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1.
Plant J ; 100(4): 836-850, 2019 11.
Artigo em Inglês | MEDLINE | ID: mdl-31323151

RESUMO

The wild tomato relative Solanum sitiens is a xerophyte endemic to the Atacama Desert of Chile and a potential source of genes for tolerance to drought, salinity and low-temperature stresses. However, until recently, strong breeding barriers prevented its hybridization and introgression with cultivated tomato, Solanum lycopersicum L. We overcame these barriers using embryo rescue, bridging lines and allopolyploid hybrids, and synthesized a library of introgression lines (ILs) that captures the genome of S. sitiens in the background of cultivated tomato. The IL library consists of 56 overlapping introgressions that together represent about 93% of the S. sitiens genome: 65% in homozygous and 28% in heterozygous (segregating) ILs. The breakpoints of each segment and the gaps in genome coverage were mapped by single nucleotide polymorphism (SNP) genotyping using the SolCAP SNP array. Marker-assisted selection was used to backcross selected introgressions into tomato, to recover a uniform genetic background, to isolate recombinant sub-lines with shorter introgressions and to select homozygous genotypes. Each IL contains a single S. sitiens chromosome segment, defined by markers, in the genetic background of cv. NC 84173, a fresh market inbred line. Large differences were observed between the lines for both qualitative and quantitative morphological traits, suggesting that the ILs contain highly divergent allelic variation. Several loci contributing to unilateral incompatibility or hybrid necrosis were mapped with the lines. This IL population will facilitate studies of the S. sitiens genome and expands the range of genetic variation available for tomato breeding and research.


Assuntos
Introgressão Genética , Solanum lycopersicum/genética , Solanum/genética , Clima Desértico , Flores/fisiologia , Frutas/fisiologia , Biblioteca Gênica , Genoma de Planta , Solanum lycopersicum/fisiologia , Melhoramento Vegetal , Ploidias , Polimorfismo de Nucleotídeo Único , Recombinação Genética , Autoincompatibilidade em Angiospermas/genética
2.
J Magn Reson Imaging ; 26(5): 1286-95, 2007 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-17969144

RESUMO

PURPOSE: To simulate exposure (e.g., during interventional procedures) of a worker close to an operating MR scanner by calculating electric fields and current density within an anatomically realistic body model due to a z-gradient coil and to compare results with safety guidelines and European Directive 2004/40/EC. MATERIALS AND METHODS: Electric field and current density in an adult male model located at three positions within the range 0.19-0.44 m from the end of a generic z-gradient coil were calculated using the time-domain finite integration technique (FIT). Frequency scaling was used in which quasistatic conditions were assumed and results obtained at 1 MHz (assuming tissue conductivity values at 1 kHz) were scaled to 1 kHz. RESULTS: Current density (averaged over 1 cm(2)) in central nervous system (CNS) tissues up to 20.6 mA m(-2) and electric fields (averaged over 5 mm) up to 4.1 V m(-1) were predicted for a gradient of 10 mT m(-1) and slew rate of 10 T m(-1) second(-1). CONCLUSION: Compliance with 2004/40/EC, and with basic restriction values of Institute of Electrical and Electronics Engineers (IEEE) C95.6-2002, was predicted only at impracticably low gradients/slew rates in the ranges 4.9-9.1 mT m(-1)/4.9-9.1 T m(-1) second(-1) and 5-21 mT m(-1)/5-21 T m(-1) second(-1), respectively.


Assuntos
Campos Eletromagnéticos , Imageamento por Ressonância Magnética/instrumentação , Modelos Biológicos , Exposição Ocupacional/análise , Contagem Corporal Total/métodos , Carga Corporal (Radioterapia) , Simulação por Computador , Humanos , Corpo Clínico , Doses de Radiação , Monitoramento de Radiação/métodos , Eficiência Biológica Relativa , Transdutores
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