scholarly journals Analysis of the Growing Conditions of the Growth of Woody Plants in an Urbanized Environment

Author(s):  
E V Avdeeva ◽  
A A Izvekov
Author(s):  
O. O. Smolina

Purpose: Tree shaping catalog development of practical use: garden chair category; study of the ergonomic aspects of their design, calculation of the time for the formation of tree shaping objects with regard to the plant types. A deeper study of the formation of natural and artistic objects of architectural space, i.e., tree shaping.Design/methodology/approach: Ergonomic analysis, analysis of woody plants compositions in tree shaping, visual-anthropometric analysis, modeling, comparative analysis.Originality/value: 1. Proposed tree shaping catalogs in the category of garden chairs. These catalogs have no analogues in are Russia. 2. The selected woody plants of the West Siberian region, most adapted to humane correction of growth, with the ecological specification in accordance with the following parameters: gas resistance, growth rate, life cycle of a woody plant. 3. Diagrams are suggested for the garden chair dimensions (chair back height, seat width, chair leg height) depending on the woody plant (willow, Tatar maple, bird cherry).Findings: Many identified aspects are can be used in tree shaping: compositional complexity of tree shaping, woody plant type, growth characteristics, and the growing conditions.Practical implications: The obtained results can be used as in a deeper study of new approaches to the formation of open architectural spaces with plant materials.


Author(s):  
I. N. Turbina ◽  
G. M. Kukurichkin

The botanical garden in Surgut is the northernmost in Western Siberia and one of the northernmost botanical gardens in Russia. It is the major point for promoting new agricultural and bio-logical technologies to the Far North. Currently, the collection of ornamental plants of the Surgut botanical garden comprises about 200 species and varieties of herbaceous plants belonging to 60 genera and 32 families, and more than 110 species of woody plants. The research objective is to study the adaptation mechanisms of some ornamental plants from the collection of the botanical garden using the up-to-date portable flavonoid and chlorophyll meter DUALEX. The research objects are five species of herbaceous plants of genus Iris L. – Iris hungarica Waldst. & Kit., Iris variegate L., Iris sibirica L., Iris glaucescens Bunge, Iris sulfurea C. Koch. and eight species of woody plants of genus Acer L. – Acer pseudoplatanus L., Acer rubrum L., Acer trautvetteri Medw., Acer tataricum L., Acer ukurunduense Trautv. & C.A. Mey., Acer spicatum Lam., Acer mandshuricum Maxim., Acer ginnala Maxim. The range of nitrogen balance (Nbi) in herbaceous plants varied from 32.2 to 39.7, and the chlorophyll content was from 48.1 to 58.6 mg/cm2. In woody plants, the content of chlorophyll (Chl) ranged from 23.9 mg/cm2 (Acer spicatum) to 31.3 mg/cm2 (Acer rubrum), i.e. only 1.3 times within the group species growing on one flank. The content of flavanols in woody plants ranged from 1.3 mg/cm2 in Acer mandshuricum to 1.9 mg/cm2 in Acer ukurunduense. The maximum values of Nbi, Chl indices for Iris hungarica and Acer pseudoplatanus are an adaptive reaction to growing conditions and indicate the formation of plantprotective functions. The pigment content of leaves in ornamental plants indicates their satisfactory physiological state, as evidenced by a slight variation in biochemical parameters among the tested groups of ornamental plants.


