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1.
Plant Foods Hum Nutr ; 69(4): 379-85, 2014 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-25432789

RESUMEN

Folate (vitamin B9) deficiency is a global health problem especially in developing countries where the major staple foods such as rice contain extremely low folates. Biofortification of rice could be an alternative complement way to fight folate deficiency. In this study, we evaluated the availability of the genes in each step of folate biosynthesis pathway for rice folate enhancement in the japonica variety kitaake genetic background. The first enzymes GTP cyclohydrolase I (GTPCHI) and aminodeoxychorismate synthase (ADCS) in the pterin and para-aminobenzoate branches resulted in significant increase in seed folate content, respectively (P < 0.01). Overexpression of two closely related enzymes dihydrofolate synthase (DHFS) and folypolyglutamate synthase (FPGS), which perform the first and further additions of glutamates, produced slightly increase in seed folate content separately. The GTPCHI transgene was combined with each of the other transgenes except ADCS to investigate the effects of gene stacking on seed folate accumulation. Seed folate contents in the gene-stacked plants were higher than the individual low-folate transgenic parents, but lower than the high-folate GTPCHI transgenic lines, pointing to an inadequate supply of para-aminobenzoic acid (PABA) precursor initiated by ADCS in constraining folate overproduction in gene-stacked plants.


Asunto(s)
Ácido Fólico/genética , Alimentos Fortificados , Alimentos Modificados Genéticamente , Genes de Plantas , Oryza/genética , Plantas Modificadas Genéticamente , Semillas/metabolismo , Dieta , Ácido Fólico/biosíntesis , Deficiencia de Ácido Fólico/dietoterapia , Humanos , Oryza/enzimología , Oryza/metabolismo , Transaminasas/genética , Transgenes , Complejo Vitamínico B/biosíntesis , Complejo Vitamínico B/genética
2.
Yi Chuan Xue Bao ; 32(5): 507-13, 2005 May.
Artículo en Chino | MEDLINE | ID: mdl-16018262

RESUMEN

There existed a number of biological constraints in exploiting the heterosis of indica-japonica hybrid rice. The low-temperature-sensitive sterility (LTSS) of indica-japonica hybrid has become one of the major problems in indica-japonica hybrid rice breeding after the solution of poor fertility of the hybrids by the finding of wide-compatibility gene. Previous studies revealed that the LTSS might be caused by low-temperature-sensitive pollen sterility (LTSPS). However, the genetic basis of LTSPS remained unclear. To explore the genetic basis of LTSPS in indica-japonica hybrid rice, an F2 genetic population derived from 3037 (indica) and 02428 (japonica) was developed. At the booting stage, pollen fertility of F2 population together with parents were surveyed after the treatment with low temperature daily average of 21-23 degrees C. The linkage map was constructed containing 108 SSR markers distributed throughout the whole 12 chromosomes with average marker interval of 16.26 cM. Using software MapMaker/QTL, two putative QTLs, namely qLTSPS2 and qLTSPS5 on chromosomes 2 and 5 were detected by interval mapping, which could explain the phenotypic variation 15.6% and 11.9% respectively. The additive effects were 0.021 and 0.045, dominant effects were -0.246 and -0.215, and the degrees of dominance were 11.7 and 4.8, respectively for the two QTLs. Therefore, the mode of gene action in response to low-temperature stress was overdominance and LTSPS was mainly the result of interaction between the indica and japonica alleles within each locus. In addition, two-way ANOVA showed that the two QTLs acted essentially independent of each other in conditioning LTSPS.


Asunto(s)
Cromosomas de las Plantas/genética , Fertilidad/genética , Oryza/genética , Sitios de Carácter Cuantitativo , Alelos , Mapeo Cromosómico , Cruzamientos Genéticos , Genotipo , Repeticiones de Microsatélite , Polen/genética , Temperatura
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