{"id":162,"date":"2021-10-22T09:34:33","date_gmt":"2021-10-22T02:34:33","guid":{"rendered":"https:\/\/conf.icgbio.ru\/bdne2001\/?page_id=162"},"modified":"2021-11-23T10:50:48","modified_gmt":"2021-11-23T03:50:48","slug":"reports-list","status":"publish","type":"page","link":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/reports-list\/","title":{"rendered":"Reports list"},"content":{"rendered":"<p><\/p>\n<ol start=\"1\">\n<li>(abstract in russian)<\/li>\n<li><i><\/i>(abstract in russian)<\/li>\n<li><i><\/i>(abstract in russian)<\/li>\n<li>Abakumov A.I., Kucher A.I.\u00a0<i>The Model Analysis Of Khanka Lake Ecosystem<\/i><\/li>\n<li>Akhetova* V., Viktorova T.V.,\u00a0Khusnutdinova E.\u00a0<i>Molecular-Genetic Study Of Vntr And Str Alleles Of The Phenylalanine Hydroxylase Gene In Volga-Ural Populations<\/i><\/li>\n<li>Armand N.A., V.P.Savorskij, M.T.Smirnov, Yu.G.Tishchenko\u00a0<i>United Information System for Fundamental Space Researches (UISFSR): structure and functional features<\/i><\/li>\n<li>Axenovich T.I., Aulchenko Yu.S.\u00a0<i>Future of QTL mapping: optimistic and pessimistik view<\/i><\/li>\n<li>Bachinsky A., Ivanisenko V., Seledtzov I., Solovjev V.\u00a0<i>New resource for prediction of subcellular location of proteins.<\/i><\/li>\n<li>Bachinsky1* A.G., Grigorovich2 D.A., Naumochkin1 A.N., Nizolenko1 L.Ph., Yarigin1 A.A.\u00a0<i>New version of pattern database PROF_PAT 1.7.<\/i><\/li>\n<li>Baikov K.S.\u00a0<i>ECOLOGICAL AND GEOGRAPHICAL EVIDENCES OF SPURGES PHYLOGENY FROM SECTION ESULA (EUPHORBIA, EUPHORBIACEAE) IN NORTHERN ASIA<\/i><\/li>\n<li>Bakhvalov S.A. Nedorezov L. V., Morozova O. V.\u00a0<i>Interaction in tripartite system plant \u2013 insect &#8211; virus<\/i><\/li>\n<li>Balanovska E.V.*\u00a0<i>Gene diversity of North Eurasia population as compared to the world gene pool<\/i><\/li>\n<li>Balanovsky O.P.,\u00a0Balanovska E.V., Deryabin V.E.,\u00a0Limborska S.A., Dolinova N.A.\u00a0<i>Gene pool of East European peoples: the computer cartography of anthropological, classical genetic and DNA data<\/i><\/li>\n<li>Barhatov Y.V., Lobova T.I.\u00a0<i>Mathematical Modelling Of Anthropogenic And Natural Factors&#8217; Influence Antibiotics Resistance Of Heterotrophic Bacteria In Shira Lake<\/i><\/li>\n<li>Begovatov E.A.,\u00a0Fatkullina R.R.*\u00a0<i>To Creation Model Of Long-Term Dynamic<\/i><\/li>\n<li>Belogolova G.A.,\u00a0Matyashenko G.V.*, Gunicheva T.N.\u00a0<i>Development Of Biogeochemical Criteria For Modelling State Of Forest Ecosystems Of The Southern Baikal Area<\/i><\/li>\n<li>Berkutenko A.N.*, Semenova E.V., Polezhaev N.A.\u00a0<i>Herbarium Of Institute Of Biological Problems Of The North On Cd-Rom As A Data Base Of Floristic Diversity Of North-East Russia<\/i><\/li>\n<li>Biyasheva Z.M.*\u00a0,\u00a0Olifirov S.V.<i><\/i><\/li>\n<li>Borodin O.\u00a0<i>THE DATABASE &#8221; FULGOROMORPHA (AUCHENORRHYNCHA: HOMOPTERA)<\/i><\/li>\n<li>Boyandin A.N.*, Kargatova T.V., Maksimova E.E., Popova L.Yu.\u00a0<i>Elaborating Of Transgenic Luminescent Microrganisms Database<\/i><\/li>\n<li>Buga S.\u00a0<i>Computer Databases On Analysis Of Biological Variety Of Dendrophilous Aphides Of East Europe<\/i><\/li>\n<li>Burmakina N.V., Zheleznova N.B., Yudina R.S.,\u00a0Zheleznov A.V.*\u00a0<i>Cultivated And Wild Plant Collections: Subject Of Biodiversity Study And Computer Database Working Out<\/i><\/li>\n<li>CANN H.M.\u00a0<i>THE HGDP-CEPH HUMAN GENOME DIVERSITY CELL LINE PANEL<\/i><\/li>\n<li>Chuprova V.V., Aleksandrova S.V., Erohina N.I.\u00a0<i>Information system &#8220;Soil &#8211; Nitrogen &#8211; Carbon&#8221;<\/i><\/li>\n<li>Chytry M.\u00a0<i>FORMALIZED CLASSIFICATION OF VEGETATION<\/i><\/li>\n<li>Chytry M., Tichy L.\u00a0<i>JUICE, software for vegetation classification.<\/i><\/li>\n<li>Danilenko A.K.,\u00a0Rumiantsev V.Y.,\u00a0Ravkin E.S.