يعرض 1 - 20 نتائج من 47 نتيجة بحث عن '"Lizcano Toledo, Rodolfo"', وقت الاستعلام: 0.58s تنقيح النتائج
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    Dissertation/ Thesis

    المؤلفون: Lizcano Toledo, Rodolfo

    Thesis Advisors: Universidade Estadual Paulista "Júlio de Mesquita Filho" Faculdade de Ciências Agrárias e Veterinárias.

    وصف الملف: xii, 87 p.

    Relation: Sistema requerido: Adobe Acrobat Reader

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    Academic Journal

    المؤلفون: Lizcano Toledo, Rodolfo1,2 (AUTHOR) rodolfolizcano@gmail.com, Melo, Wanderley José de1,3 (AUTHOR), Prado, Renato de Mello1 (AUTHOR), Olivera Viciedo, Dilier4 (AUTHOR), Peruca de Melo, Gabriel Maurício5 (AUTHOR), de Araújo, Ademir Sérgio Ferreira6 (AUTHOR), Calero Hurtado, Alexander7 (AUTHOR)

    المصدر: Journal of Plant Nutrition. 2025, Vol. 48 Issue 4, p670-689. 20p.

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    Academic Journal

    المصدر: Revista Facultad Nacional de Agronomía Medellín; Vol. 71 No. 3 (2018); 8601-8608 ; Revista Facultad Nacional de Agronomía Medellín; v. 71 n. 3 (2018); 8601-8608 ; Revista Facultad Nacional de Agronomía Medellín; Vol. 71 Núm. 3 (2018); 8601-8608 ; 2248-7026 ; 0304-2847

