS G, and BARNABÁS B. 1994. Analysis of the genotypic effect on different developmental pathways in gametophyte cultures. Plant Cell Reports 13: 227–230.
  • TOURAEV A, FORSTER BP, and MOHAN JAIN S. 2009. Advances in Haploid Production in Higher Plants. Springer Science + Business Media B.V., Dordrecht, Netherlands.
  • TUVESSON S, LJUNGBERG A, JOHANSSON N, KARLSSON KE, SUIJS LW, and JOSSET JP. 2000. Large-scale production of wheat and triticale double haploids through the use of a singleanther culture method. Plant Breeding 119: 455–459.
  • VU NT, CHIN J, PASCO JA, KOVACS A, WING LW, BÉKÉS F, and SUTER DAI. 2015. Prevalence of Wheat and Spelt sensitivity in a randomly selected Australian population. Cereal Research Communications 43: 97–107.
  • ZUK-GOLASZEWSKA K, KUROWSKI T, ZALUSKI D, SADOWSKA M and GOLASZEWSKI J. 2015. Physio-agronomic performance of spring cultivars T-aestivum and T-spelta grown in organic farming system. International Journal of Plant Production 9: 211–236.

Typ dokumentu

Bibliografia

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Identyfikator YADDA

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