Peculiarities of growth and development of alfalfa-grasses mixtures depending on species composition and fertilizing

L. Burko, I. Svystunova, S. Poltoretskyi, T. I. Prorochenko
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Abstract

The results of research on the influence of grass species composition, fertilizer level, and Fumar growth stimulator on plant density and botanical composition are presented. The experimental part of the work was performed in the scientific laboratories of the Department of Forage Production, Land Reclamation and Meteorology in the production unit of the National University of Life and Environmental Sciences of Ukraine "Agronomic Research Station". The territory of the research station is located in the Right-Bank Forest-Steppe and is a part of Bila Tserkva agro-soil district. The experimental plots were laid on typical low-humus chernozems, coarse-grained light loam in terms of mechanical composition, which are characterized by a high content of gross and mobile forms of nutrients. The climate of the region is characterized by unstable humidity and moderate temperatures. The average annual air temperature is 6-8 ° C. The annual amount of precipitation reaches 562 mm, during the growing season - 354-394 mm (63-70% of the annual norm), which fall unevenly throughout the year. Based on the research, it was found that sown grasses was formed with a density of 686–1250 shoots per 1 m2 and a height of 58–148 cm. Alfalfa-grasses and grasses are denser than alfalfa. During the period from the 1st to the 3rd year of grassland use, the density of alfalfa shoots decreases, while orchard grass and smooth brome grass increase, moreover, and more significant on the backgrounds of N60 application. During the first three years of use, grasslands are formed with the dominance of sown components with the share of alfalfa in single-species sowing 85–98%, in alfalfa-grasses mixtures - 30–58%. During the period from the 1st to the 3rd year of alfalfa-grasses stands using, the share of alfalfa decreases by 11–24%, and more significantly on backgrounds with N60 application. Also between the two kinds of grass components, there is a change of co-dominant - from meadow fescue to reed fescue, reed fescue to orchard grass, English bluegrass to smooth brome grass, while, as in grasses, reed fescue to smooth brome grass. English bluegrass in the 3rd year of use is much liquefied, reducing the share of participation to 5-14%.
紫花苜蓿-禾草混交种的生长发育特性取决于物种组成和施肥
介绍了牧草种类组成、施肥水平和富玛尔生长刺激剂对植物密度和植物组成影响的研究结果。这项工作的实验部分是在乌克兰国立生命与环境科学大学“农艺研究站”生产单位的饲料生产、土地复垦和气象系的科学实验室进行的。研究站的领土位于右岸森林草原,是Bila Tserkva农业土壤区的一部分。试验田设置在典型的低腐殖质黑钙土、粗粒轻壤土的机械组成上,其特点是总养分和流动养分含量高。该地区气候的特点是湿度不稳定,温度适中。年平均气温6-8℃,年降水量562毫米,生长期为354-394毫米,占年常值的63-70%,全年降水不均匀。通过研究发现,播种草的密度为686 ~ 1250根/ m2,株高为58 ~ 148 cm。苜蓿草和草比苜蓿密度大。在草地利用的第1 ~第3年,紫花苜蓿的芽密度降低,果园草和雀麦的芽密度增加,且在施用N60的背景下更为显著。在使用的前3年,形成了以播种成分为主的草地,单种播种中苜蓿所占比例为85-98%,苜蓿-草混播中苜蓿所占比例为30-58%。在紫花苜蓿草分林使用的第1 ~第3年,紫花苜蓿草分林所占比例下降了11% ~ 24%,以N60处理的下降幅度更大。在两种草类成分之间,也存在着共优势的变化——从草地羊茅到芦苇羊茅,芦苇羊茅到果园草,英国蓝草到光滑的雀麦草,而在草类中,芦苇羊茅到光滑的雀麦草。英国蓝草在使用的第三年变得更加液化,参与的份额减少到5-14%。
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