    وصف الملف: application/pdf; application/xml

    Relation: https://revistas.unal.edu.co/index.php/refame/article/view/67786/67414; https://revistas.unal.edu.co/index.php/refame/article/view/67786/68424; Barbosa JC, Maldonado Júnior W. 2011. AgroEstat: sistema para análises estatísticas de ensaios agronômicos. FCAV/UNESP, Jaboticabal, version 1, No. 0.694.; Bouyoucos GJ. 1951. A Recalibration of the Hydrometer Method for Making Mechanical Analysis of Soils 1. Agronomy Journal 43(9): 434-438.; Color Munsell (Org). 2000. Munsell soil color charts: year 2000 revised washable edition. GretagMacbeth, New Windsor. 50 p.; Crutzen PJ and Steffen W. 2003. How long have we been in the Anthropocene era? Climatic Change. 61(3): 251-257. doi:10.1023/B:CLIM.0000004708.74871.62; Deng YS, Dong XIA, Cai CF and Ding SW. 2016. Effects of land uses on soil physic-chemical properties and erodibility in collapsinggully alluvial fan of Anxi County. China. Journal of Integrative Agriculture. 15: 1863-1873. doi:10.1016/S2095-3119(15)61223-0; Duval ME, Galantini JÁ, Martínez JM, López FM and Wall LG. 2016. Sensitivity of different soil quality indicators to assess sustainable land management: Influence of site features and seasonality. Soil and Tillage Research 15: 9-22. doi:10.1016/j. still.2016.01.004; Emadi M, Baghernejad M, Fathi H and Saffari M. 2008. Effect of land use change on selected soil physical and chemical properties in North Highlands of Iran. Journal of Applied Sciences 8(3): 496–502.; Fultz LM, Moore-Kucera J, Zobeck TM, Acosta-Martínez V, Wester DB and Allen VG. 2013. Organic carbon dynamics and soil stability in five semiarid agroecosystems. Agriculture Ecosystems and Environment. 181: 231-240. doi:10.1016/j.agee.2013.10.004.; Grossman RB and Reinsch TG. 2002. Bulk density and linear extensibility. pp. 201-228. In: Dane, J.M., and G.C. Topp (eds.) Methods of soil analysis. Part 4. Physical methods. Soil Science Society of America, Madison, Wisconsin, USA.; Hernández A, Vargas D, Bojórquez JI, García JD, Madueño A and Morales M. 2017. Carbon losses and soil property changes in ferralic Nitisols from Cuba under different coverages. Scientia Agricola. 74(4): 311-316. doi:10.1590/1678-992x-2016-0117; Hernández JA, Cabrera RA, Borges BY, Vargas BD, Bernal FA, Morales DM and Ascanio MO. 2013. Degradación de los suelos Ferralíticos Rojos Lixiviados y sus indicadores de la Llanura Roja de La Habana. Cultivos Tropicales 34(3): 45-51.; Hernández A, Serrano JB, Planes FM, Rodríguez AC, García MO, Paredes JDG and González ON. 2010. Fundamentos de la estructura de suelos tropicales. Publicado en formato digital por la Universidad Autónoma de Nayarit, México.; Hernández A, Morales M, Morell F, Borges Y, Bojórquez JI, Ascanio MO, García JD, Ontiveros H, and Murray R. 2009. Changes in soil properties by agriculutral activity in tropical ecosystems. Abstracts International conference «Soil Geography: New horizons». Huatulco, Mexico, p. 57.; Hernández A, Ascanio O, Morales M, Bojórquez JI, García N and García JD. 2006. El suelo: fundamentos de su formación, cambios globales y su manejo. Editorial Universidad de Nayarit, México. 255 p. ISBN: 968-833-072.; Hernández A, Paneque J, Pérez JM, Mesa A, Bosch D and Fuentes E. 1995. Metodología para la cartografía detallada y evaluación integral de los suelos. Instituto de Suelos, La Habana. 52 p.; Homburg JA and Sandor JA. 2011. Anthropogenic effects on soil quality of ancient agricultural systems of the American Southwest. Catena. 85(2): 144-154. doi:10.1016/j.catena.2010.08.005; Instituto de Suelos de Cuba. 2006. La degradación de los suelos en Cuba. En Resúmenes del Taller “La Metodología LADA y la Evaluación de las Tierras de Cuba”. La Habana, p. 25.; International Union of Soil Sciences [IUSS]. 2014. World Reference Base for Soil Resources 2014: International Soil Classification System for naming soils and creating legends for soil maps. FAO. Rome. Italy. (World Soil Resources Reports. 106).; Kelishadi H, Mosaddeghi MR, Hajabbasi MA and Ayoubi S. 2014. Near-saturated soil hydraulic properties as influenced by land use management systems in Koohrang region of central Zagros. Iran. Geoderma 213: 426-434. doi:10.1016/j.geoderma.2013.08.008; Lal R. 1986. Conversion of tropical rainforest: agronomicpotential and ecological consequences. Advances in Agronomy 39: 173-264. Academic Press. doi:10.1016/S0065-2113(08)60468-X; Lebedeva II, Tonkonogov VD and Gerasimova MI. 2008. A new classification system of soils of Russia: Preliminary results of discussion. Eurasian Soil Science 41(1): 93-99. doi:10.1134/S1064229308010110.; Martin N and Duran JL. 2011. Soil and fertility. Ed. Felix Varela, La Habana. pp. 1-347.; Olivera D. 2017. Degradação de propriedades físicas de latossolos vermelhos pela ação antrópica. En: XXXVI Congresso Brasileiro de Ciência do Solo. 2017. Belen. Para- Brasil. Amazônia e seus solos: peculiaridades e potencialidade. 2017. https://doi. org/10.13140/rg.2.2.32841.03681; Pieri C. (1995). Long term management experiments in semiarid Francophone Africa. In: Lal R, Stewart BA (eds.). Soil management: experimental basis for sustainability and environmental quality. CRC Press, Boca Raton, pp 225–266.; Price K, Jackson CR, Parker AJ. 2010. Variation of surficial soil hydraulic properties across land uses in the southern Blue Ridge Mountains. North Carolina. USA. Journal of Hydrology. 383(3-4): 256–268. doi:10.1016/j.jhydrol.2009.12.041; Reiners WA, Bouwman AF, Parsons WF and Keller M. 1994. Tropical rain forest conversion to pasture: changes in vegetation and soil properties. Ecological Applications 4(2): 363-377. doi:10.2307/1941940; Selassie GY, Ayanna G. 2013. Effects of different land use systems on selected physico-chemical properties of soils in northwestern Ethiopia. The Journal of Agricultural Science 5(4): 112–120. doi:10.5539/jas.v5n4p112; Simeon P. 1979. Propiedades físicas de los principales suelos de Cuba. Voluntad Hidráulica 5: 10-19.; Six J, Elliott ET and Paustian K. 2000. Soil structure and soil organic matter II. A normalized stability index and the effect of mineralogy. Soil Science Society of America Journal 64(3): 1042-1049. doi:10.2136/sssaj2000.6431042x; Walkley A and Black IA. 1934. An examination of the Degtjareff method for determining soil organic matter, and a proposed modification of the chromic acid titration method. Soil Science: 37(1): 29-38.; Zhou X, Lin HS and White EA. 2008. Surface soil hydraulic properties in four soil series under different land uses and their temporal changes. Catena 73(2): 180–188. doi:10.1016/j.catena.2007.09.009; Zhu Q, Schmidt JP, Bryant RB. 2015. Maize (Zea mays L.) yield response to nitrogen as influenced by spatio-temporal variations of soil–water-topography dynamics. Soil and Tillage Research 146: 174- 183. doi:10.1016/j.still.2014.10.006; https://revistas.unal.edu.co/index.php/refame/article/view/67786