\u00a0<i>Computer Map of Terrestrial Vertebrate Communities of Moscow Region<\/i><\/li>\n<li>Denisova J.K.,\u00a0Nedorezov L.V.\u00a0<i>About A Modification Of Verholst\u2019s Model Of Isolated Population Dynamics With Time Lag<\/i><\/li>\n<li>Denisova J.K.,\u00a0Nedorezov L.V., Bahvalov S.A.\u00a0<i>A Model Of Spruce Budworm Dynamics Under The Influence Of Pathogens<\/i><\/li>\n<li>Dennis F.R.\u00a0<i>The Conservation Of Plant Diversity Using Integrated Management Strategies<\/i><\/li>\n<li>Derenko M.V.*1,\u00a0Malyarchuk B.A.1, Denisova G.A.1, Dambueva I.K.2, Zakharov I.A.3\u00a0<i>Differentiation Of Aboriginal North Asians Based On Mitochondrial Dna And Y-Chromosome Variability Data<\/i><\/li>\n<li>Ditz L.Y.\u00a0<i>Usage of Digital Mapping System in Soil Ecology Monitoring<\/i>\u00a0()<\/li>\n<li>Dolgikh M.M., Voevoda M.I., Yudin N.S., Kulikov I.V., Khasnulin V.I., Baum V.A., Ustinov S.N., Malyutina S.K., Konchuk C., Kobzev V.F.,\u00a0Romashchenko A.G., Nikitin Yu.P.\u00a0<i>Polymorphism Of Some Genes Associated With Common Diseases In Novosibirsk Long-Livers<\/i><\/li>\n<li>Dolgikh M.M.1, Voevoda M.I.1,2, Malyutina S.K.1, Shabalin A.V.1, Pentegova B.A.1, Kobzev V.F.2,\u00a0Romashchenko A.G.2, Nikitin Yu.P.2\u00a0<i>Age change of ACE gene genotypes and alleles frequencies in urban population of West Siberia<\/i><\/li>\n<li>Drobushevskaya O.\u00a0<i>Biodiversity Of Low-Mountain Subtaiga In East Sayan<\/i><\/li>\n<li>Dromashko S.E., Gorbachev A.V.\u00a0<i>Internet-oriented software for information logical analisys of biodiversity dynamics<\/i><\/li>\n<li>Dromashko S.E., Makeyeva A.M., Panich I.A., Gorbachev A.V., Zheludok A.A., Lisovskaya T.V., Martys G.A., Telyatnikova A.V.\u00a0<i>CHEDIBASE \u2013 interdisciplinary base of publications on low-dose radiation exposure: Internet possibilities<\/i><\/li>\n<li>Drozdov V.N., Sideleva V.G., Sergeeva V.N.\u00a0<i>The Determinant Of The Cottoid Fish Of Lake Baikal<\/i><\/li>\n<li>Dzhemileva L.U., Khidiyatova I.M.,\u00a0Khusnutdinova E.K.\u00a0<i>Analysis of 35delG mutation of the Cx26 gene in patients with non-syndromic recessive deafness in Volga-Ural region.<\/i><\/li>\n<li>Efimov V.M.\u00a0<i>MULTIDIMENSIONAL ANALYSIS OF WEST SIBERIA BIRDS POPULATION<\/i><\/li>\n<\/ol>\n<ol start=\"41\">\n<li>Efimov V.M.,\u00a0Kovaleva V.Yu., Markel A.L.\u00a0<i>QUANTITATIVE INHERITANCE: MULTIDIMENSIONAL ANALYSIS<\/i><\/li>\n<li>Emelyanova L.G.\u00a0<i>Small mammals( Insectivora, Rodentia) population diversity in tundra zone of Russia (cartographic analysis)<\/i><\/li>\n<li>Ermakov E.L., Pitul`ko S.I.\u00a0<i>Investigation Of Genotype-Environment Interaction For Morphological Traits In Daphnia Nature Population.<\/i><\/li>\n<li>Evstafyev V.\u00a0<i>THE PHENOMENON OF LIFE VIEWED ON THE SECOND LAW OF THERMODYNAMICS<\/i><\/li>\n<li>Fatklislamova R*1., Khidiatova I.M1., Limborska S2., Khusnutdinova E1.\u00a0<i>The Analysis Of Trinukleotide Repeats In Populations Of Volgo-Ural Region<\/i><\/li>\n<li>Fatkullina R.R.\u00a0<i>Some Statistical Approaches To The Analysis Of Population Dynamic Of Birds<\/i><\/li>\n<li>Fatkullina R.R.*, Batyrshin I.Z.\u00a0<i>To Estimation Of Indicator Informativeness Of Animal Comunity Based On Fuzzy Approach<\/i><\/li>\n<li>Fortuner R., Diederich J.\u00a0<i>Genisys (General Identification System): A Standard Format For Morphological Data<\/i><\/li>\n<li>Frisman E. Ya.\u00a0, Chernyshova N. B. and P. A. Faiman\u00a0<i>MOSAIC STRUCTURE OF BIOLOGIC DIVERSITY: A RESULT OF DYNAMIC INSTABILITY (AS EXEMPLIFIED BY TAIGA PLANT COMMUNITY FROM THE RUSSIAN FAR EAST)<\/i><\/li>\n<li>Galeyeva A., Jurjev E.,\u00a0Khusnutdinova E.