Morpho-Physiological and Ecological Characteristics of Melilotus officinalis (Fabaceae, Magnoliopsida) in the Conditions of the Republic of Tatarstan

Author(s):  
S. A. Dubrovnaya ◽  
L. Z. Khusnetdinova ◽  
N. K. Attobrah

The morphological variability of the aerial vegetative and generative organs of Melilotus officinalis in the ecotone communities of the forest-steppe zone, the forest zone of the Republic of Tatarstan including desecrated parts of the forest zone was studied. The ascorbic acid content in various parts of the plants growing in these habitats was also analyzed. It was revealed that the realization of the morpho-physiological potential of plants was determined by the conditions of botanical-geographical zones. The sweet clover, growing on black soils under the conditions of ecotone communities of the forest-steppe zone, was found to have higher indicators of “total biomass”, “biomass of leaves”, “biomass of inflorescences”, etc., as compared to the plants from similar communities growing on gray soils of the forest zone. Under the conditions of the ecotone communities of the forest-steppe zone, the content of ascorbic acid in all parts of the plant was also higher. Melilotus officinalis, growing in the conditions of a desecrated soil layer, was characterized by the maximum realization of its biomorphological potential with a low value of the coefficient of variation (CV), which reflected a stronger homogeneity of the samples. In the plants growing under extreme conditions, a sharp increase in the concentration of ascorbic acid in all parts was observed, which could be considered as an important mechanism for the adaptation of the species to survival under conditions of a sharp temperature difference of the substrate. Along with an increase in the generative period, an important component of the species adaptation was the low correlation between the indicator “biomass of inflorescences” and the concentration of ascorbic acid in inflorescences, “biomass of inflorescences” and the concentration of ascorbic acid in the leaves, which reflected the stable process of formation of the generative system of sweet clover. All coenopopulations were characterized by an incomplete ontogenetic spectrum with an absolute maximum on the plants with the middle-age ontogenetic status (95%).

10.12737/1366 ◽  
2013 ◽  
Vol 8 (3) ◽  
pp. 122-125
Author(s):  
Рыжих ◽  
Lyudmila Ryzhikh

The article is undertaken a comparative study of technologies, based on plowing with a turnover of the reservoir, and main alternative tillage in a crop rotation with perennial grasses and row crops (potatoes) in the specific environmental conditions of the Predkamskiy forest zone region. We present the results of potato production in the crop rotation, provided various ways of handling the gray forest soils of forest-steppe zone of the Republic of Tatarstan (example plot experimental fields of Tatar Research Institute of Agriculture on gray forest soils).


2018 ◽  
pp. 120-137 ◽  
Author(s):  
G. R. Khasanova ◽  
S. M. Yamalov ◽  
M. V. Lebedeva

