Applying innovations and new technologies for international collaborative wheat improvement
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[1] R. Lal. Soil and Water Resources of South Asia in an Uncertain Climate , 2004 .
[2] D. Duvick. Plant breeding, an evolutionary concept , 1996 .
[3] J. Snape. Challenges of integrating conventional breeding and biotechnology: a personal view! , 2004 .
[4] F. Salamini,et al. Plant biotechnology and breeding: allied for years to come. , 2003, Trends in plant science.
[5] M. Rosegrant,et al. Global Food Security: Challenges and Policies , 2003, Science.
[6] Jeffrey W. White,et al. From genome to wheat: Emerging opportunities for modelling wheat growth and development , 2006 .
[7] J. R. Evans. Photosynthetic acclimation and nitrogen partitioning within a lucerne canopy. II: Stability through time and comparison with a theoretical optimum , 1993 .
[8] Richard Bennett,et al. Explaining contradictory evidence regarding impacts of genetically modified crops in developing countries. Varietal performance of transgenic cotton in India , 2005, The Journal of Agricultural Science.
[9] J. Witcombe,et al. Increasing genetic diversity by participatory varietal selection in high potential production systems in Nepal and India , 2001, Euphytica.
[10] R. Singh,et al. Detection of Virulence to Wheat Stem Rust Resistance Gene Sr31 in Puccinia graminis. f. sp. tritici in Uganda. , 2000, Plant disease.
[11] Rattan Lal,et al. Sustainable agriculture and the international rice-wheat system. , 2004 .
[12] K. Yamaguchi-Shinozaki,et al. Stress-induced expression in wheat of the Arabidopsis thaliana DREB1A gene delays water stress symptoms under greenhouse conditions. , 2004, Genome.
[13] Clive James,et al. Global review of commercialized transgenic crops , 2003 .
[14] B. Miflin,et al. Crop improvement in the 21st century. , 2000, Journal of experimental botany.
[15] R. Koebner,et al. 21st century wheat breeding: plot selection or plate detection? , 2003, Trends in biotechnology.
[16] . CentroInternacionaldeMejoramientodeMaizyTrigo. MTP 2006-2008 CIMMYT building on strength. International crop improvement : our contribution to reduce hunger and poverty , 2005 .
[17] Graeme L. Hammer,et al. The GP problem: Quantifying gene-to-phenotype relationships , 2002, Silico Biol..
[18] Margareta Sollenberg,et al. To Cultivate Peace: Agriculture in a World of Conflict , 1999 .
[19] J. Ransom,et al. Improvement in the Yield Potential of Bread Wheat Adapted to Northwest Mexico 1 , 1986 .
[20] Jeffrey W. White,et al. An agroclimatological overview of wheat production regions of Bolivia , 1998 .
[21] Jagadeesh Mosali,et al. Identification of Optical Spectral Signatures for Detecting Cheat and Ryegrass in Winter Wheat , 2005 .
[22] Gordon Conway,et al. The Doubly Green Revolution: Food for All in the 21st Century , 1999 .
[23] M. Smale,et al. Dimensions of Diversity in Modern Spring Bread Wheat in Developing Countries from 1965 , 2002 .
[24] Matthew P. Reynolds,et al. Physiological and Genetic Changes of Irrigated Wheat in the Post–Green Revolution Period and Approaches for Meeting Projected Global Demand , 1999 .
[25] R. Appels,et al. Map-based cloning of a gene sequence encoding a nucleotide-binding domain and a leucine-rich region at the Cre3 nematode resistance locus of wheat. , 1997, Genome.
[26] K. Siddique,et al. Morphological and physiological traits associated with wheat yield increases in Mediterranean environments , 1994 .
[27] S. Wilkinson,et al. Stomatal control by chemical signalling and the exploitation of this mechanism to increase water use efficiency in agriculture. , 2002, The New phytologist.
[28] R. B. Austin,et al. Flag Leaf Photosynthesis of Triticum aestivum and Related Diploid and Tetraploid Species , 1982 .
[29] W. D. costa,et al. Resource competition in contour hedgerow intercropping systems involving different shrub species with mature and young tea on sloping highlands in Sri Lanka , 2005, The Journal of Agricultural Science.
[30] R. Evenson,et al. Assessing the Impact of the Green Revolution, 1960 to 2000 , 2003, Science.
[31] A. Condon,et al. Physiological basis of yield gains in wheat associated with the LR19 translocation from Agropyron elongatum , 2001, Euphytica.
