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Journal articles 2010

Documents

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Genetic and genomic tools to improve drought tolerance in wheat Genetic and genomic tools to improve drought tolerance in wheat

Fleury D, Jefferies S, Kuchel H and Langridge P (2010). Genetic and genomic tools to improve drought tolerance in wheat. Journal of Experimental Botany 61(12):3211–3222. (DOI:10.1093/jxb/erq152). Not open access: view abstract

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Gene flow among different teosinte taxa and into the domesticated maize gene pool Gene flow among different teosinte taxa and into the domesticated maize gene pool

Warburton ML, Wilkes G, Taba S, Charcosset A, Mir C, Dumas F, Madur D, Dreisigacker S, Bedoya C, Prasanna BM et al.(2010). Gene flow among different teosinte taxa and into the domesticated maize gene pool. Genetic Resources and Crop Evolution (DOI: 10.1007/s10722-010-9658-1Online First™). Also published in 2011. Not open access: view abstract

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FIDEL – a retrovirus-like retrotransposon and its distinct evolutionary histories in the A- and B-genome components of cultivated peanut FIDEL – a retrovirus-like retrotransposon and its distinct evolutionary histories in the A- and B-genome components of cultivated peanut

Nielen S, Campos-Fonseca F, Leal-Bertioli S, Guimarães P, Seijo G, Town C, Arrial R, Bertioli D (2010). FIDEL – a retrovirus-like retrotransposon and its distinct evolutionary histories in the A- and B-genome components of cultivated peanut. Chromosome Research 18(2):227–246 (DOI 10.1007/s10577-009-9109-z).

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Efficiency of selective genotyping for genetic analysis of complex traits and potential applications in crop improvement Efficiency of selective genotyping for genetic analysis of complex traits and potential applications in crop improvement

Sun Y, Wang J, Crouch JH and Xu Y (2010). Efficiency of selective genotyping for genetic analysis of complex traits and potential applications in crop improvement. Molecular Breeding 26(3):493–511 (DOI: 10.1007/s11032-010-9390-8). Not open access: view abstract

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Effects of ascertainment bias and marker number on estimations of barley diversity from high-throughput SNP genotype data Effects of ascertainment bias and marker number on estimations of barley diversity from high-throughput SNP genotype data

Moragues M, Comadran J, Waugh R, Milne I, Flavell AJ, Russell JR (2010). Effects of ascertainment bias and marker number on estimations of barley diversity from high-throughput SNP genotype data. Theoretical and Applied Genetics: 120(8):1525–1534 (DOI: 10.1007/s00122-010-1273-1). Not open access: view abstract

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Efeito de doses de nitrogênio via fertirrigação na dinâmica microbiana, em solo cultivado com trigo Efeito de doses de nitrogênio via fertirrigação na dinâmica microbiana, em solo cultivado com trigo

Ramos MLG, Carvalho JG, Ribeiro Júnior WQ, Ferraz DMM, Carvalho AM and Amábile RF (2010). Efeito de doses de nitrogênio via fertirrigação na dinâmica microbiana, em solo cultivado com trigo. Bioscience Journal 26(3):376–383. Article in Portuguese.

Abstract: No Cerrado brasileiro, a área cultivada com trigo aumentou consideravelmente nos últimos anos, tendo em vista o desenvolvimento de cultivares especificamente para essas condições edafoclimáticas. O objetivo do trabalho foi avaliar o efeito de doses de nitrogênio e de épocas de coleta de solo, no carbono da biomassa microbiana do solo (CBM) respiração basal (RB) e carbono orgânico total do solo (COT), sob cultivo de trigo irrigado. O experimento foi instalado em maio de 2006, em um Latossolo Vermelho, na Embrapa Cerrados (CPAC), no Distrito Federal. O delineamento experimental foi em blocos ao acaso com três repetições, as parcelas receberam as doses de nitrogênio: 50, 100, 150 kg ha-1 N e uma testemunha sem N; as subparcelas representaram as épocas de coleta de solo. Realizou-se apenas uma aplicação de uréia via fertirrigação, no perfilhamento. As coletas de solo foram feitas na camada de 0 - 10 cm para a determinação em quatro épocas: 5 dias antes da primeira fertirrigação; 5 dias depois da primeira fertirrigação; na floração e após a colheita. Houve efeito das doses de N e das épocas de coletas de solo no CBM, RB e COT. O CBM foi um bom parâmetro para avaliar a atividade microbiana a curto prazo, pois este tendeu a diminuir após a aplicação da uréia.

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Dissection and modelling of abiotic stress tolerance in plants Dissection and modelling of abiotic stress tolerance in plants

Tardieu F and Tuberosa R (2010). Dissection and modelling of abiotic stress tolerance in plants. Current Opinion in Plant Biology 13:206–212. (DOI:10.1016/j.pbi.2009.12.012). Not open access: view abstract

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Diel time-courses of leaf growth in monocot and dicot species: Endogenous rhythms and temperature effects Diel time-courses of leaf growth in monocot and dicot species: Endogenous rhythms and temperature effects

Poire R, Wiese-Klinkenberg A, Parent B, Mielewczik M, Schurr U, Tardieu F and Walter A (2010). Diel time-courses of leaf growth in monocot and dicot species: Endogenous rhythms and temperature effects. Journal of Experimental Botany 61(6):1751–1759.

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Development of a wheat genotype combining the recessive crossability alleles kr1kr1kr2kr2 and the 1BL.1RS translocation, for the rapid enrichment of 1RS with new allelic variation. Development of a wheat genotype combining the recessive crossability alleles kr1kr1kr2kr2 and the 1BL.1RS translocation, for the rapid enrichment of 1RS with new allelic variation.

Molnár-Láng M, Cseh A, Szakács É, Molnár I (2010). Development of a wheat genotype combining the recessive crossability alleles kr1kr1kr2kr2 and the 1BL.1RS translocation, for the rapid enrichment of 1RS with new allelic variation. Theoretical and Applied Genetics 120(8):1535–1545. DOI:10.1007/S00122-010-1274-0. IF.: 3.363. Not open access: view abstract

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Development of a novel aluminium-tolerance phenotyping platform used for comparisons of cereal aluminium tolerance and investigations into rice aluminium tolerance mechanisms Development of a novel aluminium-tolerance phenotyping platform used for comparisons of cereal aluminium tolerance and investigations into rice aluminium tolerance mechanisms

Famoso AN, Clark RT, Shaff JE, Craft E, McCouch SR, Kochian LV (2010). Development of a novel aluminium-tolerance phenotyping platform used for comparisons of cereal aluminium tolerance and investigations into rice aluminium tolerance mechanisms. Plant Physiology 153:1678–1691 (DOI: 10.1104/pp.110.156794).

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