\u00a0<i>THE ANALYSIS OF POLYMORPHISM OF NEUROMEDIATOR SYSTEM GENES IN POPULATIONS OF THE VOLGO-URAL REGION<\/i><\/li>\n<li>GITAS I.Z.1, Radoglou K. 2, Devereux B.J.3\u00a0<i>An Examination Of A Fire-Altered Pinus Nigra Ecosystem On The Mediterranean Island Of Thasos<\/i><\/li>\n<li>Golygina V.V.1\u00a0, Kiknadze I.I.1,\u00a0Fedotov A.M.2\u00a0<i>The Database &#8220;Chironomidae: Species, Populations, Genetic Variability&#8221;<\/i><\/li>\n<li>Goncharova1 T.M. , N.S. Yudin1, \u041c.\u041c. Dolgikh2, I.V. Kulikov2, Ch. Konchuk3, V.F. Kobzev1, A.G. Romaschenko1, \u041c.I. Voevoda1,2\u00a0<i>VNTR POLYMORPHISM OF DOPAMINE TRANSPORTER GENE IN DIFFERENT ETHNIC GROUPS OF NORTH ASIA<\/i><\/li>\n<li>Gorozhankina S.M., Konstantinov V.D.\u00a0<i>TYPOLOGICAL AND GEOGRAPHIC ASPECTS OF TAIGA ECOSYSTEMS BIODINERSITY IN SIBERIA REGION<\/i><\/li>\n<li>Graphodatsky A.S.\u00a0<i>Chromosomal painting in comparative genomics of mammals<\/i><\/li>\n<li>Gravis G.,\u00a0Drozdov D., Konchenko L., Korostelev Yu., Malkova G.{Ananjeva), Melnikov E.,\u00a0Moskalenko N.\u00a0<i>Complete Set of Small-Scale Electronic Maps for Analysis of Ecological Systems of Russian Arctic<\/i><\/li>\n<li>Grinchuk O.V.,Soultanaeva Z., Makarova O., Askarova A.N.,\u00a0Khusnutdinova E.,\u00a0Victorova T\u00a0<i>Polymorphism Of Nat2 Locus In Healthy Women From Volga-Ural Region.<\/i><\/li>\n<li>Grodnitsky D.L., Soldatov V. V\u00a0<i>INFORMATION COLLECTION AND PROCESSING IN THE COURSE OF SIBERIAN MOTH POPULATION DENSITY MONITORING IN KRASNOYARSK REGION<\/i><\/li>\n<li>Gu W.1, Heikkili R.2, Hanski, I.\u00a0<i>Estimating The Consequences Of Habitat Fragmentation On Extinction Risk In Dynamic Landscapes<\/i><\/li>\n<li>Gulati R.D., Ellen Van Donk\u00a0<i>Aquatic Biodiversity: The Factors Causing The Decline And The Need For An Integrated, Ecosystem Approach<\/i>\u00a0(abstract in russian)<\/li>\n<li>Gusev V.A.\u00a0<i>LIVING UNIVERSE<\/i><\/li>\n<li>Haveman R., Schaminee Joop H.J.\u00a0<i>THE EVOLUTION OF DATA HANDLING FOR THE MANAGEMENT OF VEGETATION AND LANDSCAPES IN THE NETHERLANDS<\/i><\/li>\n<li>Ivashchenko A.T., Goncharova A.V., Ivashchenko T.A\u00a0<i>Comparative analysis of the nucleotide composition in mitochondrial genomes<\/i><\/li>\n<li>Ivashchenko A.T.1*, Ivashchenko T.A.2, Karpenyuk T.A.1, Ajtkhozhina N.A.2\u00a0<i>Comparative Analysis Of Nucleotide Composition In Completely Sequenced Chloroplast Genomes<\/i><\/li>\n<li>Jenderedjian K., Kirakossian G., Vardanian V., Hakobyan S.\u00a0<i>Database and interactive automated open system for optimal use of the wetlands and wetland biodiversity in Armenia<\/i><\/li>\n<li>Kamaltynov R.M.\u00a0<i>Influence of glaciations to the diversity of Baikalian biota<\/i><\/li>\n<li>Karpenko L. V.\u00a0<i>THE STUDY OF PEAT RIVER STRIPING FOR THE PURPOSE OF VEGETATION AND CLIMATE DYNAMICS RECONSTRUCTION IN HOLOCENE<\/i><\/li>\n<li>Kartushinsky A.V.,\u00a0Shevyrnogov A.P.\u00a0<i>Computer modelling of temperature and phytoplankton dynamics in the aquatic ecosystems based on satellite data<\/i><\/li>\n<li>Khamarin V.I., Be\u043ah I.A.\u00a0<i>Information Maintenance Of Modeling Taiga Cosystems<\/i><\/li>\n<li>Khusnutdinova E.*1, Bermisheva M.1, Viktorova.1, Orekhov V.2,\u00a0Villems R.3\u00a0<i>Evolution Of Gene Pool Of The Peoples Of Volga-Ural Region On Mitochondrial Dna And Y Chromosome Polymorphisms Data<\/i><\/li>\n<li>Kirillov V.V.\u00a0<i>The Analise Of Phytoplankton Dinamics By The Indices Of Succession Rate<\/i><\/li>\n<li>Kivisild T.1*, Bandelt H.-J.2, Wang Y.3, Derenko M.4, Malyarchuk B.4, Golubenko M.5,\u00a0Stepanov V.,5, Puzyrev V.5, Metspalu E.1 ,\u00a0Tambets K.1, Parik J.1,\u00a0Metspalu M.1, Yao Y.-G.6, Zhang Y.