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Original Articles

Evolution of wild wheat and barley and crop improvement: Studies at the Institute of Evolution

Pages 251-262 | Published online: 14 Mar 2013

References

  • Acevedo, E. 1993. Potential of carbon isotope discrimination as a selection criterion in barley breeding. In: Ehleringer J. R., Hall, A. E., Farquhar, G. D., eds. Stable isotopes and plant carbon-water relations. Academic Press, San Diego, pp. 399-417.
  • Ackerly, D., Dudley, E., Sultan, S., Schmitt, J., Coleman, J., Linder, C., Sandquist, R., Geber, M., Evans, A., Dawson, T., Lechowicz, M. 2000. The evolution of plant ecophysiological traits: recent advances and future directions. Bio-Science50: 979-995.
  • Anikster, Y., Wahl, I. 1979. Coevolution of the rust fungi on Gramineae and Liliaceae and their host. Annu. Rev. Phytopathol.17: 367-403.
  • Araus, J. L., Bort, J., Steduto, P., Villegas, D., Royo, C. 2003. Breeding cereals for Mediterranean conditions: ecophysiology clues for biotechnology application. Ann. Appl. Biol.142: 129-141.
  • Baek, H. J., Beharav, A., Nevo, E. 2003. Ecological-genomic diversity of microsatellites in wild barley, Hordeum spontaneum, populations in Jordan. Theor. Appl. Genet.106: 397-410.
  • Brown, A. H. D., Feldman, M. W., Nevo, E. 1980. Multilocus structure of natural populations of Hordeum spontaneum.Genetics96: 523-536.
  • Cakmak, I., Torun, A., Millet, E., Feldman, M., Fahima, T., Korol, A. B., Nevo, E., Braun, H. J., Ozkan, H. 2004. Triticum dicoccoides: an important genetic resource for increasing zinc and iron concentration in modern cultivated wheat. Soil Sci. Plant Nutr.50: 1047-1054.
  • Chalmers K. J., Waugh, R., Watters, J., Forster, B. P., Nevo, E., Abbott, R. J., Powell, W. 1992. Grain isozyme and ribosomal DNA variability in Hordeum spontaneum populations from Israel. Theor. Appl. Genet.84: 313-22.
  • Chen, G., Krugman, T., Fahima, T., Korol, A. B., Nevo, E. 2002. Comparative study of morphological and physiological traits related to drought resistance between xeric and mesic Hordeum spontaneum lines in Israel. Barley Genet. News32: 22-33.
  • Chen, G., Krugman, T., Fahima, T., Zhang, F., Korol, A. B., Nevo, E. 2004a. Differential patterns of germination and desiccation tolerance of mesic and xeric wild barley (Hordeum spontaneum) in Israel. J. Arid Environ.56: 95-105.
  • Chen, G., Suprunova, T., Krugman, T., Fahima, T., Nevo, E. 2004b. Ecogeographic and genetic determinants of kernel weight and color of wild barley (Hordeum spontaneum) populations in Israel. Seed Sci. Res.14: 137-146.
  • Chen, G., Krugman, T., Fahima, T., Chen, K., Hu, Y., Röder, M. S., Nevo, E., Korol, A. B. 2008. Chromosomal regions controlling seedling drought resistance of Israeli wild barley, Hordeum spontaneum, populations. Submitted for publication.
  • Close, T. J., Dong-Woog, C., Salvi, S., Tuberosa, R., Ryabushkina, N., Nevo, E. 2000. Allelic variation at loci encoding dehydrins in wild and cultivated barley. Plant and Animal Genome VIII, San Diego, 9-12 January 2000 (Abstract).
  • Cronin, J. K., Bundock, P. C., Henry, R. J., Nevo, E. 2007. Adaptive climatic molecular evolution in wild barley at the lsa defense locus. Proc. Natl. Acad. Sci. USA104(8): 2773-2778.
  • Darwin, C. 1905. The variation of animals and plants under domestication. John Murray, London (popular edition in two volumes). 566 pp.
