scholarly journals Trends of some rare flora species populations in the Southern Urals foothills (Orenburg Region)

2019 ◽  
Vol 8 (1) ◽  
pp. 99-105
Author(s):  
Maksim Anatolievich Safonov

The results of long-term (1994-2018) studies of the distribution and abundance of rare plant species in the foothills of the Southern Urals in order to identify their spatial and temporal trends are discussed. Some species retains its low numbers; in some species the number of populations and their amount were reduced, and some, probably, entirely disappeared from the flora. It is a new species in the local flora - Bupleurum aureum , but its low number does not allow to assess objectively its status and the necessary measures of protection. Spreading of Epipactis helleborine is also sporadic. The population of Veratrum lobelianum is gradually spreading to the South due to mesophytization of the climate and changes in pasture load on meadow and meadow-steppe ecosystems. The populations of the Cicerbita uralensis and Lathyrus litvinovii are in the critical condition. Thus, the change in environmental conditions leads to the fact that simultaneously with the reduction of the rare fraction, some species that previously had a small number, begin resettlement, contributing to the change in the appearance of the vegetation cover of the southern Urals foothills.

2016 ◽  
Vol 5 (2) ◽  
pp. 11-15
Author(s):  
Liubov Mikhailovna Bukhman ◽  
Nikolay Sergeevich Bukhman

The article is devoted to the study of new representatives of the genus Kerpia Naugolnykh from Novyi Kuvak located in Shentalinsky district (northeast of Samara region). The genus Kerpia for ginkgo similar leaves was set by S.V. Naugolnykh in 1995 on the material from the Kungurian stage of the Middle Urals. Typical species of this genus is Kerpia macroloba Naugolnykh. In the diagnosis of the genus S.V. Naugolnykh showed the most important signs of this genus: presence of lobes and sinuses of the 1st and 2nd order, distinct petiole and two veins included in lamina from the petiole. Later, in 2001, from the sediments of Kazanian stage of the Southern Urals S.V. Naugolnykh described a new species Kerpia belebeica Naugolnykh. In 2013 in Novyi Kuvak location we found impressions of ginkgo similar leaves with on the one hand a great similarity with the known members of the genus Kerpia ( Kerpia macroloba and Kerpia belebeica ), but on the other hand they are clearly not identical to this representative at the species level. According to the results of the study of these impressoins in 2014 we described a new species of the genus Kerpia - Kerpia samarica N.S. Bukhman et L.M. Bukhman, 2014. In this paper we give description of both known and new findings of species Kerpia samarica and a comparison of this species with other species of the genus Kerpia .


2018 ◽  
Vol 478 (2) ◽  
pp. 245-249 ◽  
Author(s):  
D. Yu. Vasil’ev ◽  
V. M. Pavleychik ◽  
V. A. Semenov ◽  
J. T. Sivohip ◽  
A. A. Chibilev

2020 ◽  
Vol 17 (1) ◽  
pp. 83-90
Author(s):  
Alexander Komissarov ◽  
Mikhail Komissarov ◽  
Khalil Safin ◽  
Marat Ishbulatov ◽  
Yuri Kovshov

2013 ◽  
Vol 120 (1-2) ◽  
pp. 169-181 ◽  
Author(s):  
Aavudai Anandhi ◽  
Sriram Perumal ◽  
Prasanna H. Gowda ◽  
Mary Knapp ◽  
Stacy Hutchinson ◽  
...  

2010 ◽  
Vol 10 (1) ◽  
pp. 1261-1307 ◽  
Author(s):  
F. Sprovieri ◽  
N. Pirrone ◽  
R. Ebinghaus ◽  
H. Kock ◽  
A. Dommergue