-P.6,\u00a0Orekhov V.A.7,\u00a0Yankovsky N.K.7, Khusnutdinova E.8, Bermisheva\u00a0<i>Mitochondrial Dna Tree For Eastern Asian Populations<\/i><\/li>\n<li>Kolchanov N.A.,\u00a0Matushkin Yu.G.,\u00a0Likhoshvai V.A\u00a0<i>GENE NETS AND PHENOTYPIC DIVERSITY<\/i>\u00a0()<\/li>\n<li>Konstantinov Yu.M.1*,\u00a0Matyashenko G.V.2*, Shmakov V.N.1, Belogolova G.A.2, Garnik E.Yu.1., Bashalkhanov S.I.1, Verbitsky D.S.1, Kalyuzhnaya O.V.1, Khomutova M.Yu.2\u00a0<i>Modeling Of The Mechanism Of Tolerance To Oxidative Stress Of Larix Sibirica Ledeb., L. Gmelini (Rupr.) Rupr. As The Basic Structural Unit Of East Siberian Forests Ecosystems<\/i><\/li>\n<li>Korostishevsky M.A.1*, Ginzburg E.2, Bonne\u2019-Tamir B.1\u00a0<i>MUTATION ORIGIN RECONSTRUCTION BASED ON ADJACENT HAPLOTYPES<\/i><\/li>\n<li>Kosolapova L.G. *, Degermendzhy A.G.\u00a0<i>Prognostic Model Of Radionuclide Migration In The Yenissei River Ecosystem<\/i><\/li>\n<li>Kostrikov S.1*,\u00a0Krivtsov V.2 and Vorobiov B.3\u00a0<i>Gis Modelling Realm For Geoecological Research Purposes &#8211; Implementation In The Pc Modelling System &#8220;Relief-Processor&#8221;<\/i><\/li>\n<li>Kotsar A.V. *,\u00a0Drozdov V.N., Sergeeva V.N., Lavrentyeva T.P.,\u00a0<i>Experience Of Employment Of Internet-Technologies In Distribution Of Knowledges About Baikal.<\/i><\/li>\n<li>Kovalev A.\u00a0<i>Computer Modeling Technology In The Research Of Forest Insect Population Dynamics<\/i><\/li>\n<li>Kovtonyuk N.K., Krasnikov P.A.\u00a0<i>Database &#8220;Primulaceae of the North-Asian Flora&#8221;<\/i><\/li>\n<\/ol>\n<ol start=\"81\">\n<li>Krainov V.N.,\u00a0Rumiantsev V.Y., Soldatov M.S.\u00a0<i>&#8220;Orchid&#8221; &#8211; Software for processing of Summary Tables of Geobotanical Descriptions<\/i><\/li>\n<li>Kravtsova L.S.\u00a0<i>Interaction Of Lothic And Lenthic Ecosystems As One Of The Mechanisms Of Biodiversity Formation<\/i><\/li>\n<li>Krivtsov V.1*, K. Liddell1, R. Salmond1, A. Garside1, J. Thompson1, T. Bezginova1, B. Griffiths2, H.J Staines1, R. Watling3 and J.W. Palfreyman1.\u00a0<i>Analysis of microbial interactions in forest soil.<\/i><\/li>\n<li>Laiho, R.,\u00a0Vasander, H.*, Laine, J.\u00a0<i>Nutrient Cycling Dynamics After Hydrological Disturbance In Boreal Peatlands<\/i><\/li>\n<li>Lawesson J.E.\u00a0<i>Interpreting species distribution and biodiversity patterns in Denmark with GIS and advanced statistics<\/i><\/li>\n<li>Likhoshvai V.A., Golubjatnikov V.P., Severtsov A.S.\u00a0<i>One-dimensional model of evolution of a frog population in a pond. Estimation of the model parameters by experimental data.<\/i><\/li>\n<li>Limborska S.A.\u00a0,\u00a0Slominsky P.A.\u00a0<i>Ethnogenomics of East European region<\/i><\/li>\n<li>Lindholm T.\u00a0<i>Nature conservation databases in Finland<\/i>\u00a0(abstract in russian)<\/li>\n<li>Livanov S.G.\u00a0<i>SPATIAL VARIETY&#8217;S HETEROGENEITY OF THE BIRD COMMUNITIES IN THE SOUTHERN TAIGA OF MIDDLE URALS<\/i><\/li>\n<li>Lloyd J.J., Arneth A., Shibistova O.\u00a0<i>Mathematical Modelling Of Siberian Forest Ecosystem Carbon Balance<\/i><\/li>\n<li>M.S.Gelfand, O.Laikova, A.A.Mironov, P.S.Novichkov, E.M.Panina, D.A.Rodionov, A.G.Vitreschak\u00a0<i>Comparative analysis of bacterial regulatory patterns<\/i><\/li>\n<li>Maksyutov A.Z.*,\u00a0Bachinsky A., Chepurnov A.\u00a0<i>Study Of Molecular Mimicry In Ebola Virus Pathogenesis<\/i><\/li>\n<li>Malyarchuk B.A.\u00a0<i>Hypervariable Nucleotide Motifs In The Human Mitochondrial Dna<\/i><\/li>\n<li>Malyarchuk B.A.*1,\u00a0Derenko M.V.1, Denisova G.A.1, Rogaev E.I.2\u00a0<i>Mitochondrial Dna Variations In Eastern European Populations With Respect To The Origin Of Eastern Slavs<\/i><\/li>\n<li>Malyshev L.I.\u00a0<i>Ecology of floristic diversity of North Asia<\/i>\u00a0(abstract in russian)<\/li>\n<li>Matushkin Yu.,\u00a0Likhoshvai V.\u00a0<i>On Some Cyclic Regimes Of Ecosystems\u2019 Functioning<\/i><\/li>\n<li>Medvedeva S.E., Katchalkine D.V., Rodicheva E.K., Kotov D.A.\u00a0<i>DATABASE OF NATURAL LUMINOUS BACTERIA<\/i><\/li>\n<li>Medvedeva S.E.,Katchalkine D.V.,\u00a0Boyandin A.N.,Popova L.Yu.,Kotov D.A.