Segetal communities are the sets the weed plant species which are formed under the influence of edafo-climatic conditions and the mode of disturbance — the systems of processing of the soil in a crop rotation (so-called agrotechnical factor) (Mirkin, Naumova, 2012). The history of their study in the Southern Urals is more than 80 years old (Dmitriyev, 1935; Gaysin, 1950; Minibaev, 1961; Bakhtizin, Rakhimov, 1968; Denisova et al., 1970). Development of classification according to floristic approach has been begun in the 1980th by Ufa geobotanists. Results have been generalized in the collective monography (Mirkin et al., 1985). A repeated syntaxonomical analysis was carried out a long time later only for the Trans-Ural region of the Republic of Bashkortostan (Yamalov et al., 2007). The purpose of the present research is to reveal a phytodiversity of weed vegetation of the Southern Urals, using all available geobotanical data, and to develop its syntaxonomy. This paper presents the results of the classification of one of the three allocated alliances. The dataset contains 1171 relevés: 891 were performed by authors in the course of the 2002–2016 field seasons, while 280 are taken from the mentioned monography (Mirkin et al., 1985). All plots belong to class Papaveretea rhoeadis which combines annual weed vegetation of winter, summer and the row-crop cultures, gardens and initial stages of succession (Mucina et al., 2016). Within the class these are distributed between orders Aperetalia spicae-venti J. Tx. et Tx. in Malato-Beliz et al. 1960 and Papaveretalia rhoeadis Hüppe et Hofmeister ex Theurillat et al. 1995. Alliance Scleranthion annui (Kruseman et Vlieger 1939) Sissingh in Westhoff et al. 1946 goes to the first one, while Caucalidion Tx. ex von Rochow 1951 and Lactucion tataricae Rudakov in Mirkin et al. 1985 — to the second. The alliances are well differentiated floristically (Table 2) and according to zonal affinity. Alliance Scleranthion annui (Fig. 2) combines the most mesophyte communities distributed mainly on gray forest and soddy podzolic soils, rarer on other types of soils in the southern part of the forest zone and northern part of the forest-steppe one. Diagnostic group includes terophytes: Centaurea cyanus, Tripleurospermum perforatum, Euphorbia helioscopia, Capsella bursa-pastoris, Polygonum aviculare, Viola arvensis, Raphanus raphanistrum. Alliance Caucalidion (Fig. 3) combines communities on rich carbonate chernozem soils of the forest-steppe zone. It is intermediate between Scleranthion annui and Lactucion tataricae in zonal gradient. Diagnostic species are Galeopsis ladanum, Sonchus arvensis, Persicaria lapathifolia, Galeopsis bifida, Silene noctiflora, Erodium cicutarium, Thlaspi arvense, Galium aparine. They are also highly constant in communities of alliance Scleranthion annui in the forest zone, but are absent or low constant in these of alliance Lactucion tataricae in the steppe zone. Alliance Lactucion tataricae (Fig. 4) combines floristically impoverished communities in the steppe zone on south chernozem soils. Two species are diagnostic: hemicryptophyte Lactuca tatarica and terophyte Panicum miliaceum. There are 4 associations, 3 subassociations and 5 variants within the alliance Scleranthion annui. The ass. Linario vulgaris–Lactucetum serriolae ass. nov. hoc loco (Table 4, 5; holotypus — Table5, N 8) combines communities of winter and row-crop cultures, widely spread in the forest zone and northern part of the forest-steppe one on gray forest and soddy podzolic soils, which are common in the northernmost regions of the Cis-Urals within the territory of the Republic of Bashkortostan. Some of them occur in northern flat forest areas as well as in the northern forest-steppe, while few of these are located in the foothill forest regions. Besides the species of alliance Scleranthion annui and class Papaveretea rhoeadis there are ruderal perennials of classes Artemisietea vulgaris Lohmeyer et al. in Tx. ex von Rochow 1951 and Polygono arenastri–Poëtea annuae Rivas-Martínez 1975 corr. Rivas-Martínez et al. 1991, such as Artemisia absinthium, A. vulgaris, Plantago major, Elytrigia repens etc. which are character for disturbed habitats. Also important is the presence of apophytes of classes Molinio-Arrhenatheretea R. Tx. 1937 and Trifolio-Geranietea sanguinei Th. Müller 1962 (Poa pratensis, Trifolium pratense, Knautia arvensis, Pimpinella saxifraga etc.) common in meadows and forest edges. The ass. Consolido regalis–Centaureetum cyani ass. nov. hoc loco (Table 6; holotypus — N 26) combines communities of winter and summer crops (wheat, rye, rarer barley), widely spread in forest zone and northern part of forest-steppe one. They are located on gray forest and soddy podzolic soils. Three subassociations are discribed within association according the agrotechnology of the prevailing culture. The ass. Galeopsietum bifidae combines communities of winter crops which were widely spread in a forest-steppe zone on the podzolic chernozem in the 1980th (Mirkin, et al., 1985). The association is intermediate between the alliance Scleranthion annui and Caucalidion. The ass. Euphorbio helioscopiae–Fumarietum officinalis ass. nov. hoc loco (Table 7, 8; holotypus — Table 8, N 9) combines communities mainly of the row-crop and the summer cultures in the forest zone in flat and mountain regions and also in northern part of the forest-steppe zone. They are located on gray forest soils and rarer on the podzolic chernozem. Differentiation of associations is illustrated by the DCA-ordination data (Fig. 6). The first axis is interpreted as a complex gradient of moistening and an agrocoenotic factor. Along the second axis of soil richness-salinity the communities on soddy podzolic soils are replaced by those on mountain variants of gray forest soils and the podzolic chernozem.


2019 ◽  
Vol 8 (4) ◽  
pp. 57-65
Author(s):  
Alfiya Naufalevna Mustafina ◽  
Valentina Nikolaevna Ilyina ◽  
Larisa Mikhailovna Abramova