  • Dinoor, A., Eshed, N., Ecker, R., Gerechter-Amitai, Z., Solel, Z., Manisterski, J., Anikster, Y. 1991. Fungal diseases of wild teraploid wheat in a natural stand in northern Israel. Isr. J. Bot.40: 481-500.
  • Fahima, T., Röder, M. S., Grama, A., Nevo, E. 1998. Microsatellite DNA polymorphism divergence in Triticum dicoccoides accessions highly resistant to yellow rust. Theor. Appl. Genet.96: 187-195.
  • Fahima, T., Sun, G. L., Beharav, A., Krugman, T., Beiles, A., Nevo, E., 1999. RAPD polymorphism of wild emmer wheat population, Triticum dicoccoides, in Israel. Theor. Appl. Genet.98: 434-447.
  • Fahima, T., Röder, M. S., Wendehake, K., Kirzhner, V. M., Nevo, E. 2002. Microsatellite polymorphism in natural populations of wild emmer wheat, Triticum dicoccoides, in Israel. Theor. Appl. Genet.104: 17-29.
  • Fetch, T. G., Steffenson, B. J., Nevo, E. 2003. Diversity and sources of multiple disease resistance in Hordeum spontaneum.Plant Dis.87: 1439-1448.
  • Gupta, P. K., Sharma, P. K., Balyan, H. S., Roy, J. K., Sharma, S., Beharav, A., Nevo, E. 2002. Polymorphism at rDNA loci in barley and its relation with climatic variables. Theor. Appl. Genet.104: 473-481.
  • Gustafson, J. P., Raskina, O., Ma, X. F., Nevo, E. 2008. Wheat evolution, domestication, and improvement. In: Carver, B., ed. Wheat science and trade. Wiley Blackwell Publication, New York, in press.
  • Handley, L. L., Nevo, E., Raven, J. A., Martinez-Carrasco, R., Scrimgeour, C. M., Pakniyat, H., Forster, B. P. 1994. Chromosome 4 controls potential water use efficiency (δ13C) in Barley. J. Exp. Bot.45: 1661-1663.
  • Handley, L. L., Robinson, D. R., Forster, B. P., Ellis, R. P., Scrimgeour, C. M., Gordon, D. C., Nevo, E., Raven, J. A. 1997a. Shoot δ15N correlates with genotype and salt stress in barley. Planta201: 100-102.
  • Handley, L. L., Robinson, D. R., Scrimgeour, C. M., Gordon, D. C., Forster, B. P., Ellis, R. P., Nevo, E. 1997b. Correlating molecular markers with physiological expression in Hordeum, a developing approach using stable isotopes. New Phytol.137: 159-163.
  • Harlan, J. R. 1975. Crops & man. American Society of Agronomy, Crop Science of America, Madison, Wisconsin, 295 pp.
  • Harlan, J. R., De Wet, J. M. J., Glen Price, E. 1973. Comparative evolution of cereals. Evolution27: 311-325.
  • Nevo, E., Golenberg, E. M., Beiles, A., Brown, A. H. D., Zohary, D. 1982. Genetic diversity and environmental associations of wild wheat, Triticum dicoccoides, in Israel. Theor. Appl. Genet.62: 241-254.
  • Nevo, E., Moseman, J. G., Beiles, A., Zohary, D. 1985. Patterns of resistance of Israeli wild emmer wheat to pathogens. I. Predictive method by ecology and allozyme genotypes for powdery mildew and leaf rust. Genetica67: 209-222.
  • Nevo, E., Beiles, A., Zohary, D. 1986a. Genetic resources of wild barley in the Near East: structure, evolution and application in breeding. Biol. J. Linn. Soc.27: 355-380.
  • Nevo, E., Beiles, A., Kaplan, D., Golenberg, E. M., Olsvig-Whittaker, L., Naveh, Z. 1986b. Natural selection of allozyme polymorphisms: a microsite test revealing ecological genetic differentiation in wild barley. Evolution40: 13-20.
