THE EFFECTS OF USING DIFFERENT SYSTEMS OF PRODUCTION OF TOBACCO SEEDLINGS

R. Kabranova, Z. Arsov, Karolina Kochoska, R. Mavroski
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Abstract

Tobacco is an economically important crop in Macedonia. To improve tobacco production is necessary good agricultural practice, which also involves the implementation of new technologies for production of tobacco seedlings. The Floating Trays System (FTS) is an advanced plant growing technology, which is particularly important when it comes to the resistance of tobacco plants and adaptation to a new environment (unavoidable physiological stress after transplantation). It represents an environmentally acceptable technology that allows respectively management chemicals and decreasing the risks of pollution on the humans and environmental management, as well as the establishment of sustainable development at the global level. FTS also provides a high yield and high quality of tobacco. Allows maximum use of dissolved nutrients, so plants form a strong root system and have a rapid development after transplantation. Further development of strong stems enables the formation of an adequate number of leaves even in unfavorable climatic conditions for tobacco, and synthesizes and accumulates more dry mass per plant. The experiment was set in a randomized block system in four repetitions on two oriental tobacco cultivars (prilep NS 72 and yaka YV 125/3), each in three variants: variant 1-control (conventional system of production); variant 2-N and variant 3-P (the soilless system using Floating Trays). Among the systems evaluated, the soilless system is technically the most successful and innovative which represents a technological progress for producing uniform seedlings for their quick formation in the field and to establish more homogeneous plantations. The results obtained in this trial showed significant differences among the tested variants.
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采用不同制度生产烟苗的效果
烟草在马其顿是一种重要的经济作物。提高烟草产量需要良好的农业规范,这也涉及到烟草育苗生产新技术的实施。浮盘系统(FTS)是一种先进的植物栽培技术,对于烟草植株的抗性和对新环境的适应(移栽后不可避免的生理胁迫)尤为重要。它是一种环境上可接受的技术,可以分别管理化学品和减少污染对人类和环境管理的风险,并在全球一级建立可持续发展。烟叶种植也提供了高产量和高质量的烟草。能最大限度地利用溶解的养分,使植株在移栽后形成强壮的根系,生长迅速。即使在对烟草不利的气候条件下,强壮的茎的进一步发育也能形成足够数量的叶片,并使每株植物合成和积累更多的干质量。试验以2个东方烟草品种(prilep NS 72和yaka YV 125/3)为试验材料,采用随机区组系统,每组4个重复,每组3个变异:变异1-对照(常规生产系统);变种2-N和变种3-P(使用浮动托盘的无土系统)。在评估的系统中,无土系统在技术上是最成功和创新的,它代表了一种技术进步,可以生产均匀的幼苗,以便在田间快速形成,并建立更均匀的人工林。在这个试验中获得的结果显示了被测试的变体之间的显著差异。
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