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    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/refame/article/view/67786; Universidad Nacional de Colombia Revistas electrónicas UN Revista Facultad Nacional de Agronomía Medellín; Revista Facultad Nacional de Agronomía Medellín; Olivera Viciedo, Dilier and Hernández Jiménez, Alberto and Rodríguez González, Manuel and Lizcano Toledo, Rodolfo and Calero, Alexander and Peña Calzada, Kolima (2018) Effects of land-use change on Nitisols properties in a tropical climate. Revista Facultad Nacional de Agronomía Medellín, 71 (3). pp. 8601-8608. ISSN 2248-7026; https://repositorio.unal.edu.co/handle/unal/65943; http://bdigital.unal.edu.co/66966/

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    المصدر: Agronomía Colombiana; Vol. 35 Núm. 2 (2017); 198-204 ; Agronomía Colombiana; Vol. 35 No. 2 (2017); 198-204 ; Agronomía Colombiana; v. 35 n. 2 (2017); 198-204 ; 2357-3732 ; 0120-9965

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/agrocol/article/view/62772/63779; Bataglia, O.C., A.M.C. Furlani, J.P.F. Teixeira, P.R. Furlani, and J.R. Gallo. 1983. Métodos de análise química de plantas. IAC-Boletim Téc. 78. Instituto Agronômico, Campinas, Brazil.; Barreto, R.F., R.M. Prado, A.J.F. Leal, M.J.B. Troleis, G.S. Junior, C.C. Monteiro, and R.F. Carvalho. 2016. Mitigation of ammonium toxicity by silicon in tomato depends on the ammonium concentration. Acta Agric. Scand. Sect. B Soil Plant Sci. 66(6), 483-488. Doi:10.1080/09064710.2016.1178324.; Bianco, M.S., A.B. Cecilio Filho, and L.B. de Carvalho. 2015. Nutritional status of the cauliflower cultivar 'Verona' grown with omission of out added macronutrients. PloS One 10(4), 1-17. Doi:10.1371/journal.pone.0123500.; Bittsánszky, A., K. Pilinszky, G. Gyulai, and T. Komives. 2015. Overcoming ammonium toxicity. Plant Sci. 231, 184-190. Doi:10.1016/j.plantsci.2014.12.005; Bybordi, A. 2010. Influence of NO3:NH4 ratios and silicon on growth, nitrate reductase activity and fatty acid composition of canola under saline conditions. AJAR, 5(15),1984-1992. Doi:10.5897/AJAR09.064.; Britto, D.T. and H.J. Kronzucker. 2002. NH4 + toxicity in higher plants: a critical review. J. Plant Physiol. 159(6), 567-584. Doi:10.1078/0176-1617-0774.; Camargo, G.A., L. Consoli, I.C.S. Lellis, J. Mieli, and É.K. Sassaki. 2007. Bebidas naturais de frutas: Perspectivas de mercado, componentes funcionais e nutricionais/natural fruits beverages: Market outlook, functional and nutritional components. Rev. Bioeng. 1(2), 179-205. Doi:10.18011/bioeng2007v1n2p179-205.; Chen, W., X. Yao, K. Cai, and J. Chen. 2011. Silicon alleviates drought stress of rice plants by improving plant water status, photosynthesis and mineral nutrient absorption. Biol. Trace Elem. Res. 142(1), 67-76. Doi:10.1007/s12011-010-8742-x.; Feng, J., Q. Shi, X. Wang, M. Wei, F. Yang, and H. Xu. 2010. Silicon supplementation ameliorated the inhibition of photosynthesis and nitrate metabolism by cadmium (Cd) toxicity in Cucumis sativus L. Sci. Hortic. 123 (4), 521-530. Doi:10.1016/j.scienta.2009.10.013.; Ferreira, D.F. 2011. Sisvar: a computer statistical analysis system. Ciênc. Agrotec. 35(6), 1039-1042. Doi:10.1590/S1413-70542011000600001.; Filgueira, F.A.R. 2008. Novo manual de olericultura. Agrotecnologia moderna na producao e comercializacao de hortalicas. 3rd ed. Vicosa-MG UFV, São Paulo, Brazil.; Gao Q, Wang and X. Lu. 2014. Effects of exogenous silicon on physiological characteristics of cucumber seedlings under ammonium stress. J Appl Ecol. 25, 1395-1400.; Hachiya, T., C.K. Watanabe, M. Fujimoto, T. Ishikawa, K. Takahara, M. Kawai-Yamada, and K. Noguchi. 