\u00a0<i>BIOLUMBASE &#8211; A DATABASE OF LUX-MARKER MICROORGANISMS<\/i><\/li>\n<li>Metspalu M.1*, Rootsi. S.1, Papiha S.S.2,\u00a0Kivisild T.1\u00a0<i>Human Mtdna And Y-Chromosomal Lineages Of Inda In The Context Of Eurasia<\/i><\/li>\n<li>Mikheeva I.V.\u00a0<i>Probability Distributions of Soil Properties<\/i><\/li>\n<li>Mikheeva I.V.\u00a0<i>Tasks of Bio-informatics in Soil Science<\/i><\/li>\n<li>Minin A.A.\u00a0<i>PHENOLOGICAL ASPECTS OF THE RUSSIAN PLAIN ECOSYSTEMS DYNAMICS<\/i><\/li>\n<li>Mordkovich V.G., Dubatolov V.V., Legalov A.A.\u00a0<i>Principles of organization and development of zoological museum Internet sites<\/i><\/li>\n<li>Moskalenko N.G.\u00a0<i>Database on vegetation dynamics of West Siberia North<\/i><\/li>\n<li>Mustafina O.*, Tuktarova I, Bikmeeva A., Shagisultanova E., Narsyb\u043eullin T.,\u00a0Khusnutdinova E.\u00a0<i>Investigation Of Gene-Candidates Of Cardiovascular Diseases In Populations Of The Volga-Ural Region<\/i><\/li>\n<li>Nasidze I.and Stoneking M.\u00a0<i>GENETIC VARIATION AMONG HUMAN POPULATIONS FROM THE CAUCASUS<\/i><\/li>\n<li>Naumenko M. A.*, Karetnikov S.G.\u00a0<i>Lake Ladoga Thermal Database: Exepireence Of Creating, Results And Perspectieves<\/i><\/li>\n<li>Nazimova D.I.\u00a0<i>CLIMATIC ORDINATION OF EURASIAN TERRESTRIAL ECOSYSTEMS: AN APPROACH TO BIODIVERSITY ANALYSIS<\/i><\/li>\n<li>Nazimova D.I., N.V. Stepanov\u00a0<i>CHERN FORESTS WITH PINUS SIBIRICA IN WEST SAYAN MOUNTAINS: TYPOLOGY, FLORISTIC COMPOSITION, PRESERVATION<\/i>\u00a0(abstract in russian)<\/li>\n<li>Nedorezov L.V., Makarova T.L., Makarov R.N.\u00a0<i>Optimal approaches in the gap-modelling<\/i><\/li>\n<li>Nedorezov L.V.1,\u00a0Utyupin Yu.V.2\u00a0<i>Discrete-continuous model of the sexual structured population\u2019s dynamics.<\/i><\/li>\n<li>Nikitina T.V.\u00a0<i>POLYMORPHISM OF TETRANUCLEOTIDE LOCI D2S1242, D11S1983 AND D16S2624 IN TOMSK POPULATION<\/i><\/li>\n<li>Onufrenya I.A.\u00a0<i>Creation The Scheme Of Ecological Network For Kaluga Region On Base Analysis Of Spase Images And The Electronically Topology Map.<\/i><\/li>\n<li>Orekhov V.A., Frolova S.2, Zemskova E.2,\u00a0Yankovsky N.K.1, Ivanov P.2\u00a0<i>Forensic mtDNA reference database for Russian population.<\/i><\/li>\n<li>Orekhov V.A..1,\u00a0Tambets K.2\u00a0,\u00a0Rootsi S.2, Injutin A.1, Adojaan M.2, Kozhekbaeva J.1, Bermisheva M.3, Viktorova T.3, Gusar V.4, Grechanina E.4,\u00a0Kivisild T.2, Parik J.2, Ivanov P.5,\u00a0Yankovsky N.K.1, Khusnutdinova E.3,\u00a0Villems R.2\u00a0<i>mtDNA lineages from European part of Russia: a clue to reveal prehistoric demographic and migration processes<\/i><\/li>\n<li>Ovchinnikova T.M.*,\u00a0Soukhovolsky V.G.,\u00a0Grodnitsky D.L.\u00a0<i>Forecasting of fir stand resistance to the outbreak of Monochamus urussovi Fisch. by forest inventory data<\/i><\/li>\n<li>Parfenova E.P.*, Tchebakova N. M.\u00a0<i>Bioclmatic Modeling Of Site Quality, Phytomass And Biodiversity In Mountain Forests Of Southern Siberia<\/i><\/li>\n<li>Pavlov I.N.*, V.V.Kuz&#8217;michev, S.L.Shevelev\u00a0<i>Forest Regeneration Successions In The Areas Of Intensive Antropogeneous And Biogeneous Influence For Dark-Conifer Forests Of Siberia<\/i><\/li>\n<li>Peregoedova N.V., Rykova V.V., Bazhenov S.R.\u00a0<i>Biodiversity of Northern Eurasia: problem-oriented bibliographic data base<\/i><\/li>\n<li>Petryk S.P.\u00a0<i>The territorial aspects of protection biodiversity of North-Western Black See<\/i>\u00a0()<\/li>\n<\/ol>\n<ol start=\"121\">\n<li>Petryk S.P.\u00a0<i>\u0406Synantropic flora of Hadzibeevsky estuary<\/i><\/li>\n<li>Pisman T.I., Somova L.A.\u00a0<i>Dynamics Of A Mixed Culture Of Invertebrates In A \u201cProducer-Consumer\u201d Biotic Cycle<\/i><\/li>\n<li>Pleshikov* F.I.,\u00a0Ryzkova V.A.,\u00a0Tcherkashin V.P.