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Evidence of natural hybridization between Aegilops geniculata and wheat under field conditions in Central Spain

Published online by Cambridge University Press:  23 January 2007

Iñigo Loureiro
Affiliation:
Dpto. Protección Vegetal. INIA. Ctra. La Coruña Km. 7.5, 28040 Madrid, Spain
María Concepción Escorial
Affiliation:
Dpto. Protección Vegetal. INIA. Ctra. La Coruña Km. 7.5, 28040 Madrid, Spain
José María García-Baudín
Affiliation:
Dpto. Protección Vegetal. INIA. Ctra. La Coruña Km. 7.5, 28040 Madrid, Spain
María Cristina Chueca
Affiliation:
Dpto. Protección Vegetal. INIA. Ctra. La Coruña Km. 7.5, 28040 Madrid, Spain

Abstract

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This study deals with hybrids between Aegilops geniculata and bread wheat, Triticum aestivum L., detected in two Ae. geniculata populations in the “Meseta Central”, Spain’s central plateau where wheat is a major crop. Morphological traits and pentaploid chromosome numbers were used to identify hybrids in 2004 and 2005. The frequency of hybridization under natural conditions was calculated for one of these populations. Six hybrids were detected from a sample of 3158 seeds from this population. The hybrids were mainly sterile but seed set can be found. This study extends the range of documented hybridization to include central Spain. The potential risks associated with natural hybridization in the context of transgenic wheat cultivation are discussed.

Type
Research Article
Copyright
© ISBR, EDP Sciences, 2006

References

Cifuentes, M, Blein, M, Benavente, E (2006) A cytomolecular approach to assess the potential of gene transfer from a crop (Triticum turgidum L.) to a wild relative (Aegilops geniculata Roth.). Theor. Appl. Genet. 112: 657664 CrossRef
Darmency, H (1994) The impact of hybrids between genetically modified crop plants and their related species – introgression and weediness. Mol. Ecol. 3: 3740 CrossRef
David, JL, Benavente, E, Brès-Patry, C, Dusautoir, J, Echaide, M (2004) Are neopolyploids a likely route for a transgene walk to the wild? The Aegilops ovata × Triticum turgidum durum case. Biol. J. Linn. Soc. 82: 503510 CrossRef
Fernandez-Calvin, B, Orellana, J (1992) Relationships between pairing frequencies and genome affinity estimations in Aegilops ovata × Triticum aestivum hybrid plants. Heredity 68: 165172 CrossRef
Hegde, SG, Waines, JG (2004) Hybridization and introgression between bread wheat and wild and weedy relatives in North America. Crop Sci. 44: 11451155 CrossRef
Jacot Y, Ammann K, Rufener Al Mazyad P, Chueca C, David J, Gressel J, Loureiro I, Wang H, Benavente E (2004) Hybridization between wheat and wild relatives, a European Union research programme. In den Nijs DBH, Bartsch D, Sweet J, eds, Introgression from Genetically Modified Plants into Wild Relatives, Chapter 6, CABI Publishing, UK, pp 1–17
Kimber G, Feldman M (1987) Wild wheat, an introduction. Special Report 353, College of Agriculture, University of Missouri, Columbia, 146 pp
Loureiro I (2005) Estudio del riesgo potencial agrícola y medioambiental del cultivo de trigo tolerante a herbicidas. Ph.D. thesis. Universidad Complutense de Madrid, Madrid
Loureiro I, Escorial MC, García-Baudín JM, Chueca MC (2006) Hybridization between wheat (Triticum aestivum) and the wild species Aegilops geniculata and A. biuncialis under experimental field conditions. Agric. Ecosyst. Environ. doi:10.1016/j.agee.2006.10.015
MAPA, Ministerio de Agricultura, Pesca y Alimentación (Spanish Ministry of Agriculture, Food and Fisheries) (2006) Avances, Superficies y Producciones Agrícolas. Secretaria General Técnica, Estadísticas. Junio 2005. http://www.mapa.es/es/estadistica/pags/superficie/superficie.htm
USDA Plant Database (2005) http://plants.usda.gov/cgi_bin/
van Slageren MW (1994) Wild wheats: a monograph of Aegilops L. and Ambylopyrum (Jaub. & Spach.) Eig (Poaceae). Wageningen Agricultural University and ICARDA, Wageningen, 513 pp
Waines JG, Barnhard D (1992) Biosystematic research in Aegilops and Triticum. Hereditas 116: 207–212
Waines, JG, Hegde, SG (2003) Intraspecific gene flow in bread wheat as affected by reproductive biology and pollination ecology of wheat flowers. Crop Sci. 43: 451463 CrossRef
Wang, Z, Zemetra, RS, Hanson, J, Mallory-Smith, CA (2001) The fertility of wheat × jointed goatgrass hybrid and its backcross progenies. Weed Sci. 49: 340345 CrossRef
Zaharieva, M, Monneveux, P (2006) Spontaneous hybridization between bread wheat (Triticum aestivum L.) and its wild relatives in Europe. Crop Sci. 46: 512– 527 CrossRef
Zemetra, RS, Hansen, J, Mallory-Smith, CA (1998) Potential for gene transfer between wheat (Triticum aestivum) and jointed goatgrass (Aegilops cylindrica). Weed Sci. 46: 313– 317