Author(s):  
Galina N. Gordeeva ◽  

According to the International Agenda for Botanic Gardens in Conservation about 500 species of woody plants, which represent six regions of the world, are conserved in the collection of the Research Institute of Agricultural Problems of Khakassia. The arboretum is located in the dry steppe zone of the Republic of Khakassia. There are 44 species of trees, shrubs and lianas of different rarity. Many of them are beautifully flowering, and therefore can be used for landscaping. The aim of the work is summing up the introduction of rare and endangered plants for their further usage in the improvement of residential areas of the Khakasia steppe zone. The research objects are 21 species of rare plants of the arboretum of the Institute. The periods of phenological stages of species, their growth and development rhythm, winter hardiness, period and duration of flowering, and ways of reproduction were determined. As a result, an introduction point was given to each plant and its perspectivity was estimated. The average age of rare plants was 40.7 years. All studied plants are early growing (from April 10 to May 10). In new growing conditions 72 % of species pass through a full life cycle, 19 % flower, but do not bear fruit, 9 % do not flower. According to the flowering period, 53 % of rare shrubs are early flowering (May). The longest flowering period was found in 19 % of species. The main phenological stages of plants occur during the stable periods, the low level of standard deviation confirms it. Self-seeding is typical for 28 % of the studied species. In the arboretum conditions 42 % reproduce both by seeds and vegetatively; 33 % – vegetatively and 23 % – by seeds. The introduction point shows the degree of adaptation to the new environment. As a result, 10 species have 5 and 4 points (96 %), Menispermum dahuricum, which annually freezes to the soil level, has 3 points. Perspectivity of the studied plants was identified based on the analysis of their viability parameters: 4 % of species turned to be non-perspective while 20 % are less perspective. Long-term studies of the biological features of rare woody plants indicate that rather perspective (38 %) and perspective (38 %) of the plants can be used in the improvement of residential areas of Khakasia. New species are introduced into the production for single and group planting: Deutzia glabrata, Armeniaca mandshurica, Prinsepia sinensis, Spiraea trilobata, and Rosa spinosissima. For citation: Gordeeva G.N. Effectiveness of Introduction of Rare Plants in the Arboretum of Khakassia. Lesnoy Zhurnal [Russian Forestry Journal], 2021, no. 3, pp. 24–36. DOI: 10.37482/0536-1036-2021-3-24-36


1989 ◽  
Vol 7 (2) ◽  
pp. 77-78
Author(s):  
Tom Ness
Keyword(s):  

2014 ◽  
Vol 26 (3-4) ◽  
pp. 42-61
Author(s):  
O. G. Lucyshyn ◽  
I. K. Teslenko

