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The effect of growing regions, microbiological fertilizers and soil additives on productivity of buckwheat (Fagopyrum esculentum Moench)
Author(s) -
Žеlјkо Dоliјаnоvić,
Snežana Oljača,
D. Kovačević,
Srđan Šeremešić,
Zоrаn Јоvоvić
Publication year - 2014
Publication title -
journal of agricultural sciences
Language(s) - English
Resource type - Journals
eISSN - 2406-0968
pISSN - 1450-8109
DOI - 10.2298/jas1401025d
Subject(s) - humus , fertilizer , human fertilization , agronomy , sowing , altitude (triangle) , phosphorus , potassium , potash , environmental science , chemistry , horticulture , biology , mathematics , soil water , soil science , geometry , organic chemistry
This study was aimed at investigating the productivity of buckwheat taking into account growing regions, especially altitude, since this species does not have demanding soil requirements. The experiments were conducted during 2009 and 2010 in two localities: Valjevo (the village of Jasenica at 300 m altitude - 2009 and the village of Jovanja at 160 m altitude - 2010), and Nova Varos (the village of Radijevići at 1,065 m altitude). Soil of the experimental plots at both localities was characterized by acidic chemical reactions, with 3-5% of humus. In addition, the soil was rich in potassium, but poor in phosphorus. Within the objective test, with four replications, microbiological fertilizers Bactofil and Slavol were applied just before planting, alone or in combination with soil additives (hydrogel and zeolite). Half of each plot was fertilized foliarly, by the application of microbiological fertilizer Slavol using the concentrations of 50 ml per 10 liters of water. As compared with the control (no fertilizer application), in all variants of fertilization with a top dressing, increased grain yields were obtained. Significantly higher grain yields of buckwheat were obtained in the first locality, especially in the variant of fertilization with the combined use of Slavol and soil conditioner hydrogel. [Projekat Ministarstva nauke Republike Srbije, br. TR-31037

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