Person:
Villaseñor Mir, H.E.

Loading...
Profile Picture
Email Address
Birth Date
Research Projects
Organizational Units
Job Title
Last Name
Villaseñor Mir
First Name
H.E.
Name
Villaseñor Mir, H.E.

Search Results

Now showing 1 - 2 of 2
  • Estabilidad a traves de ambientes de las propiedades reologicas de trigos harineros en funcion de sus gluteninas de alto molecular
    (Sociedad Mexicana de Fitogenética, 2010) De la O Olan, M.; Espitia-Rangel, E.; Molina Galán, J.D; Villaseñor Mir, H.E.; Lopez Sanchez, H.; Peña, Roberto; Santacruz-Varela, A.
    Con el propósito de determinar las combinaciones alélicas de gluteninas de alto peso molecular (G-APM) y estudiar la estabilidad conferida por dichas combinaciones sobre las propiedades reológicas de la masa en trigos harineros mexicanos, se evaluaron las variedades 'Náhuatl F2000', 'Pavón F76', 'Temporalera M87', 'Rebeca F2000', 'Tlaxcala F2000', 'Gálvez M87', 'Zacatecas VT74', 'Romoga F96', 'Juchi F2000' y 'Batán F96'. Los genotipos se sembraron en 22 ambientes de temporal o secano en los Estados de México, Tlaxcala, Jalisco, Oaxaca, Puebla, Guanajuato, Morelos y Querétaro, durante los ciclos P-V/1999 y 2000, bajo un diseño experimental de bloques completos al azar con dos repeticiones. Se evaluaron las propiedades viscoelásticas (reológicas) de la masa mediante las variables tiempo de amasado (min), alveograma-W, alveograma-P/L y alveograma-P/G. Se estimaron los parámetros de estabilidad mediante cuatro modelos diferentes. Las variedades 'Náhuatl F2000', 'Pavón F76' y 'Temporalera M87' poseen las subunidades de G-APM en Glu-A1 2*, Glu-B1 17+18 y Glu-D1 5+10 (combinación 1); las variedades 'Rebeca F2000', 'Tlaxcala F2000', 'Gálvez M87', 'Zacatecas VT74' y 'Romoga F96' en Glu-A1 1, Glu-B1 17+18 y Glu-D1 5+10 (combinación 2); y las variedades 'Juchi F2000' y 'Batán F96' en Glu-A1 2*, Glu-B1 7+9 y Glu-D1 5+10 (combinación 3). Hubo diferencias significativas (P ≤ 0.01) en todas las propiedades viscoelásticas para las combinaciones de G-APM. La combinación alélica 2 fue la más estable sobre las propiedades reológicas de la masa, y fue superior en algunas características viscoeláticas como fuerza de la masa. Por tanto, las variedades que poseen esta combinación son muy deseables para la industria mecanizada.
    Publication
  • Efecto de diferentes alelos de gluteninas de alto peso molecular sobre las propiedades viscoelasticas de la masa de trigos harineros
    (Colegio de Postgraduados, 2006) De la O Olan, M.; Espitia-Rangel, E.; Molina Galán, J.D; Peña, Roberto; Santacruz-Varela, A.; Villaseñor Mir, H.E.
    Wheat (Triticum aestivum L.) industrialization quality is intimately related to the quantity and quality of proteins; this depends on the presence of different alleles of glutenin of high molecular weight. To determine the effect of different high molecular weight glutenin alleles on the viscoelastic properties of bread wheat dough, tests were made on a group of 69 lines derived from the cross Rebeca F2000 by Salamanca S75 by single seed descent from F2 to F6, along with the parental varieties. The lines were sown in Roque, State of Guanajuato, México (Fall-Winter 2003-2004) with normal irrigation (five irrigations) and restricted irrigation (three irrigations). The experimental design was randomized complete blocks, and the means were compared with Tukey (p≤0.05). The viscoelastic properties of the dough were evaluated with the variables kneading time (min), mixographic type, alveogramW, alveogram-P/L and alveogram-P/G. The combinations 1−17+18−5+10, 2*−7+8−5+10 and 1−7+8−5+10 presented the best viscoelastic properties of the flour. In genome A, subunit 1 was characterized by inducing greater kneading time and mixographic type. In genome B, subunits 17+18 and 7+8 had a positive effect on the viscoelastic properties of the dough. In genome D, subunit 5+10 was associated with a positive effect on the viscoelastic properties, while subunit 2+12 was associated with a negative effect. When comparing the combinations, it was found that the effect of substituting 5+10 with 2+12 was very marked, given that where the allele 5+10 appeared, high values were found for alveogramW, alveogram-P/L and alveogram-P/G, which increased the strength and tenacity, whereas the extensibility of the dough was reduced. In contrast, when subunit 2+12 appeared, strength was reduced, but extensibility increased, perhaps due to a pleiotropic effect of the genes that control subunits 5+10 and 2+12.
    Publication