Abstract. A large number of activities have been carried out during the last decade in different regions of the world, including polar regions, aiming to assess the level of mercury (Hg) species in ambient air and in precipitation observing their variation over time and with changing meteorological conditions. Following the discovery of atmospheric Hg depletion events (AMDEs) in Polar Regions several studies have indeed been conducted in order to assess the chemical-physical mechanisms related to AMDEs occurred in polar atmospheres with special attention to the consequences of these phenomena in terms of contamination of polar environment due to the rapid conversion of atmospheric gaseous Hg (Hg0) into reactive and water-soluble forms that may potentially become bioavailable. The understanding of the way in which mercury released to the atmosphere is eventually incorporated into biota is of crucial importance not only for the polar regions but also for the marine environment in general. The world's oceans and seas are in fact both sources and sinks of Hg and although it appears that the atmosphere is the major transport/distribution medium for Hg, because most Hg emissions are to the atmosphere, oceans and seas also play an important role. Currently, however, a coordinated observational network for Hg does not exist. There are a number of state and national programs that are collecting atmospheric Hg data but the parameters monitored, the locations of the monitoring sites and the methods employed may prohibit their utility in assessing Hg long-trend variations. The large increase in mercury emissions in fast developing countries (i.e., China, India) over the last decade due primarily to a sharp increase in energy production from the combustion of coal are not currently reflected in the long-term measurements of total gaseous mercury in ambient air and in precipitation data at several continuous monitoring sites in North Europe and North America. The discrepancy between observed gaseous mercury concentrations (steady or decreasing) and global mercury emission inventories (increasing) is not yet clear however, could be at least in part accounted by the increasing in the potential oxidation of the atmosphere recently documented. Therefore, measurements of other key atmospheric constituents at the global monitoring sites are necessary for us to develop a better understanding of the global redistribution of Hg and to further refine model parameterizations of the key processes. The sharing of data from this network, allowing, in fact, access to comparable and long-term data from a wide array of locations for understanding temporal and spatial patterns of Hg transport, deposition and re-emission process producing thus data that will support the validation of regional and global atmospheric Hg models. This paper presents a detailed overview of atmospheric mercury measurements conducted in the Northern and Southern Hemispheres at several terrestrial sites (industrial, rural and remote) during the last decade as well as measurements performed over the world's ocean and seas and in Polar Regions with reference to the monitoring techniques and location of monitoring sites in most of the continents.


Author(s):  
A.M. Gareev ◽  
E.M. Galeeva ◽  
V.V. Barinov

The article reveals the main characteristics of the change in the values of the river runoff layer indicator in the long-term section across the territory of the Republic of Bashkortostan. In previously published works related to 1990-2000, the statistical parameters of river runoff are considered without taking into account the changes that have occurred in the general population of the initial information. It is noted in the article that the calculations and estimates for the study of the peculiarities of changes in hydrometeorological conditions, carried out by us in recent years, indicate a violation of the homogeneity of the observation series. At the same time, attention is drawn to the fact that this trend is dependent on the influence of factors associated with global climate change. The article indicates that ignoring the facts reflecting the ongoing changes can affect not only the accuracy of the calculations, but also lead to the adoption of incorrect and unjustified decisions in the water sector and the assessment of environmental conditions in watercourses. The analysis was carried out according to the values of the annual runoff layer, the change in the indicators of the annual runoff of the rivers of the republic was calculated for two time intervals. As the boundary conditions between them, the year was taken, from which a rather clear tendency of the trend change in terms of the annual runoff values is revealed. Cartographic analysis of the information obtained was carried out using the ArcGIS software package. It has been established that during the period of noticeable climatic changes in most of the territory of the republic, there is a tendency to an increase in the values of the annual runoff layer. At the same time, the greatest indicators of change occur on the western slopes of the Southern Urals and the Ufa plateau within the republic. It was found that a noticeable decrease in the values of the annual runoff layer is observed over the territory of the Bashkir Trans-Urals.


1993 ◽  
Vol 67 (2) ◽  
pp. 310-313
Author(s):  
Alan L. Titus

The late Mississippian ammonoid family Delepinoceratidae is comprised of the genera Platygoniatites and Delepinoceras, and is considered one of the more biostratigraphically significant families for lower Namurian correlation (Manger et al., 1985). Platygoniatites, the earliest member, is known from eastern and southern Europe (Ruzhencev and Bogoslovskaya, 1971; Wagner-Gentis, 1963, 1980) and North Africa (Lemosquet et al., 1985). Despite its wide distribution, Platygoniatites is generally a rare member (with the exception of the southern Ural Mountains) of latest Visean and earliest Namurian faunas. It has never been reported previously from North America, though thousands of ammonoids have been collected here from age equivalent beds. The discovery of a new species of the genus in the late Mississippian faunas of east-central Nevada provides new data for precise correlation of the ammonoid zonations of Gordon (1970) to the type Namurian and indicates a need for revision of the current correlations between the southern Urals and northwestern Europe.


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