2012. Nitrate addition alleviates ammonium toxicity without lessening ammonium accumulation, organic acid depletion and inorganic cation depletion in Arabidopsis thaliana shoots. Plant Cell Physiol. 53(3), 577-591. Doi:10.1093/pcp/pcs012.; Hoagland, D.R. and D.I. Arnon. 1950. The water-culture method for growing plants without soil. 2nd ed. California Agricultural Experiment Station, Berkeley, USA.; Huang, L., Y. Lu, X. Gao, G. Du, X. Ma, M. Liu, and Y. Chen. 2013. Ammonium-induced oxidative stress on plant growth and antioxidative response of duckweed (Lemna minor L.). Ecol. Eng. 58, 355-362. Doi:10.1016/j.ecoleng.2013.06.031.; Kochanova, Z., K. Jaskova, B. Sedlakova, and M. Luxova. 2014. Silicon improves salinity tolerance and affects ammonia assimilation in maize roots. Biol. 69, 1164-1171. Doi:10.2478/s11756-014-0411-7.; Kraska, J.E. and G.A. Breitenbeck. 2010. Simple, robust method for quantifying silicon in plant tissue. Comm. Soil Sci. Plant Anal. 41(17), 2075-2085. Doi:10.1080/00103624.2010.498537.; Liang, Y., W. Sun, Y.G. Zhu, and P. Christie. 2007. Mechanisms of silicon-mediated alleviation of abiotic stresses in higher plants: a review. Environ. Pollut. 147(2), 422-428. Doi:10.1016/j.envpol.2006.06.008.; Mateos-Naranjo, E., L. Andrades-Moreno, and A.J. Davy. 2013. Silicon alleviates deleterious effects of high salinity on the halophytic grass Spartina densiflora. Plant Physiol. Biochem. 63, 115-121. Doi:10.1016/j.plaphy.2012.11.015.; Roosta, H.R. A., Sajjadinia, A. Rahimi, and J.K. Schjoerring. 2009. Responses of cucumber plant to NH4 + and NO3 - nutrition: the relative addition rate technique vs. cultivation at constant nitrogen concentration. Sci. Hortic. 121(4), 397-403. Doi:10.1016/j.scienta.2009.03.004.; Song, A., P. Li, F. Fan, Z. Li, and Y. Liang. 2014. The Effect of Silicon on Photosynthesis and Expression of Its Relevant Genes in Rice (Oryza sativa L.) under High-Zinc Stress. PLoS One 9(11). Doi:10.1371/journal.pone.0113782.; Sarasketa, A., M.B. Gonzalez-Moro, C. Gonzalez-Murua, and D. Marino. 2014. Exploring ammonium tolerance in a large panel of Arabidopsis thaliana natural accessions. J. Exp. Bot. Doi:10.1093/jxb/eru342.; Setien, I., I. Vega-Mas, N. Celestino, M.E. Calleja-Cervantes, C. Gonzalez-Murua, J.M. Estavillo, and M.B. Gonzalez-Moro. 2014. Root phosphoenolpyruvate carboxylase and NAD-malic enzymes activity increase the ammonium-assimilating capacity in tomato. J. Plant Physiol. 171(5), 49-63. Doi:10.1016/j.jplph.2013.10.021.; Vaculikova, M., M. Vaculik, L. Simkova, I. Fialova, Z. Kochanova, B. Sedlakova, and M. Luxova. 2014. Influence of silicon on maize roots exposed to antimony - Growth and antioxidative response. Plant Physiol. Biochem. 83, 279-284. Doi:10.1016/j.plaphy.2014.08.014; Zanin, L., A. Zamboni, R. Monte, N. Tomasi, Z. Varanini, S. Cesco, and R. Pinton. 2015. Transcriptomic analysis highlights reciprocal interactions of urea and nitrate for nitrogen acquisition by maize roots. Plant Cell Physiol. 56(3), 532-548. Doi:10.1093/pcp/pcu202.; Zebarth, B.J., H. Tai, S. Luo, P. Millard, D. De Koeyer, X.Q. Li, and X. Xiong. 2012. Effect of nitrogen form on gene expression in leaf tissue of greenhouse grown potatoes during three stages of growth. Am. J. Potato Res. 89(4), 315-327. Doi:10.1007/s12230-015-9485-1.; https://revistas.unal.edu.co/index.php/agrocol/article/view/62772