The conservation of phyto-diversity should be based on original data on the structure and condition of natural populations, plant biology and ecology. The purpose of this study is to identify and compare regional features of the ontogenetic structure and state of coenotic populations of the rare species of the Southern Urals and Middle Volga Dictamnus gymnostylis (in the Samara Region and the Republic of Bashkortostan). In the Republic of Bashkortostan 20 geographical populations of the species are currently identified. In the Samara Region various published sources indicate 7-12 geographical populations of D. gymnostylis . The demographic structure, density of coenopopulations and habitat characteristics were studied with the use of traditional research methods in 18 trial plots: 9 in the forest-steppe zone of the Samara Region (Zavolzhye) and 9 in the southern forest-steppe zone in the Republic of Bashkortostan. Populations of the species were recorded in various types of communities: mainly meadow and shrub steppes, at the edges and under the canopy of oak groves. The number of populations in Bashkortostan is different: they number from 70-100 to 2000-5000 or even more. Presumably, the total number of species in the region is from 15 to 20 thousand copies. The total area of all known populations in the Samara Region is estimated by us at 5 hectares. The total number of individuals is approximately 2000-3000. Most of the coenopopulations of D. gymnostylis in the region are normal, incomplete. The absence in the spectrum of regenerative stages (seedlings and juvenile), as well as senile plants is typical. The absolute maximum falls on middle-aged generative individuals (24,1-59,0%). Almost all cenopopulations in the Samara Region are mature, and in Bashkortostan they are young (with a large share of regenerative plants). The recovery index is equal to or close to zero in the Samara Region; seedlings and juvenile plants are often absent here. In cenopopulations of the Republic of Bashkortostan, the recovery index in most cases is opposite to unity, which indicates a good replenishment of the population by young individuals. The aging index throughout the territory is close to or equal to zero (does not exceed 0,05). The state of the examined populations in Bashkortostan does not cause concern for their safety, but in the Samara Region they are vulnerable and require protection.


2020 ◽  
pp. 13-26
Author(s):  
Ya. M. Golovanov ◽  
L. M. Abramova

The synthaxonomy and ecology of communities with predominance of Hordeum jubatum L., included in the «black list» of the Republic of Bashkortostan (Abramova, Golovanov, 2016a), the preliminary «black list» of the Orenburg Region (Abramova et al., 2017) and the «Black book of flora of Middle Russia» (Vinogradova et al., 2010), are discussed in the article, which continues a series of publications on the classification of communities with alien species in the South Urals (Abramova, 2011, 2016; Abramova, Golovanov, 2016b). H. jubatum was first found in the South Urals in 1984 as an adventive plant occurring along streets in the town of Beloretsk, as well as in gardens where it was grown as an ornamental plant. During the 1980s, it was met also at some railway stations and in several rural localities. Its active distribution throughout the South Urals started in XXI century (Muldashev et al., 2017). Currently, H. jubatum, most naturalized in the native salted habitats of the steppe zone, is often found in disturbed habitats in all natural zones within the region. The short vegetating period and resistance to drought allowed it to be naturalized also in dry steppes, where it increasingly acts as the main weed on broken pastures. The aim of the work, conducted during 2011–2017, was further finding the centers of H. jubatum invasion in 3 regions adjacent to the South Urals — the Republic of Bashkortostan and the Chelyabinsk and Orenburg Regions (Fig. 1). In the main sites of H. jubatum invasion 71 relevès were performed on 10–100 m² sample plots with the information of location, date, the plot size, the total cover, average and maximum height of herb layer. Classification was carried out following the Braun-Blanquet method (Braun-Blanquet, 1964) with using the Kopecký–Hejný approach (Kopecký, Hejný, 1974). The community ecology was assessed by weighted average values according to the optimal ecological scales by E. Landolt with usfge of the software of IBIS (Zverev, 2007). PCA-ordination method with usage CANOCO 4.5 software package was applied to identify patterns of environmental differentiation of invasive communities. The current wide distribution area of H. jubatum and its naturalization in synanthropic, meadow and saline communities in the South Urals, as well as its occurrence within mountain-forest belt, forest-steppe and steppe zones both in the Cis- and Trans-Urals, indicates species wide ecological amplitude, high adaptive capability and invasive potential. Its vast thickets are known in the steppe zone, both in disturbed steppes around settlements and along the banks of water bodies. The invasion sites are smaller in the northern regions and mountain forest belt, where these are located in settlements or along communication lines. Therefore, the steppe zone is more favorable for invasive populations, and their distribution will continue from the south to the north. Communities with predominance of H. jubatum, described earlier (Abramova, Golovanov, 2016b) in the Cis-Urals as two derivative communities (associations Hordeum jubatum [Scorzonero–Juncetea gerardii], Hordeum jubatum [Artemisietea]) and Polygono avicularis–Hordeetum jubati, were met in other regions of the South Urals. Also a new derivative community Hordeum jubatum–Poa pratensis [Cynosurion cristati], occuring in the northern part of the Cis-Urals and Trans-Urals, was established. In new habitats this species forms three types of communities: ass. Polygono avicularis–Hordeetum jubati (Fig. 2) the most widespread in anthropogenic habitats throughout the South Urals; derivative community Hordeum jubatum–Juncus gerardii [Scorzonero–Juncetalia gerardii] (Fig. 5) which replaces saline meadows mainly in the steppe zone of the region; derivative community Hordeum jubatum–Poa pratensis [Cynosurion cristati] (Fig. 4) which y replaces low-herb meadows in the forest-steppe zone and mountain-forest belt. PCA ordination (Fig. 6) shows that moisture (H) and soil richness-salinization (S) factors are in priority in differentiation of communities with predominance H. jubatum. The first axis is mainly related to the salinization and soil richness. The community pattern along the second axis is associated with wetting factor. The cenoses of the derivative community Hordeum jubatum–Poa pratensis [Cynosurion cristati] (less salted substrates in drier conditions in the northern part of the forest-steppe zone and the mountain forest belt) are grouped in the upper part of the ordination diagram, while communities of ass. Polygono avicularis–Hordeetum jubati (drier conditions in settlements, the steppe zone) in its low left part. Thus, axis 1 also reflects the intensity of trampling. Another group is formed by cenoses of the derivate community Hordeum jubatum–Juncus gerardii [Scorzonero–Juncetalia gerardii], (salt substrates with a high level of moisturization, on not very damaged water body banks). All communities with H. jubatum are well differentiated in the space of the main ordination axes that indirectly confirms the correctness of our syntaxonomic decision. Undoubted is further expansion of H. jubatum with its entering both anthropogenic and natural plant communities within the South Urals that suggests a constant monitoring in centers of species invasion.