  • Nevo, E., Gerechter-Amitai, Z. K., Beiles, A. 1991. Resistance of wild emmer wheat to stem rust: ecological, pathological, and allozyme associations. Euphytica53: 121-130.
  • Nevo, E., Gorham, J. Nevo, E. 1992. Variation for 22Na uptake in wild emmer wheat, Triticum dicoccoides in Israel: salt tolerance resources for wheat improvement. J. Exp. Bot.43: 511-518.
  • Nevo, E., Krugman, T., Beiles, A. 1993. Genetic resources for salt tolerance in the wild progenitors of wheat (Triticum dicoccoides) and barley (Hordeum spontaneum) in Israel. Plant Breed.110: 338-341.
  • Nevo, E., Korol, A. B., Beiles, A., Fahima, T. 2002. Evolution of wild emmer and wheat improvement. Population genetics, genetic resources, and genome organization of wheat's progenitor, Triticum dicoccoides. Springer-Verlag, Berlin 364 pp.
  • Owuor, E. D., Fahima, T., Beiles, A. Korol, A. B., Nevo, E. 1997. Population genetics response to microsite ecological stress in wild barley Hordeum spontaneum.Mol. Ecol.6: 1177-1187.
  • Owuor, E. D., Beharav, A., Fahima, T., Kirzhner, V. M., Korol, A. B., Nevo, E. 2003. Microscale ecological stress causes RAPD molecular selection in wild barley, Neee Ya'ar microsite, Israel. Genet. Resour. Crop Evol.50: 213-224.
  • Pakniyat, H., Powell, W., Baird, E., Handley, L. L., Robinson, D., Scrimgeour, C. M., Nevo, E., Hackett, C. A., Caligari, P. D. S., Forster, B. P. 1997. AFLP variation in wild barley (Hordeum spontaneum C. Koch) with reference to salt tolerance and associated ecogeography. Genome40: 332-341.
  • Paterson, A. 2006. Leafing through the genomes of our major crop plants: strategies for capturing unique information. Nat. Rev. Genet.7: 174-184.
  • Peleg, Z., Fahima, T., Abbo, S., Krugman, T., Nevo, E., Yakir, D., Saranga, Y. 2005. Genetic diversity for drought resistance in wild wheat and its ecogeographical association. Plant Cell Environ.28: 176-191.
  • Peleg, Z., Saranga, Y., Krugman, T., Abbo, S., Nevo, E., Fahima, T. 2008. Allelic diversity associated with aridity gradient in wild emmer wheat populations. Plant Cell Environ.31: 39-49.
  • Peng, J. H., Fahima, T., Röder, M. S., Li, Y. C., Dahan, A., Grama, A., Ronin, Y. I., Korol, A. B., Nevo, E. 1999. Microsatellite tagging of stripe-rust resistance gene YrH52 derived from wild emmer wheat, Triticum dicoccoides and suggestive negative crossover interference on chromosome 1B. Plant & Animal Genome VII, 17-21 January 1999, San Diego (Abstract).
  • Peng, J. H., Fahima, T., Röder, M. S., Li, Y. C., Grama, A., Nevo, E. 2000a. Microsatellite high-density mapping of the stripe rust resistance gene YrH52 region on chromosome 1B and evaluation of its marker-assisted selection in the F2 generation in wild emmer wheat. New Phytol.146: 141-154.
  • Peng, J. H., Korol, A. B., Fahima, T., Röder, M. S., Ronin, Y. I., Li, Y. C., Nevo, E. 2000b. Molecular genetic maps in wild emmer wheat, Triticum dicoccoides: genome-wide coverage, massive negative interference, and putative quasilinkage. Genome Res.10: 1509-1531.
  • Peng, J. H., Ronin, Y. I., Fahima, T., Röder, M. S., Li, Y. C., Nevo, E., Korol, A. B. 2003. Domestication quantitative trait loci in Triticum dicoccoides, the progenitor of wheat. Proc. Natl. Acad. Sci. USA100: 2489-2494.