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    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/agrocol/article/view/62772; Universidad Nacional de Colombia Revistas electrónicas UN Agronomía Colombiana; Agronomía Colombiana; Olivera Viciedo, Dilier and De Mello Prado, Renato and Lizcano Toledo, Rodolfo and Nascimento dos Santos, Luiz Cláudio and Peña Calzada, Kolima (2017) Response of radish seedlings (iRaphanus sativus/i L.) to different concentrations of ammoniacal nitrogen in absence and presence of silicon. Agronomía Colombiana, 35 (2). pp. 198-204. ISSN 2357-3732; https://repositorio.unal.edu.co/handle/unal/68193; http://bdigital.unal.edu.co/69226/

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    Academic Journal

    المصدر: Investigación Agraria, ISSN 1684-9086, Vol. 24, Nº. 1, 2022 (Ejemplar dedicado a: Enero-Junio), pags. 23-30

    وصف الملف: application/pdf

    Relation: https://dialnet.unirioja.es/servlet/oaiart?codigo=8740742; (Revista) ISSN 2305-0683; (Revista) ISSN 1684-9086

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    المؤلفون: Lizcano Toledo, Rodolfo

    المساهمون: Fernández Ondoño, Emilia, Celi, Luisella, Universidad de Granada. Programa de Doctorado en Ciencias de la Tierra

    المصدر: Digibug. Repositorio Institucional de la Universidad de Granada
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    وصف الملف: application/pdf

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