Author(s):  
M Yu Gambotova ◽  
M A Bazgiev ◽  
Z M Tsitskiev ◽  
L Yu Kostoeva ◽  
F A Biteeva

2020 ◽  
Vol 50 (4) ◽  
pp. 66-71
Author(s):  
B. M. Ludu ◽  
B. K. Kan-ool

The paper presents the results of the research into the condition, number and concentration of beef cattle of Hereford breed, adapted to the natural and climatic conditions of the East Siberian region. The methodological basis of the study was formed by the methods of systematization, logical and comparative statistical analysis. The research information was based on the official materials of the Ministry of Agriculture and Food of the Republic of Tuva on animal husbandry. Out of the total number of livestock in the region (180 748 heads), Herefords amount to 2869 heads. A comparative analysis of livestock in farms of different forms of ownership and different natural and climatic zones was carried out. The largest population of Herefords (48.94%) is concentrated in the central agricultural and livestock zone with forest-steppe and steppe subzones (by the number of animals Piy-Khem kozhuun ranks first, 19.1%). In the southern zone of dry steppes, there are 27.43% of Herefords (by the number of livestock in the Republic, Tes-Khem kozhuun ranks second, 14.7%). In the western mountain-steppe zone there are 23.63% of Herefords, the largest number is in Barun-Khemchik (7.4%) and in Bai-Taiginsky (7%) kozhuun. Specialized beef cattle have not been brought to the high-mountain Mongun-Taiginsky kozhuun of the western zone or to the eastern high-mountain taiga zone. According to the results of the analysis, taking into account the category of farms, 56.4% of Herefords are kept in peasant farm enterprises, 19.7% – in agricultural production cooperatives, 29.7% – in other agricultural enterprises. All farms practise year-round grazing. Differences in the number of Hereford cattle by districts depend on the capacities of farms and climatic breeding zones. The monitoring which was carried out will allow to determine the prospects for raising purebred cattle of a specialized type, taking into account the terrain and zone of the breeding work in the conditions of year-round grazing in the Republic of Tuva.


2020 ◽  
Vol 17 ◽  
pp. 00037 ◽  
Author(s):  
Irek Singatullin ◽  
Zulfiya Khakimova ◽  
Vasily Chernov ◽  
Rustam Davletshin

The paper analyzes the effect of climatic factors on forest succession in the forest-steppe zone of the Republic of Tatarstan. A reliable relationship was revealed between a decrease of the oak forested area and extremely low frosts in 1939–1940, 1941–1942 and 1978–1979, and a decrease in the area of birch after the 2010 drought. Birch and oak are replaced by maple, linden and aspen. Insignificant amount of young trees and the predominance of ripe and overripe plantations of oak and birch will lead to the continuation of forest succession in the forest-steppe zone. Impossibility of reverse succession at this stage by natural rehabilitation is associated with the biological characteristics of these species. Oak and birch forest rehabilitation is only possible with measures to promote natural or artificial regeneration with due regard to the biological characteristics of tree species.


2019 ◽  
Vol 4 (40) ◽  
pp. 25-29
Author(s):  
M.Kh. GANDAROV ◽  
◽  
M.U. GAMBOTOVA ◽  
М.А. BAZGIEV ◽  
Z.M. BAZGIEV ◽  
...  

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