  • Reader, S. M., Miller, T. E. 1991. The introduction into bread wheat of a major gene for resistance to powdery mildew from wild emmer wheat. Euphytica53: 57-60.
  • Rong, J. K., Millet, E., Manisterski, J., Feldman, M. 1998. A powdery mildew resistance gene from wild emmer transferred into common wheat and tagged by molecular markers. In: Slinkard, A. E., ed. Proc 9th Intl. Wheat Genet. Symp. Vol 3. University Extension Press, University of Saskatchewan, Saskatoon, Canada, pp. 148-150.
  • Scott, R. J., Spielman, M. 2006. Deeper into the maize: new insights into genomic imprinting in plants. BioEssays28: 1167-1171.
  • Segal, A., Manisterki, J., Fishbeck J., Wahl, I. 1980. How plant populations defend themselves in natural ecosystems. In: Horsfall, J. G., Cowling, E. B., eds. Plant disease. Academic Press, New York, pp. 75-102.
  • Sun, G. L., Fahima, T., Korol, A. B., Turpeinen, T., Grama, A., Ronin, Y. I., Nevo, E. 1997. Identification of molecular markers linked to the Yr15 stripe rust resistance gene of wheat originated in wild emmer wheat, Triticum dicoccoides.Theor. Appl. Genet.95: 622-628.
  • Suprunova, T., Krugman, T., Fahima, T., Chen, G., Shams, I., Korol, A. B., Nevo, E. 2004. Differential expression of dehydrin (Dhn) in response to water stress in resistant and sensitive wild barley (Hordeum spontaneum). Plant Cell Environ.27: 1297-1308.
  • Suprunova, T., Krugman, T. Distelfeld, A., Fahima, T., Nevo, E., Korol, A. 2007. Identification of a novel gene (Hsdr4) involved in water-stress tolerance in wild barley. Plant Mol. Biol.64: 17-34.
  • Thè, T. T., Nevo, E., McIntosh, R. A. 1993. Responses of Israeli wild emmer to selected Australian pathotypes of Puccinia species. Euphytica71: 75-81.
  • Turpeinen, T., Tenhola, T., Manninen, O., Nevo, E., Nissila, E. 2001. Microsatellite diversity associated with ecological factors in Hordeum spontaneum populations in Israel. Mol. Ecol.10: 1577-1591.
  • Turpeinen, T., Vanhala, V., Nevo, E., Nissila, E. 2003. AFLP genetic polymorphism in wild barley (Hordeum spontaneum) populations in Israel. Theor. Appl. Genet.106: 1333-1339.
  • Uauy, C., Distelfeld, A., Fahima, T., Blechl, A., Dubcovsky, J. 2006. A NAC gene regulating senescence improves grain protein, zinc, and iron content in wheat. Science314: 1298-1301.
  • Volis, S., Yakubov, B., Shulgina, E., Ward, D., Zur, V., Mendlinger, S. 2001. Tests for adaptive RAPD variation in population genetic structure of wild barley, Hordeum spontaneumKoch. Biol. J. Linn. Soc.7: 289-303.
  • Wei, Y. M., Baum, B. R., Nevo, E., Zheng, Y. L. 2005. Does domestication mimic speciation? 1. A population-genetic analysis of Hordeum spontaneum and Hordeum vulgare based on AFLP and evolutionary considerations. Can. J. Bot.83: 1496-1512.
  • Weining, S., Xianghong, D., Nevo, E. 2004. Tranforming Arabidopsis with genes from wild barley for the analysis of drought tolerance. Plant & Animal Genome XII Conf., San Diego, CA, 10-14 January 2004, p. 98 (Abstract).
  • Xie, C., Sun, Q., Ni, Z. F., Yang, T., Nevo, E., Fahima, T. 2004. Identification of resistance gene analogue markers closely linked to wheat powdery mildew resistance gene Pm31. Plant Breed.124: 198-200.
  • Xie, W., Nevo, E. 2008. Wild emmer: genetic resources, gene mapping and transfer for wheat improvement. Euphytica DOI10.1007/51068-008-9703-8.
