Mostrando 121 - 140 Resultados de 1,044 Para Buscar '"Hordeum vulgare"', tiempo de consulta: 1.23s Limitar resultados
  1. 121
    “…Despite their essential roles in plant evolution and functional genomics, MULEs are not fully understood yet in many important crops including barley (Hordeum vulgare). In this study, we analyzed the barley genome and identified a new mutator transposon Hvu_Abermu. …”
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    “…This study was aimed at spatial modeling of land suitability evaluation for Eragrostis tef Zucc and Hordeum Vulgare L crops in the Misha district. About 11 variables related to topography, climate, and soil have been considered and resampled to 10 m resolution. …”
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  7. 127
    “…The aim of this research was to study the effect of Mn(x)O(y) nanoparticles stabilized with L-methionine on the morphofunctional characteristics of the barley (Hordeum vulgare L.) crop. Mn(x)O(y) nanoparticles stabilized with L-methionine were synthesized using potassium permanganate and L-methionine. …”
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  8. 128
    “…This study was designed to investigate barley (Hordeum vulgare L.) seeds’ germination and seedling growth under conditions of abiotic stresses. …”
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  11. 131
    por Knipfer, Thorsten, Fricke, Wieland
    Publicado 2011
    “…In the present study on hydroponically grown barley (Hordeum vulgare L.) the two main root types of 14- to 17-d-old plants were analysed for hydraulic conductivity in dependence of the main driving force (hydrostatic, osmotic). …”
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  12. 132
    “…To determine the level and structure of genetic diversity in barley (Hordeum vulgare L.) landraces from the central highlands of Ethiopia, we have examined the molecular variation at seven nuclear microsatellite loci. …”
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    “…HvABCG31/Eibi1 is an ABCG transporter gene, involved in cuticle formation that was recently identified in wild barley (Hordeum vulgare ssp. spontaneum). To study the genetic variation of HvABCG31 in different habitats, its 2 kb promoter region was sequenced from 112 wild barley accessions collected from five natural populations from southern and northern Israel. …”
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    “…Early genotoxic and phytotoxic effects of cerium oxide NPs (nCeO(2)) and titanium dioxide NPs (nTiO(2)) were investigated in seedlings of Hordeum vulgare L. Caryopses were exposed to an aqueous dispersion of nCeO(2) and nTiO(2) at, respectively 0, 500, 1000, and 2000 mg l(-1) for 7 days. …”
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