[32] M. Reynolds,et al. Prospects for utilising plant‐adaptive mechanisms to improve wheat and other crops in drought‐ and salinity‐prone environments , 2005 .
[33] J. Snape,et al. A simple PCR-based method for scoring the ph1b deletion in wheat , 1998, Theoretical and Applied Genetics.
[34] Gary M. Paulsen,et al. Application of Physiology in Wheat Breeding. , 2002 .
[35] R. A. Fischer,et al. Physiological and Morphological Traits Associated with Spring Wheat Yield Under Hot, Irrigated Conditions , 1994 .
[36] Peter Wallensteen,et al. Comprehensive Assessment of the Freshwater Resources of the World, International Fresh Water Resources: Conflict or Cooperation , 1997 .
[37] Peter R. Hobbs,et al. The Raised Bed System of Cultivation for Irrigated Production Conditions , 2004 .
[38] I. Watson,et al. Long distance transport of spores of Puccinia graminis tritici in the southern hemisphere , 1983 .
[39] E. Nevo,et al. Genetic diversity of photosynthetic characters in native populations of Triticum dicoccoides , 1990, Photosynthesis Research.
[40] A. Condon,et al. Improving Intrinsic Water-Use Efficiency and Crop Yield. , 2002, Crop science.
[41] M. Brancourt-Hulmel,et al. Genetic Improvement of Agronomic Traits of Winter Wheat Cultivars Released in France from 1946 to 1992 , 2003 .
[42] J. Witcombe. Do Farmer-Participatory Methods Apply More to High Potential Areas Than to Marginal Ones? , 1999 .
[43] A. Dhingra,et al. Multigene engineering: dawn of an exciting new era in biotechnology. , 2002, Current opinion in biotechnology.
[45] L. T. Evans. The changing context for agricultural science , 2005, The Journal of Agricultural Science.
[46] M. Ginkel,et al. Progress in breeding wheat for yield and adaptation in global drought affected environments , 2002 .
[47] H. Kacser,et al. The molecular basis of dominance. , 1981, Genetics.
[48] J. I. Ortiz-Monasterio,et al. The Genetic Basis of the Green Revolution in Wheat Production , 2007 .
[49] M. Stitt,et al. Regulation of metabolism in transgenic plants , 1995 .
[50] R. A. Fischer,et al. Yield potential progress in short bread wheats in Northwest Mexico , 1997 .
[51] William J. Davies,et al. Root Signals and the Regulation of Growth and Development of Plants in Drying Soil , 1991 .
[52] S. Matthews,et al. Biomass, shoot uniformity and yield of winter barley , 1998, Journal of Agricultural Sciences.
[53] G. Rebetzke,et al. Breeding long coleoptile, reduced height wheats , 1999, Euphytica.
[54] P. Keeling,et al. Effect of temperature on enzymes in the pathway of starch biosynthesis in developing wheat and maize grain , 1994 .
[55] K. Mccree. THE ACTION SPECTRUM, ABSORPTANCE AND QUANTUM YIELD OF PHOTOSYNTHESIS IN CROP PLANTS , 1971 .
[56] Scott Rozelle,et al. Plant Biotechnology in China , 2002, Science.
[57] R. B. Austin,et al. Genetic improvements in winter wheat yields since 1900 and associated physiological changes , 1980, The Journal of Agricultural Science.
[58] C. Macilwain. Organic: Is it the future of farming? , 2004, Nature.
[59] M. Morris,et al. Participatory plant breeding research: Opportunities and challenges for the international crop improvement system , 2004, Euphytica.
[60] Q. Qian,et al. Cytokinin Oxidase Regulates Rice Grain Production , 2005, Science.
[61] P. Jauhar,et al. Alien gene transfer and genetic enrichment of bread wheat. , 1993 .
[62] R. Richards,et al. Molecular mapping of gibberellin-responsive dwarfing genes in bread wheat , 2005, Theoretical and Applied Genetics.
[63] T. C. Daniel,et al. Conservation Tillage , 1985, Science.
[64] A. Condon,et al. Selection for reduced carbon isotope discrimination increases aerial biomass and grain yield of rainfed bread wheat , 2002 .
[65] T. Sinclair,et al. Crop transformation and the challenge to increase yield potential. , 2004, Trends in plant science.
[66] K. Sayre,et al. Adapting wheat cultivars to resource conserving farming practices and human nutritional needs , 2005 .
[67] T. Boller,et al. Community structure of arbuscular mycorrhizal fungi at different soil depths in extensively and intensively managed agroecosystems. , 2004, The New phytologist.