The recent ecological situation of Kyiv megalopolis has a special specific of environment technogenic pollution as a chemical features and content of polluting phytotoxicants. During 2007–2012, our observation revealed what the most dangerous factors which have harm impact on the street woody plants are the huge concentration of phytotoxic elements (Na+, Cl-, Pb2+, Cd2+). Nowadays, the technogenic impact on the megalopolyisis surrounding comes to the dangerous, even, catastrophic level. The main reason of total and chloral necrose of leaves, the summer defoliation of crown and major tree's death is the over pollution of the soil and plant's phytomass by phytotoxic elements, the concentration of which by standards evaluation and by trees reactions are critical and exists at the level of adaptation possibility and survival. The main sources of Pb2+ and Cd2+ ions are transport outcomes (> 90 % of total technogenic pollution). The increasing of Pb2+ and Cd2+ in the soil is depended from intensivity of transport outcomes, using of ethylated petrol, and location of trees along roads as well as from the trees species. Continuously increasing of number of cars at the city streets is accompanying with similar increasing of ions concentration. Thus, in the soil around root system of street woody plants, depending from their location along roads, the concentration of Pb2+ (moving form) is between 41,7 (I. Kudri str.) and 102,6 mg\kg of soil (Nauki avenue). It exceeds the maximum permissible concentration (MPC), which is 20,8–51,3 mg\kg of soil. Next, for Norway maple (Acer platanoides) the concentration of Pb2+ in the soil varies from 41,7 to 80,5 mg / kg of soil in the area of the root system and it is around 20,8–40,2 MPC. In the leaves of this tree it is 7,83–13,5 mg / kg of dry mass (MPC is 15,8–27,0). For the horse chestnut (Aedculus hippocastanum) at the Nauka avenue, the concentration of plumbum in the root is 13,4 mg / kg (MPC is 26,8), in the cortex – 17,7 mg / kg (MPC is 35,4), in leaves – 8,21 mg / kg (MPC is 16,4), which by the normative evaluation are the critical concentrations. The source of Na+ and Cl-, which is a new factor for Kyiv megalopolis, is irregular load of high concentrations of industrial salt NaCl into the environment, as a way against black ice in winter time, where the Na+ ions ( mobile form) is in the high concentrations in leaves (0,76 % for Norway maple (Acer platanoides) on the I. Kudri str., 1,28 % – small-leaved linden (Tilia cordata) at the 40-richya Zhovtnya ave, 2,0 % – horse chestnut (Aedculus hippocastanum) at the Nauki ave), those are exceeded the concentration of the element comparing to the control test object, respectively, in 10,6, 12,8 and 5,0 times. Na+ ions are an aggressive phytotoxins and the main factor of leaves necrose of tree crown (within 70–100 % necrosis leaves in the crown). Degradation and total reduction of the specific weight of plants in the megalopolis environment are decrease the cleaning role of the street tree plants, which are the main alive filters for soil and air cleaning, as well as the main bioaccumulators and detoxicants of harm substances of anthropogenic pollution. Species adaptive specificity is revealed at the bioaccumulation level and the selective locality of phytotoxic elements (Na+, Cl-, Pb2+, Cd2+, agile form) in technourbanhabitats-pic conditions, there dominated bioaccumulation and localization of Na+ ions by trees assimilative system is caused the adaptive orientation of endogenic and intraspecific variability of phytoindicative morphophysiologic features of plants functional condition under the stressing factors. This also is defined the sensitivity of small-leaved linden (Tilia cordata Mill.), norway maple (Acer platanoides L.) and horse chestnut (Aesculus hippocastanum L.) to the big concentration of potassium as the most danger one for the plant survival. The biggest accumulation of Na+ ions at the roots of Lombardy poplar (Populus pyramidalis Roz.), Bolle's poplar (Populus bolleana Lauche) and sugar maple (Acer saccharinum L.) is lead to a higher resistance of their assimilation system. At the technourbohabitate-pic conditions, the level of realization of ontogenetic and phylogenetic adaptive capacity of the sensitive species of trees is harmfully low (21,3–44,3 %). It is at the level of survival/death of plants. The street Lombardy poplar, Bolle's poplar and sugar maple, despite of more higher level of their adaptation (68,4–87,7 %), still also can't fully adapt to the critical levels of technogenic pollution of megalopolis environment. 


2017 ◽  
Vol 7 (4) ◽  
pp. 51-55
Author(s):  
S. A. Abiev ◽  
S. A. Aipeisova ◽  
N. A. Utarbaeva

<p>The purpose of our work is to assess the health state of woody plants growing in different habitats of the city of Aktobe. We have studied the health state of arboreal and shrubby plants growing in various urban habitats; the survey was conducted during 2016-2017 by route-visual method. We performed the analysis of species diversity, abundance and density in urban area. The assessment of health state of the trees was made according to V.A. Alekseev. From your data and literature review we established that such species as Ulmus pinnato-ramosa, Acer negundo, Populus tremula, Populus nigra, and Syringa vulgaris have strong winter resistnce in the territory of Aktobe; we registered that only their apex buds and emds of the shoots were frozen in severe winters. The medium-resistant speices include Ulmus laevis and Acer platonoides. They are less plastic and suffer from late spring and early autumn frosts. The Amorpha fruticosa, Vitis vinifera, and Parthenocissus guinguefolia could be considered as the non-resistant species, since they usually freeze up to the snow cover line. The analysis of the vital state made it possible to assess the resistance to urban conditions of the majority of trees and shrubs registered in urban habitats of Aktobe. According to the preliminary data, the origin of the plant and its winter resistance are of main importance when introducing new species to urban area.</p>


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