\u00a0<i>A Regional Ecological Database For Studying Regeneration Dynamics And Biodiversity Of The Yenisei Meridian Ecosystems<\/i><\/li>\n<li>Polezhaev A.N., Matorin A.A., Trumpe M.A.\u00a0<i>Internet Resource \u201cFlora And Fauna Of Magadan Region\u201d<\/i><\/li>\n<li>Pomazkina L., Kotova L.\u00a0<i>TECHNOGENIC POLLUTION IMPACT ON AGROECOSYSTEM AS A FUNCTION OF SOIL TYPE<\/i><\/li>\n<li>Pushistov P.Y.,\u00a0Ievlev K.V.\u00a0<i>A Numerical Eddy \u2013 Resolving Model Of Spring Total Diatom Algal Blooms Dynamics In The Deep Ice \u2013 Covered Lakes.<\/i><\/li>\n<li>Pushkaryov S.V., Shvarts E.A.\u00a0<i>ON SPECIES RICHNESS IN MAMMAL ORDERS FOR THE FSU&#8217;S TERRITORY.<\/i><\/li>\n<li>Rakhmatullaeva G.M., Khurshut E.E.\u00a0<i>CLADOCERA IN UZBEKISTAN<\/i><\/li>\n<li>Ratner V.A.1,2), Egorova A.V. 2), Yudanin A.Ya.1)\u00a0<i>The Visualization Of Intrapopulation Phenomena Of Evolution Of The Patterns Of The Polygenes, Tes And Lios Under Truncation Selection In Computer Model<\/i><\/li>\n<li>Ratner V.A.1,2, Bubenshchikova E.V.1,\u00a0Vasilyeva L.A.1,2.\u00a0<i>Interaction Of The Genetic Drift And The Flow Of Te Transpositions In The Finite Population Without Selection: Phenomenon Of Prolongation Of Te Transpositions Induction After g -Irradiation<\/i><\/li>\n<li>Ravkin E.S.*,\u00a0Ravkin Yu.S., Vartapetov L.G., Toropov K.V., Tsybulin S.M., Yudkin V.A., Zhukov V.S.\u00a0<i>CLASSIFICATION OF SUMMER BIRD COMMUNITIES OF NORTHERN EUROASIA PLAINS (BY THE MATERIALS OF THE DATA BANK OF COLLECTIVE USING)<\/i><\/li>\n<li>Ravkin Yu.S.*, Tsybulin S.M.,\u00a0Livanov S.G., Grazhdan K.V., Bogomolova I.N., Malkov P.Yu., Toropov K.V., Malkov N.P., Grabovskii M.A., Shvetsov Yu.G., Dubatolov V.V., Malkov Yu.P., Bondarenko A.V., Vartapetov L.G., Dolgovykh S.V., Mitrofanov O.B.\u00a0<i>STRUCTURE OF A VARIETY OF THE ANIMAL COMMUNITIES OF RUSSIAN ALTAI<\/i><\/li>\n<li>Ravkin Yu.S., Vartapetov L.G., Yudkin V.A., Pokrovskaya I.V., Toropov K.V., Zhukov V.S., Tsybulin S.M.\u00a0<i>Structure and organization of diversity in vertebrate communities of West Siberian plain<\/i><\/li>\n<li>Romaschenko A.G., Kondrakhin Yu.V.,Rogozin I.B., Naykova T.M., Voevoda M.I., Yudin N.S.\u00a0<i>Changes In The Dna Sequences Of The Trna Genes During The Prokaryote-Eukaryote Evolutionary Transition: A Comparative Structure-Functional Analysis<\/i><\/li>\n<li>Rootsi S., Adojaan M.\u00a0<i>Paternal Lineages Of Estonians In The Context Of Neighboring Populations<\/i><\/li>\n<li>Rozhkov Y.P.\u00a0<i>ABOUT USE of GIS TECHNOLOGIES In MONITORING RESERVED ECOSYSTEMS (ON an EXAMPLE of OLYEKMINSKY RESERVE).<\/i><\/li>\n<li>Rumiantsev V.Y., Danilenko A.K.\u00a0<i>Geoinformation System &#8220;Terrestrial vertebrate Communities of Russia&#8221;<\/i><\/li>\n<li>Ryss A.Y.\u00a0<i>Databases of characters and their use for the identification and phylogeny (illustrated on the Nematoda taxa)<\/i><\/li>\n<li>Satybaldiyeva G.K., Bijasheva Z.M.\u00a0<i>The mass forms of Molluscs in ecosystems of fresh-waters of South and South-east regions of Kazakstan<\/i><\/li>\n<li>Saulich A.X.,\u00a0Saulich M.I.\u00a0<i>Data Base \u201c Seasonal Adaptation Of Macro Lepidoptera \u201d<\/i><\/li>\n<li>Saulich M.I.\u00a0<i>An automation of information support of especially protected territories monitoring at the coast of the Finnish gulf<\/i><\/li>\n<li>Sazonov A.G.\u00a0<i>Genetical Horizons &#8211; Integral Indicators Of Databases And Gis Of Forest Soils<\/i><\/li>\n<li>Scheikin A.*, Polkanov A. , Zhalmukhamedova Zh.\u00a0<i>Remote Sensing For Natural Plague Focus Monitoring In Kazakhstan<\/i><\/li>\n<li>Sedelnikov V.P.,\u00a0Ermakov N.B.,\u00a0Baikov K.S., Banaev E.V.\u00a0<i>Levels of organization of flora and vegetation and their geographical peculiarities s<\/i>\u00a0()<\/li>\n<li>Semovski S.V.