  • Xie, W. L., Xie, C. J., Sun, Q. X., Zeng, B., Ni, Z. F., Yang, T. M., Dinoor, A., Nevo, E., Fahima, T. 2003. Identification of resistance gene analog markers closely linked to the powdery mildew resistance gene MlG, derived from wild emmer wheat, Triticum dicoccoides. 10th Intl. Wheat Genetics Symp., Paestum, Italy, 1-6 September, 2003. Vol. 3, pp. 1287-1289 (Abstract).
  • Yang, Z., Zhang, T., Bolshoy, A., Beharav, A., Nevo, E. 2008. Adaptive microclimatic SNP dehydrins evolution in wild baryley, Hordeum spontaneum, at "Evolution Canyon", Mount Carmel, Israel. Mol. Ecol., in press.
  • Yaniv, E., Gelfarb, L., Distelfeld, A, Korol, A. B., Nevo, E., Fahima, T. 2007. Wheat-rice colinearity at the YR15 stripe rust resistance gene region in tetraploid wheat. The A. Aaronsohn-ITMI Intl. Conf., Tiberias, Israel, 16-20 April, 2007 (Abstract).
  • Zohary, D., Hopf, J. 2000. Domestication of plants of the Old World. 3rd ed. Oxford University Press, Oxford.
  • Huang, Q., Beharav, A., Li, Y., Kirzhner, V., Nevo, E. 2002. Mosaic microecological differential stress causes adaptive microsatellite divergence in wild barley, Hordeum spontaneum, at Newe Ya'ar, Israel. Genome45: 1216-1229.
  • Hunger, R. M., Sherwood, J. L., Pennington, R. E., Carver, B. F., Nevo, E. 1992. Reaction of native populations of Triticum dicoccoides to wheat soil-borne mosaic. In: Biological & cultural tests for control of plant disease. Vol. 7. APS Press.
  • Ivandic, V., Hackett, C. A., Zhang, Z. J., Staub, J. E., Nevo, E., Thomas, W. T. B., Forster, B. P. 2000. Phenotypic responses of wild barley to experimentally imposed water stress. J. Exp. Bot.51: 2021-2029.
  • Kohn, M., Murphy, W., Ostrander, E., Wayne, R. 2006. Genomics and conservation genetics. Trends Ecol. Evol.21: 629-637.
  • Krugman, T., Chague, V., Peleg, A., Balzergue, S., Boudet, N., Brodsky, L., Korol, A. B., Nevo, E., Saranga, Y., Chalhoub, B., Fahima, T. 2008. Differential gene expression between wild emmer wheat genotypes from populations contrasting in drought resistance. Submitted for publication.
  • Li, Y. C., Fahima, T., Beiles, A., Korol, A. B., Nevo, E. 1999. Microclimatic stress and adaptive DNA differentiation in wild emmer wheat, Triticum dicoccoides.Theor. Appl. Genet.99: 873-883.
  • Liu, Z., Sun, Q., Ni, Z. F., Nevo, E., Yang, T. 2001. Molecular characterization of a novel powdery mildew resistance gene Pm30 in wheat originating from wild emmer. Euphytica123: 21-29.
  • Liu, Z., Xie, W., Song, W., Hus, W., Ji, Hi, X., Wang, U., Zhao, J., Sin, Q., Yang, T., Fahima, T., Nevo, E. 2007. Molecular dissection of powdery mildew resistance genes in wild emmer. The A. Aaronsohn-ITMI International Conference, Tiberias, Israel, 16-20 April 2007 (Abstract).
  • Marais, G. F., Pretorius, Z. A., Wellings, C. R., McCallum, B., Marais, A. S. 2005. Leaf rust and stripe rust resistance genes transferred to common wheat from Triticum dicoccoides.Euphytica143: 115-123.
  • Maxted, N. Ford-Lloyd, B. V., Hawkes, J. G., eds. 1997. Plant genetic conservation. The in situ approach. Chapman & Hall, London, pp. 451.
