scholarly journals In silico identification of transcription factors associated with the biosynthesis of carotenoids in corn ( Zea mays L. )

2017 ◽  
Vol 1 ◽  
pp. 41-51 ◽  
Author(s):  
Zahra Zinati ◽  
Leyla Nazari ◽  
Paolo Bagnaresi ◽  
Rudabe Ravash
Author(s):  
Alan Uriel García-Campos ◽  
Mayra Díaz-Ramírez ◽  
Georgina Calderón-Domínguez ◽  
Rosy Gabriela Cruz-Monterrosa ◽  
Adolfo Armando Rayas-Amor ◽  
...  
Keyword(s):  
Zea Mays ◽  

Objetivo: Evaluar la actividad antihipertensiva de péptidos extraídos de zeína de maíz criollo azul y rojo nixtamalizado y sin nixtamalizar del Estado de México. Diseño/metodología/aproximación: Se emplearon herramientas bioinformáticas, tales como la base de datos NCBI para la búsqueda de secuencias primarias de la proteína zeína del maíz. La metodología incluyó una predicción de los péptidos con actividad antihipertensiva a través de diversos servidores bioinformáticos. La actividad inhibitoria se determinó mediante la regresión del porcentaje. Se realizó un análisis estadístico para evaluar las posibles diferencias significativas utilizando la prueba de Tukey (p<0.05). Resultados: Por medio de la hidrólisis in sílico se encontraron los siguientes péptidos: IFSILMLLA, LSACVLDATI, TASVCENPTL, LPLSPLLFQQ, SPALSLVQSL, LSPYSQQQQF, PFSQLATAY,            LPFYQQFSAN y PAAFYQQHII que mostraron actividad de inhibición de la ECA. Los resultados mostraron que el GH de la zeína fue mayor en maíz azul (13.96±0.02) que en maíz rojo (10.38±0.79) sin nixtamalizar, mientras que, con el proceso de nixtamalización, este parámetro también fue mayor en el maíz azul (10.52±0.57) que en el maíz rojo (8.96±0.01). Limitaciones del estudio/implicaciones: La enzima utilizada para la hidrólisis enzimática genera oligopéptidos que tal vez no puedan ser tan afines a la enzima convertidora de angiotensina. Hallazgos/conclusiones: La actividad antihipertensiva in vitro del maíz azul sin hidrolizar mostraron un menor porcentaje de inhibición de la ECA con respecto al maíz rojo sin hidrolizar. La hidrólisis con tripsina solo incrementa la actividad inhibitoria de la ECA en maíz azul a concentración de 0.3 mg/mL sin nixtamalizar.


2021 ◽  
Vol 11 ◽  
Author(s):  
Laura Righetti ◽  
Enrico Rolli ◽  
Luca Dellafiora ◽  
Gianni Galaverna ◽  
Michele Suman ◽  
...  

While aflatoxin metabolism in animals has been clarified, very limited information is so far available on the possible biotransformation occurring in plants. Therefore, this work aimed at investigating whether AFB1 metabolites could occur in field-grown infected maize and the putative role of Zea mays L. metabolism in their production. For such scope, asymptomatic in vitro–grown plantlets and in silico evaluations of plant transforming enzymes were used to pinpoint how plants may handle these compounds. Our data demonstrated the role of maize plants in the production of Phase I hydroxylated aflatoxins, including, among others, AFM1, AFM2, and aflatoxicol, and suggest that plant cytochromes may be involved in this biotransformation of AFB1.


Genes ◽  
2021 ◽  
Vol 12 (10) ◽  
pp. 1638
Author(s):  
Joram Kiriga Waititu ◽  
Quan Cai ◽  
Ying Sun ◽  
Yinglu Sun ◽  
Congcong Li ◽  
...  

Cold tolerance is a complex trait that requires a critical perspective to understand its underpinning mechanism. To unravel the molecular framework underlying maize (Zea mays L.) cold stress tolerance, we conducted a comparative transcriptome profiling of 24 cold-tolerant and 22 cold-sensitive inbred lines affected by cold stress at the seedling stage. Using the RNA-seq method, we identified 2237 differentially expressed genes (DEGs), namely 1656 and 581 annotated and unannotated DEGs, respectively. Further analysis of the 1656 annotated DEGs mined out two critical sets of cold-responsive DEGs, namely 779 and 877 DEGs, which were significantly enhanced in the tolerant and sensitive lines, respectively. Functional analysis of the 1656 DEGs highlighted the enrichment of signaling, carotenoid, lipid metabolism, transcription factors (TFs), peroxisome, and amino acid metabolism. A total of 147 TFs belonging to 32 families, including MYB, ERF, NAC, WRKY, bHLH, MIKC MADS, and C2H2, were strongly altered by cold stress. Moreover, the tolerant lines’ 779 enhanced DEGs were predominantly associated with carotenoid, ABC transporter, glutathione, lipid metabolism, and amino acid metabolism. In comparison, the cold-sensitive lines’ 877 enhanced DEGs were significantly enriched for MAPK signaling, peroxisome, ribosome, and carbon metabolism pathways. The biggest proportion of the unannotated DEGs was implicated in the roles of long non-coding RNAs (lncRNAs). Taken together, this study provides valuable insights that offer a deeper understanding of the molecular mechanisms underlying maize response to cold stress at the seedling stage, thus opening up possibilities for a breeding program of maize tolerance to cold stress.


Plant Science ◽  
2008 ◽  
Vol 175 (6) ◽  
pp. 809-817 ◽  
Author(s):  
Deng-Feng Zhang ◽  
Bo Li ◽  
Guan-Qing Jia ◽  
Ti-Fu Zhang ◽  
Jing-Rui Dai ◽  
...  

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