يعرض 1 - 10 نتائج من 22 نتيجة بحث عن '"Forrages"', وقت الاستعلام: 0.91s تنقيح النتائج
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    رسالة جامعية

    المؤلفون: Demdoum, Samir

    المساهمون: University/Department: Universitat de Lleida. Departament de Producció Vegetal i Ciència Forestal

    مرشدي الرسالة: Delgado Enguita, Ignacio

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

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    دورية أكاديمية
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    تقرير

    وصف الملف: 79 p.; application/pdf

    العلاقة: Bastidas, M.; Villegas, D.; Ruden, A.; Mazabel, J.; Enciso, K.; Gutierrez, J.F.; Arango, J. (2020) Determinación de la eficiencia en el uso del nitrógeno (UEN) por principales pasturas forrajeras de trópico bajo en respuesta a diferentes fertilizantes nitrogenados - Informe final de resultados. Palmira (Colombia): Alianza Bioversity International - CIAT. 79 p.; https://hdl.handle.net/10568/111554Test; PII-LAM_LivestockPlus

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    مؤتمر

    المؤلفون: Daems, Frédéric

    المساهمون: Centre wallon de recherches agronomiques, research center

    جغرافية الموضوع: national

    العلاقة: Wagralim Food Connection, Court-Saint-Etienne, Belgium (26 septembre 2017)

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    دورية أكاديمية

    المصدر: Acta Agronómica; Vol. 67 Núm. 1 (2018); 133-139 ; Acta Agronómica; Vol. 67 No. 1 (2018); 133-139 ; Acta Agronómica; v. 67 n. 1 (2018); 133-139 ; 2323-0118 ; 0120-2812