\u00a0<i>Numerical assimilation of data in ecological models.<\/i><\/li>\n<li>Shabalin A.V.1,\u00a0Dolgikh M.M., Voevoda M.I., Yudin N.S., Kuznetzova T.N., Ustinov S.N.,\u00a0Goncharova T.M., Kostenko M.V., Kulikov I.V., Ponomareva I.V., Schachtschnaider E.V., Pentegova V.A., Maximov V.N., Kobzev V.F., Romashchenco A.G., Nikitin Yu.P.\u00a0<i>Angiotensin-Convertind Enzyme Gene Polymorphism In Ethnic Groups Of The Central And North-Eastern Asia<\/i><\/li>\n<li>Sherbakov D.Y.\u00a0<i>A Phylogenetic Test Allows To Infer Speciation Mechanisms.<\/i><\/li>\n<li>Shevyrnogov A.,\u00a0Vysotskaya G., Shevyrnogov E.\u00a0<i>A SATELLITE DATA-BASED STUDY OF CHLOROPHYLL CONCENTRATION DYNAMICS IN THE FAR EASTERN SEAS<\/i><\/li>\n<li>Shirobokova I.M., Pechurkin N.S.\u00a0<i>MODELING OF ANTHROPOGENIC LOAD EFFECT ON DYNAMICS OF ECOSYSTEMS WITH DIFFERENT STRUCTURAL ORGANIZATION<\/i><\/li>\n<li>Shukurov E.J.\u00a0<i>Premises for Application of the GIS Technologies for the Biodiversity Conservation in High-Altitude Mountain Systems of Central Asia<\/i><\/li>\n<li>Shvidenko A.*, Nilsson S.\u00a0<i>Information System For Estimating Of Terrestrial Biota Impact On Budgets Of Major Greenhouse Gases<\/i><\/li>\n<li>Sidorchuk E.A.\u00a0<i>Fossil Oribatei assemblage from the Subboreal deposits of the Vychegda River basin.<\/i><\/li>\n<li>Silvert W.L.\u00a0<i>A Bifurcation Model Of Speciation Due To Environmental Change<\/i><\/li>\n<li>Slominsky PA.1*, Popova SN.1, Galushkin S.N.2, Guseva IA.3\u00a0<i>POLYMORPHISM OF DIFFERENT TYPE OF GLUTATION S-TRANSFERASE IN DIFFERENT POPULATIONS FROM RUSSIAN FEDERATION.<\/i><\/li>\n<li>Smith R.\u00a0<i>BioNET-INTERNATIONAL \u2013 overcoming the taxonomic impediment to biodiversity research<\/i><\/li>\n<li>Sofronov M.A., A.V.Volokitina, E.A.Karnaukhova\u00a0<i>DEPTH OF PERMAFROST SOIL THAWING :<\/i><\/li>\n<li>Sommer H.C.\u00a0<i>SELECTED INFORMATION SYSTEMS RELATED TO NATURE CONSERVATION: GEIN, WISIA-ONLINE, VIA-ONLINE AND FLORAWEB<\/i><\/li>\n<li>Somova L.A.,\u00a0Pisman T.I.\u00a0<i>Increase Of Atmospheric \u0421\u043e2: Response Types Of A Simple Terrestrial Ecosystem (Experimental And Mathematical Modeling)<\/i><\/li>\n<li>Sorokina N.\u00a0<i>The biodiversity of small mammals within the western-siberian nothern taiga ecosystems<\/i><\/li>\n<li>Stepanov V.A.,\u00a0Golubenko M.,\u00a0Rootsi S, Kharkov V,\u00a0Kivisild T, Spiridonova M,\u00a0Villems R., Puzyrev V.\u00a0<i>DIVERSITY OF PATERNAL AND MATERNAL LINEAGES IN POPULATIONS OF SIBERIA AND CENTRAL ASIA<\/i><\/li>\n<\/ol>\n<ol start=\"161\">\n<li>Svechnikov D.A.\u00a0<i>The Particularities Of The Rheology Methods Using In The Soil Sience.<\/i><\/li>\n<li>Sviridenko B.F.,\u00a0Belkin V.A.,\u00a0Kostarev S.V.\u00a0<i>DATABASE OF RARE AND PROTECTED SPECIES OF PLANTS IN OMSK REGION<\/i><\/li>\n<li>Tambets K.*1, Parik, J.1, Beckman, L.2\u00a0<i>Estonian Maternal Lineages In The Context Of Germanic Speakers.<\/i><\/li>\n<li>Titlyanova A.A.\u00a0<i>Grazing pressure influence of the Inner Asia steppe ecosystems<\/i><\/li>\n<li>Tolk H.,\u00a0Tambets K.,\u00a0Metspalu E., Reidla M., Rudan P.\u00a0<i>Mitochondrial DNA lineages of central European human populations in the background of global dataset<\/i><\/li>\n<li>Troshkov N.Y.\u00a0<i>Information System For Integration Of Complex Research Results Of Lake Teletskoye Ecosystem<\/i><\/li>\n<li>Udina I.G.\u00a0<i>Genetic differentiation of nations in Northern Eurasia by HLA system<\/i><\/li>\n<li>Udina I.G. * 1\u00a0, Danilkin A.A. 2, Boeskorov G.G. 3\u00a0<i>Genetic diversity of moose (Alces alces L.) in Eurasia<\/i><\/li>\n<li>Vasiliev G.V.*, Klimova N.V. , Vasilieva \u0415.D.\u00a0<i>Single Nucleotide Polymorphism In Intron 6 Of The Mouse Tryptophan 2,3-Dioxygenase, Related To Behavioral Disorders.<\/i><\/li>\n<li>Vasiliev S.V.