[68] G. Moore,et al. Conservation of marker synteny during evolution , 1995, Euphytica.
[69] R. E. Sharp,et al. Complementation of notabilis, an abscisic acid‐deficient mutant of tomato: importance of sequence context and utility of partial complementation , 2004 .
[70] R. Lal. Historical Development of No-Till Farming , 2004 .
[71] S. Ceccarelli,et al. Farmer participation in barley breeding in Syria, Morocco and Tunisia , 2001, Euphytica.
[72] Graeme L. Hammer,et al. The role of physiological understanding in plant breeding; From a breeding perspective , 1996 .
[73] M. Reynolds,et al. Sink‐limitation to yield and biomass: a summary of some investigations in spring wheat , 2005 .
[74] David B. Lobell,et al. Remote sensing of regional crop production in the Yaqui Valley, Mexico: estimates and uncertainties , 2003 .
[75] Peter H. Gleick,et al. Comprehensive Assessment of the Freshwater Resources of the World , 1997 .
[76] R. Singh,et al. Wheat Rust in Asia: Meeting the Challenges with Old and New Technologies , 2004 .
[77] Jane Reeves,et al. Quantitative analysis of data from participatory methods in plant breeding , 2002 .
[78] J. R. Evans. Photosynthetic Acclimation and Nitrogen Partitioning Within a Lucerne Canopy. I. Canopy Characteristics , 1993 .
[79] J. Harlan. Genetic Resources in Wild Relatives of Crops 1 , 1976 .
[80] Roger Sylvester-Bradley,et al. Physiological Processes Associated with Wheat Yield Progress in the UK , 2005, Crop Science.
[81] R. Naylor,et al. Rethinking Food Security for the Twenty-First Century , 2005 .
[82] K. Sayre,et al. Physiological factors associated with genotype by environment interaction in wheat , 2002 .
[83] T. Reeves,et al. History and past achievements of plant breeding , 2002 .
[84] Mark W. Rosegrant,et al. Water resources in the twenty-first century: challenges and implications for action , 1997 .
[85] Gustavo A. Slafer,et al. Genetic basis of yield as viewed from a crop physiologist's perspective , 2003 .
[86] J. Deckers,et al. Stable high yields with zero tillage and permanent bed planting , 2005 .
[87] M. Reynolds,et al. Avenues for genetic modification of radiation use efficiency in wheat. , 2000, Journal of experimental botany.
[88] Philip K. Thornton,et al. The potential impacts of climate change on maize production in Africa and Latin America in 2055 , 2003 .
[89] B. Keller,et al. A diagnostic molecular marker allowing the study of Th. intermedium-derived resistance to BYDV in bread wheat segregating populations , 2001, Theoretical and Applied Genetics.
[90] R. Bennett,et al. Reductions in insecticide use from adoption of Bt cotton in South Africa: impacts on economic performance and toxic load to the environment , 2004, The Journal of Agricultural Science.
[91] Jeffrey W. White,et al. An agro-climatological characterization of bread wheat production areas in Ethiopia , 2001 .
[92] Shaozhong Kang,et al. Alternate furrow irrigation for maize production in an arid area , 2000 .
[93] J. Araus,et al. Plant breeding and drought in C3 cereals: what should we breed for? , 2002, Annals of botany.
[94] José Crossa,et al. Studying crossover genotype × environment interaction using linear-bilinear models and mixed models , 2004 .
[95] P. J. Andralojc,et al. Manipulation of Rubisco: the amount, activity, function and regulation. , 2003, Journal of experimental botany.
[96] John A. Kirkegaard,et al. A wheat genotype developed for rapid leaf growth copes well with the physical and biological constraints of unploughed soil. , 2005, Functional plant biology : FPB.
[97] M. Reynolds,et al. Impacts of breeding on international collaborative wheat improvement , 2006, The Journal of Agricultural Science.
[98] P. B. Gaddagimath,et al. Food and nutrition security towards human security. , 2004 .
[99] Anatole F. Krattiger,et al. Networking Biotechnology Solutions with Developing Countries: the Mission and Strategy of the International Service for the Acquisition of Agri-Biotech Applications , 1999 .
[100] H. Bohnert,et al. Genomic approaches to plant stress tolerance. , 2000, Current opinion in plant biology.
[101] R. Richards,et al. Breeding Opportunities for Increasing the Efficiency of Water Use and Crop Yield in Temperate Cereals. , 2002, Crop science.