  • Moseman, J. G., Nevo, E., El Morshidy, M. A., Zohary, D. 1984. Resistance of Triticum dicoccoides to infection with Erysiphe graminis tritici.Euphytica33: 41-47.
  • Moseman, J. G., Nevo, E., Gerechter-Amitai, Z. K., El-Morshidy, M. A., Zohary, D. 1985. Resistance of Triticum dicoccoides collected in Israel to infection with Puccinia recondita tritici.Crop Sci.25: 262-265.
  • Nevo, E. 1983. Genetic resources of wild emmer wheat: structure, evolution and application in breeding. In: Sakamoto, S., ed. Proc. 6th Intl. Wheat Genetics Symp. Kyoto University, Kyoto, Japan, December 1983, pp. 421-431.
  • Nevo, E. 1987. Plant genetic resources: prediction by isozyme markers and ecology. In: Rattazi, M. C., Scandalios, J. G., Whitt, G. S., eds. Isozymes: current topics in biological research. Agric. Physiol. Med.16: 247-267.
  • Nevo, E. 1988. Genetic diversity in nature: patterns and theory. Evol. Biol.23: 217-247.
  • Nevo, E. 1989. Genetic resources of wild emmer wheat revisited: genetic evolution, conservation and utilization. In: Miller, T. E., Koebner, R. M. D., eds. Proc. Seventh Intl. Wheat Genetics Symp., Inst. of Plant Science Research, Cambridge, UK, pp. 121-126.
  • Nevo, E. 1992. Origin, evolution, population genetics and resources for breeding of wild barley, Hordeum spontaneum, in the Fertile Crescent. In: Shewry, P., ed. Barley: genetics, molecular biology and biotechnology. CAB Publ., CAB International, Wallingford, UK, pp. 19-43.
  • Nevo, E. 1993. Genetic resources of wild emmer, Triticum dicoccoides for wheat improvement. 8th Int. Wheat Genet. Symp., 20-25 July 1993, China Agricultural Scientech Press, Beijing. p. 3 (Abstract).
  • Nevo, E. 1998a. Genetic diversity in wild cereals: regional and local studies and their bearing on conservation ex-situ and in-situ. Genet. Resour. Crop Evol.45: 355-370.
  • Nevo, E. 1998b. Molecular evolution and ecological stress at global, regional and local scales: the Israeli perspective. J. Exp. Zool.282: 95-119.
  • Nevo, E. 2001. Genetic resources of wild emmer, Triticum dicoccoides, for wheat improvement in the third millennium. Isr. J. Plant Sci.49: S-77-S-91.
  • Nevo, E. 2004a. Genomic diversity in nature and domestication. 2004. In: Henry, R., ed. Diversity and evolution of plants. Genotypic and phenotypic variation in higher plants. CAB Publ. CAB International, Wallingford, UK.
  • Nevo, E. 2004b. Population genetic structure of cereal wild barley and wheat in the Near East Fertile Crescent: regional and local adaptive patterns. In: Gupta, P. K., Varshney, R. K., eds. Kluwer Academic Press, Dordrecht, 639 pp.
  • Nevo, E. 2006. Genome evolution of wild cereal diversity and prospects for crop improvement. Plant Genet. Resour.4(1): 36-46.
  • Nevo, E. 2008. Ecological genomics of natural plant populations: the Israeli perspective. In: Somers, D., Langridge, P., Gustafson, I. P., eds. Plant genomics. Humana Press, Totowa, NJ, in press.
  • Nevo, E., Beiles, A. 1989. Genetic diversity of wild emmer wheat in Israel and Turkey: structure, evolution and application in breeding. Theor. Appl. Genet.77: 421-455.
  • Nevo, E., Brown, A. H. D., Zohary, D., Storch, N., Beiles, A. 1981. Microgeographic edaphic differentiation in allozyme polymorphisms of wild barley (Hordeum spontaneum, Poaceae) Plant Syst. Evol.138: 287-292.

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