    وصف الملف: application/pdf; application/xml; application/epub+zip

    العلاقة: https://revistas.unal.edu.co/index.php/acta_agronomica/article/view/55849/63622Test; https://revistas.unal.edu.co/index.php/acta_agronomica/article/view/55849/67726Test; https://revistas.unal.edu.co/index.php/acta_agronomica/article/view/55849/71619Test; Asghar, H., Zahir, Z., Arshad, M. & Khaliq, A. (2002). Relationship between in vitro production of auxins by rhizobacteria and their growth-promoting activities in Brassica juncea L. Biol Fert Soils, 35 (4), 231-237. https://doi.org/10.1007/s00374-002-0462-8Test; Ghosh, P.K., Kumar, D.T. & Kanti, M.T. (2015). Production and metabolism of indole acetic acid in root nodules and symbiont (Rhizobium undicola) isolated from root nodule of aquatic medicinal legume Neptunia oleracea Lour. J Bot, 2015 (1), 1-11. http://dx.doi.org/10.1155/2015/575067Test; Giraud, E., Moulin, L., Vallenet, D., Barbe, V., Cytryn, E., Avarre, J.C., Jaubert, M., Simon, D., Cartieaux, F., Prin, Y., Bena, G., Hannibal, L., Fardoux, J., Kojadinovic, M., Vuillet, L., Lajus, A., Cruveiller, S., Rouy, Z., Mangenot, S., Segurens, B., Dossat, C., Franck, W.L., Chang, W.S., Saunders, E., Bruce, D., Richardson, P., Normand, P., Dreyfus, B., Pignol, D., Stacey, G., Emerich, D., Verméglio, A., Médigue, C. & Sadowsky, M. (2007). Legumes symbioses: absence of nod genes in photosynthetic Bradyrhizobia. Sci, 316 (5829), 1307-1312. http://dx.doi.org/10.1126/science.1139548Test; Gutierrez, C.K., Matsui, G.Y., Lincoln, D.E. & Lovell, C.R. (2009). Production of the phytohormone indole-3-acetic acid by estuarine species of the genus Vibrio. Appl Environ Microb, 78(8), 2253-2258. http://dx.doi.org/10.1128/AEM.02072-08Test; Kaneko, T., Nakamura, Y., Sato, S., Asamizu, E., Kato, T., Sasamoto, S., Watanabe, A., Idesawa, K., Ishikawa, A., Kawashima, K., Kimura, T., Kishida, Y., Kiyokawa, C., Kohara, M., Matsumoto, M., Matsuno, A., Mochizuki, Y., Nakayama, S., Nakazaki, N., Shimpo, S., Sugimoto, M., Takeuchi, C., Yamada, M. & Tabata, S. (2000). Complete genome structure of the nitrogen-fixing symbiotic bacterium Mesorhizobium loti. DNA Res, 7(6) 331-338. https://doi.org/10.1093/dnares/7.6.331Test; Kaneko, T., Nakamura, Y., Sato, S., Minamisawa, K., Uchiumi, T., Sasamoto, S., Watanabe, A., Idesawa, K., Iriguchi, M., Kawashima, K., Kohara, M., Matsumoto, M., Shimpo, S., Tsuruoka, H., Wada, T., Yamada, M. & Tabata, S. (2002). Complete genomic sequence of nitrogen-fixing symbiotic bacterium Bradyrhizobium japonicum USDA110 (supplement) DNA Res, 9(6), 225-256. https://doi.org/10.1093/dnares/9.6.225Test; Kravchenko, L.V., Azarova, T.S., MakarovaI, N.M. & Tikhonovich, A. (2004). The effect of tryptophan present in plant root exudates on phytostimulating activity of rhizobacteria. Microbiol, 73 (2), 156-158. https://doi.org/10.1023/B:MICI.0000023982.76684.9dTest; Lambrecht, M., Okon, Y., Broek, A.V. & Vanderleyden, J. (2000). Indole-3-acetic acid: a reciprocal signalling molecule in bacteria-plant interactions. Trends Microbiol, 8(7), 298-300. http://dx.doi.org/10.1016/S0966-842XTest(00)01732-7; Lwin, K.M., Myint, M.M., Tar, T. & Moe, A.W. (2012). Isolation of plant hormone (Indole-3-Acetic Acid – IAA) producing rhizobacteria and study on their effects on maize seedling. Eng J, 16(5), 137-144. http://dx.doi.org/10.4186/ej.2012.16.5.137Test; Machado, R.G., de Sá, E. L. S., Hahn, L., Oldra, S., Mangrich, d.P., João, F., Osório, F., Dias, B., Dobler, S.M.R. & da Silva, W.R. (2016). Rhizobia symbionts of legume forages native to south Brazil as promoters of cultivated grass growing. Int J Agric Biol, 18 (5), 1011-1016. http://dx.doi.org/10.17957/IJAB/15.0201Test; Malik, D.K. & Sindhu, S.S. (2011). Production of indole acetic acid by Pseudomonas sp.: effect of coinoculation with Mesorhizobium sp. Cicer on nodulation and plant growth of chickpea (Cicer arietinum). Physiol Mol Biol Plants, 17 (1), 25-32. http://dx.doi.org/10.1007/s12298-010-0041-7Test; Miransari, M. & Smith, D. (2009). Rhizobial lipo-chitooligosaccharides and gibberellins enhance barley (Hordeum vulgare L.) seed germination. Biotechnol, 8(2), 270-275. http://dx.doi.org/10.3923/biotech.2009.270.275Test; Nascimento, F., Brígido, C., Alho, L., Glick, B.R. & Oliveira, S. (2012). Enhanced chickpea growth promotion ability of a mesorhizobia expressing an exogenous ACC deaminase gene. Plant Soil, 353(1), 221-230. http://dx.doi.org/10.1007/s11104-011-1025-2Test; Osório, F. B.D., Gano, K.A., Binz, A., Lima, R.F., Martinez, A.L., Ramirez, A. Caballero, M.J., de Sá, E.L.S. & Giongo, A. (2014). Rhizobia enhance growth in rice plants under flooding conditions. American-Eurasian J Agric & Environ Sci, 14(8), 707-718. http://dx.doi.org/10.5829/idosi.aejaes.2014.14.08.12377Test; Schlindwein, G., Vargas, L.K., Lisboa, B.B., Cruz, A. A., Eichelberger, G.C., Gabiatti, N.C., Prates, F. & Stumpf, R. (2008). Influência da inoculação de rizóbios sobre a germinação e o vigor de plântulas de alface. Cienc Rural, 38(3), 658-664. http://dx.doi.org/10.1590/S0103-84782008000300010Test; Senthilkumara, M., Madhaiyan, M., Sundaram, S.P. & Kannaiyan, S. (2009). Intercellular colonization and growth promoting effects of Methylobacterium sp. with plant-growth regulators on rice (Oryza sativa L. CvCO-43). Microbiol Res, 164(1), 92-104. https://doi.org/10.1016/j.micres.2006.10.007Test; Spaepen, S., Vanderleyden, J. & Remans, R. (2007). Indole-3-acetic acid in microbial and microorganism-plant signaling. FEMS Microbiol Rev, 31 (4), 425-448. https://doi.org/10.1111/j.1574-6976.2007.00072.xTest; Yanni, Y. G., Rizk, R. Y., Abd, El-Fattah, F. K., Squartini, A., Corich, V., Giacomini, A.,.Dazzo, F. B. (2001). The beneficial plant growth-promoting association of Rhizobium leguminosarum bv. trifolii with rice roots. Aust J Plant Physiol, 28(9), 845-870. https://doi.org/10.1071/PP01069Test; https://revistas.unal.edu.co/index.php/acta_agronomica/article/view/55849Test

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    دورية أكاديمية
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    رسالة جامعية
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    دورية أكاديمية