Mostrando 261 - 280 Resultados de 10,967 Para Buscar '"maíz"', tiempo de consulta: 0.67s Limitar resultados
  1. 261
    por Santiago, Rogelio, Malvar, Rosa A.
    Publicado 2010
    “…This review addresses for the first time different studies in which it is established that cross-linking by dehydrodiferulates contributes to maize’s defences to pests and diseases. Dehydrodiferulate cross-links are involved in maize defence mechanisms against insects such as the European, Mediterranean, and tropical corn borers and, storage pest as the maize weevil. …”
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  2. 262
    “…The GI of Quality Protein Maize (QPM) grits, milled rice, and the mixture of these two food items were determined in ten female subjects. …”
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  3. 263
    “…The aim of this study was to evaluate methods for developing a Brazilian maize core collection. For an initial survey of the active collection, passport information, as well as characterization and evaluation of accessions, were taken into consideration, these then being divided according to geographic region and kernel-type. …”
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  4. 264
  5. 265
  6. 266
    “…BACKGROUND: The nonautonomous maize Ds transposons can only move in the presence of the autonomous element Ac. …”
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  7. 267
  8. 268
    “…Based on these results, P. ambiguum was shown to be a primary pathogen of maize, but to be less virulent than the positive control, S. maydis. …”
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  9. 269
    por Suhasini, G. E., Krishna, D. R.
    Publicado 1991
    “…The rural population in many parts of India consumes sorghum (Jowar) and maize as staple food. The flour made out of these cereals is consumed after cooking or baking on a pan with or without oil. …”
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  10. 270
    “…A few members of the two families of auxin efflux transport proteins, PIN-formed (PIN) and P-glycoprotein (ABCB/PGP), have so far been characterized in maize. Nine new Zea mays auxin efflux carriers PIN family members and two maize PIN-like genes have now been identified. …”
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  11. 271
    “…Despite widespread evidence of gene flow, maize and mexicana maintain distinct morphologies and have done so in sympatry for thousands of years. …”
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  12. 272
    “…Genetic control of branching is a primary determinant of yield, regulating seed number and harvesting ability, yet little is known about the molecular networks that shape grain-bearing inflorescences of cereal crops. Here, we used the maize (Zea mays) inflorescence to investigate gene networks that modulate determinacy, specifically the decision to allow branch growth. …”
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  13. 273
    “…This paper proposes an alternative method for evaluating the stability and adaptability of maize hybrids using a genotype-ideotype distance index (GIDI) for selection. …”
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  14. 274
    “…The objectives of our simulation study were to design and compare selection strategies for the development of maize introgression populations of 100 lines with population sizes of 360–720 individuals per generation for different DH and [Image: see text] crossing schemes. …”
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  15. 275
    “…This study investigated the coordination of C(4) photosynthesis in maize plants subjected to two salinity (50 and 100mM NaCl) treatments and one shade (20% of full sunlight) treatment. …”
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  16. 276
    por Okagaki, Ron J, Phillips, Ronald L
    Publicado 2004
    “…These methods may provide a low-cost alternative to whole-genome sequencing for maize and other complex genomes.…”
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  17. 277
    “…Pervasive regulatory variation was observed with approximately 70% of ∼17,000 genes showing evidence of regulatory divergence between maize and teosinte. However, many fewer genes (1,079 genes) show consistent cis differences with all sampled maize and teosinte lines. …”
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  18. 278
    por Wei, Kaifa, Zhong, Xiaojun
    Publicado 2014
    “…To date, only a tiny fraction of plant nsLTPs have been functionally identified, and even fewer have been identified in maize [Zea mays (Zm)]. RESULTS: In this study, we carried out a genome-wide analysis of nsLTP gene family in maize and identified 63 nsLTP genes, which can be divided into five types (1, 2, C, D and G). …”
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  19. 279
    “…In this work, we use laser biospeckle to classify maize (Zea mays L.) kernel hardness. A series of grains of three types of maize were cut and illuminated by a laser. …”
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  20. 280
    “…These results show how alternative transposition coupled with DNA replication and repair can significantly alter genome structure and may have contributed to rapid genome evolution in maize and possibly other eukaryotes. DOI: http://dx.doi.org/10.7554/eLife.03724.001…”
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