\u00a0<i>COMPARISON OF VECTOR MAPPING AND RASTER IMAGES PROCESSING IN ECOSYSTEM DIVERSITY ESTIMATION<\/i><\/li>\n<li>Vasiliev S.V.*, Peregon A.M.\u00a0<i>Biodiversity On Boundary Of Forests And Mires In West Siberia<\/i><\/li>\n<li>Vasilyeva L.A.1,2, Bubenshchikova E.V.1, Antonenko O.V.1,\u00a0Ratner V.A.1,2.\u00a0<i>Investigation Of Te Patterns Gives New Possibilities For Understanding Of The Process Of Genome Evolution<\/i><\/li>\n<li>Venevskaia I.V.*, Venevsky S., Cramer W.\u00a0<i>Computer Mapping Of Global Biodiversity Trends In North Eurasia For Simulation Within A Dynamic Global Vegetation Model<\/i><\/li>\n<li>Verbenko D.A.,\u00a0Balanovsky O.P., Balanovskaya E.V.&#8217;,\u00a0Limborska S.A.\u00a0<i>Minisatellite DNA polymorphism and peculiarities of geographic variation of East Slavs.<\/i><\/li>\n<li>Victorova T.,\u00a0Khusnutdinova E.\u00a0<i>Genetic diversity of monogene hereditary diseases and founder effect in Bashkortostan Republic<\/i><\/li>\n<li>Villems R.\u00a0<i>Maternal Lineage Clusters In Eurasia: Phylogeography And Coalescence<\/i><\/li>\n<li>Voronov M.G.,\u00a0Kotsar O.V.*., Sergeeva V.N.,\u00a0<i>The Automated System Of Organization Of Monitoring Of Natural Reproduction Of Lake Baikal Omul<\/i><\/li>\n<li>Vysotskaya G.S.\u00a0<i>GEO-INFORMATION SYSTEM \u00abSIBERIAN CLIMATE HISTORY\u00bb, AS AN INSTRUMENT FOR A SPATIAL-TEMPORAL ANALYSIS OF CLIMATE CHANGES<\/i><\/li>\n<li>Weinberg I.V.,\u00a0Kamaltynov, R.M., Tereza, Ye.P.\u00a0<i>Dynamics Of The Population Of Baikalian Amphipod Eulimnogammarus Cyaneus (Crustacea, Amphipoda)<\/i><\/li>\n<li>Zakamaldina E.A.\u00a0<i>Model of Ips Subelongatus Motsch quantity dynamics.<\/i><\/li>\n<li>Zavialov E.V.,\u00a0Tabachishin V.G.\u00a0<i>Using of the automatized methods of operative diagnostics in morphological analysis of steppe viper in South-West of Russia<\/i><\/li>\n<li>Zhitlukhina T. I.,\u00a0Dobridenev A., Goncharuk N. Yu.\u00a0<i>Conceptual bases of development of fire block GIS &#8220;Reserves&#8221;<\/i><\/li>\n<li>Zhivotovsky L.A.\u00a0<i>PROBLEMS OF HUMAN DNA IDENTIFICATION<\/i><\/li>\n<li>Zhivotovsky L.A.\u00a0<i>Population Dynamics Influence Genetic Distances And Estimates Of Divergence Time Between Populations<\/i><\/li>\n<li>Zhivotovsky L.A.\u00a0<i>Inheritance of acquired characters: Lamarckian-Darwinian evolution<\/i><\/li>\n<li>Zotina T.A., Degermendzhy A.G., Gavrilova L.V.\u00a0<i>MODELING OF VERTICAL DISTRIBUTION OF PHYTOPLANKTON OF SHIRA LAKE (REPUBLIC OF KHAKASSIA)<\/i><\/li>\n<\/ol>\n<p><\/p>","protected":false},"excerpt":{"rendered":"<p>(abstract in russian) (abstract in russian) (abstract in russian) Abakumov A.I., Kucher A.I.\u00a0The Model Analysis Of Khanka Lake Ecosystem Akhetova* V., Viktorova T.V.,\u00a0Khusnutdinova E.\u00a0Molecular-Genetic Study Of Vntr And Str Alleles Of The Phenylalanine Hydroxylase Gene In Volga-Ural Populations Armand N.A., &hellip; <a href=\"https:\/\/conf.icgbio.ru\/bdne2001\/en\/reports-list\/\">Continue reading <span class=\"meta-nav\">&rarr;<\/span><\/a><\/p>\n","protected":false},"author":13,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":[],"_links":{"self":[{"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/pages\/162"}],"collection":[{"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/users\/13"}],"replies":[{"embeddable":true,"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/comments?post=162"}],"version-history":[{"count":7,"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/pages\/162\/revisions"}],"predecessor-version":[{"id":183,"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/pages\/162\/revisions\/183"}],"wp:attachment":[{"href":"https:\/\/conf.icgbio.ru\/bdne2001\/en\/wp-json\/wp\/v2\/media?parent=162"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}