Search Results - Peronismo~

  1. Validación once líneas de tomate (Solanum esculentum Mill) en la Comarca el Tule Departamento de Boaco. En el periodo de Junio a Agosto del 2015 by Díaz Siles, Edwing Francisco, Flores Duarte, Francisco Javier

    Published 2015
    “…El estudio se realizó en la finca SAN JERONIMO entre los meses de Mayo a Agosto del 2015 propiedad de Sergio Urbina Rodríguez; la cual se localiza en la Comarca el Tule Central a 10 Km norte de Camoapa, los municipios de Boaco. …”
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    Tesis
  2. Campo demostrador “San José”. Una propuesta de prácticas de reducción de riesgo ambiental en sistemas extensivos del partido de Lobería, sudeste de la provincia de Buenos Aires by Erreguerena, Juan María, Besteiro, Ignacio, Lopez De Sabando, Marcelo, Lanzavecchia, Luis Agustin, Aranguren, Cecilia Ines, Eiza, Maximiliano Joaquin

    Published 2022
    “…El territorio donde trabajamos se encuentra conformado por una configuración de pueblos rurales y parajes en el partido de Lobería (Sudeste Bonaerense): San Manuel, Napaleofú, Dos Naciones, La Alianza, Licenciado Matienzo; y una Colonia de productores familiares denominada La Suiza, fundada en 1952 en el marco de la política agraria del segundo gobierno peronista. El establecimiento “San José” de 110 has se encuentra ubicado en dicha Colonia. …”
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    Conferencia
  3. Diagnóstico de los procesos comunicacionales desarrollados en la Mesa de Gestión Ambiental de Cruz Alta by Felipe, Marí­a Nilce

    Published 2017
    “…Tesis de maestría para obtener el grado de Magister en Planificación y Gestión de Procesos Comunicacionales presentada en la Universidad Nacional de La Plata, Facultad de Periodismo y Comunicación Social en junio de 2013…”
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    Tesis
  4. Sequence analysis of genome segments S5 and S10 of Mal de Río Cuarto virus (Fijivirus, Reoviridae) by Distefano, Ana Julia, Hopp, Horacio Esteban, Del Vas, Mariana

    Published 2023
    “…The protein coded by MRCV S5 had 62.8% and 35.7% identity to fijiviruses RBSDV S5 and FDV S5 coded proteins, and contained a rarely reported type-1 C-terminal peroxisomal targeting signal. The protein coded by MRCV S10 had identity levels of 72.4% and 21.7% to the major outer capsid proteins of fijiviruses RBSDV S10 and NLRV S8.…”
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    Artículo
  5. Felin hepatisk lipidos by Gripsborn, Johanna

    Published 2017
    “…De övergripande teorier som finns angående patogenesen vid FHL omfattar en ökad inlagring av triglycerider i hepatocyterna till följd av en minskad betaoxidation i mitokondrier och peroxisomer, en minskad utsöndring av triglycerider i form av VLDL, en ökad nysyntes av fettsyror samt en ökad mobilisering av fett från perifer fettvävnad. …”
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    First cycle, G2E
  6. RNA-seq reveals differentially expressed genes between two indica inbred rice genotypes associated with drought-yield QTLs by Ereful, Nelzo C., Liu, Li-Yu, Greenland, Andy, Powell, Wayne, Mackay, Ian, Leung, Hei

    Published 2020
    “…Apo uniquely showed significant enrichment of genes associated with an oxygen binding function and peroxisome pathway. In general, IR64 exhibited more extensive molecular re-programming, presumably, a highly energy-demanding route to deal with the abiotic stress. …”
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    Journal Article
  7. Overexpression of TdNACB improves the drought resistance of rice by Fangyi Gong, Tian Zhang, Yusen Lu, Velu, Govindan, Ruiqin Liu, Jia Liu, Xiangquan Wang, Dengcai Liu, Youliang Zheng, Lin Huang, Bihua Wu

    Published 2024
    “…The transcriptome analysis found 14,284, 22,383 and 21,451 genes had expression corresponding responsed to drought stress at 24h, 48h, 120h, respectively and significantly enriched in ‘Arginine and proline metabolism’ and ‘Peroxisome’ in BAd7-209. 1666 transcription factors (TFs) related responsed to drought stress in which TdNACB showed high expression at 24h, 48h and 120h and had the closest relationship with TaNAC48 and OsNAC6 in phylogenetic analysis. …”
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    Journal Article
  8. Genome-wide association analysis for tuber dry matter and oxidative browning in water yam (Dioscorea alata L.) by Gatarira, C., Agre, P., Matsumoto, R., Edemodu, A., Adetimirin, Victor O., Bhattacharjee, Ranjana, Asiedu, R., Asfaw, A.

    Published 2020
    “…Gene annotation for the significant SNP loci identified important genes associated in the process of the proteolytic modification of carbohydrates in the dry matter accumulation pathway as well as fatty acid β-oxidation in peroxisome for enzymatic oxidation. Additional putative genes were also identified in the peak SNP sites for both tuber dry matter and enzymatic oxidation with unknown functions. …”
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    Journal Article
  9. The chlorotic symptom induced by Sunflower chlorotic mottle virus is associated with changes in redox-related gene expression and metabolites by Rodriguez, Marianela, Muñoz, Nacira Belen, Lenardon, Sergio Luis, Lascano, Hernan Ramiro

    Published 2021
    “…Mitochondrial Mn sod decreased at BS stage and aox decreased only at ES stage. Peroxisomal catalase (cat-2) was lower at BS and LS stages. …”
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    Artículo
  10. Cardiac and skeletal muscle transcriptome response to heat stress in Kenyan chicken ecotypes adapted to low and high altitudes reveal differences in thermal tolerance and stress re... by Srikanth, K., Kumar, H., Park, W., Byun, M., Lim, D., Kemp, Stephen J., Te Pas, M.F.W., Kim, J.-M., Park, Jong-Eun

    Published 2019
    “…A tissue- and stage-specific difference in response to HS was observed, with peroxisome proliferator-activated-receptor (PPAR) signaling and mitogen-activate protein kinase (MAPK) signaling pathways, enriched in heart and skeletal muscle, respectively, and the p53 pathway enriched only in the acute stage in both tissues. …”
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    Journal Article
  11. Unraveling regulation of the small heat shock proteins by the heat shock factor HvHsfB2c in barley: Its implications in drought stress response and seed development by Reddy, Palakolanu Sudhakar, Kavi Kishor, Polavarapu B., Seiler, Christiane, Kuhlmann, Markus, Eschen-Lippold, Lennart, Lee, Justin, Reddy, Malireddy K., Sreenivasulu, Nese

    Published 2014
    “…While all three major classes (A, B, C) of Hsfs are localized in nucleus, the 20 sHsp gene family members are localized in different cell organelles like cytoplasm, mitochondria, plastid and peroxisomes. Hsf and sHsp members are differentially regulated during drought and at different seed developmental stages suggesting the importance of chaperone role under drought as well as seed development. …”
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    Journal Article

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