American Journal of Plant Sciences

American Journal of Plant Sciences

ISSN Print: 2158-2742
ISSN Online: 2158-2750
www.scirp.net/journal/ajps
E-mail: [email protected]
"Vascular Plants of the Maritime Antarctic: Origin and Adaptation"
written by Ivan Parnikoza, Iryna Kozeretska, Viktor Kunakh,
published by American Journal of Plant Sciences, Vol.2 No.3, 2011
has been cited by the following article(s):
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[1] STUDY OF GENOMES IN DESCHAMPSIA ANTARCTICA DESV. FROM DIFFERENT LOCALITIES OF MARITIME ANTARCTIC USING CHROMOSOMAL AND MOLECULAR MARKERS
Фактори ŠµŠŗŃŠæŠµŃ€ŠøŠ¼ŠµŠ½Ń‚Š°Š»ŃŒŠ½Š¾? ŠµŠ²Š¾Š»ŃŽŃ†?? орган?зм?в
[2] Ecophysiology of Antarctic Vascular Plants: An Update on the Extreme Environment Resistance Mechanisms and Their Importance in Facing Climate Change
Plants, 2024
[3] Effect of light and temperature on the content of some biologically active substances in Deschampsia antarctica tissue culture.
Biopolymers & …, 2024
[4] Вплив світла та Ń‚ŠµŠ¼ŠæŠµŃ€Š°Ń‚ŃƒŃ€Šø на вміст Š“ŠµŃŠŗŠøŃ… біологічно активних сполук у ŠŗŃƒŠ»ŃŒŃ‚ŃƒŃ€Ń– тканин Deschampsia antarctica
Biopolymers and …, 2024
[5] ŠŸŠµŃ€ŠµŠ“Š±Š°Ń‡ŠµŠ½Š½Ń та аналіз стрес-Ń–Š½Š“ŃƒŠŗŠ¾Š²Š°Š½ŠøŃ… транскрипційних факторів ICE у Deschampsia antarctica
Biopolymers and Cell, 2023
[6] Prediction and analysis of stress-inducible ICE transcription factors in Deschampsia antarctica.
Biopolymers & Cell, 2023
[7] Development, integrative study and research prospects of Deschampsia antarctica collection
Polish Polar …, 2023
[8] B Chromosome Variability in Plants and Animals under Extreme Environments
Russian Journal of Genetics, 2023
[9] Commonalities between the Atacama Desert and Antarctica rhizosphere microbial communities
Frontiers in …, 2023
[10] A bacterial cold-active dye-decolorizing peroxidase from an Antarctic Pseudomonas strain
Applied Microbiology …, 2023
[11] Comparative bioinformatic research of gene promoters of DREB2B transcription factors in Deschampsia antarctica and some other cereals
TSitologiya i Genetika, 2022
[12] Overexpression of Head date 1 gene (Hd1): an adaptation of antarctic hairgrass to guano input from Macronectes giganteus colonies of Antarctica
Research, Society and …, 2022
[13] Skua and plant dispersal: lessons from the Argentine Islands–Kyiv Peninsula region in the maritime Antarctic
Nordic Journal of …, 2022
[14] Comparative Analysis of Promoters of DREB2B Transcription Factor Genes in Deschampsia antarctica and Other Grasses
Cytology and Genetics, 2022
[15] Vegetation drives the response of the active fraction of the rhizosphere microbial communities to soil warming in Antarctic vascular plants
Pozo, LA Bravo, PL SĆ”ez… - FEMS Microbiology …, 2022
[16] ДклаГ та антиоксиГантні властивості екстрактів Deschampsia antarctica Ɖ. Desv. Š· різних Š¼Ń–ŃŃ†ŠµŠ·Ń€Š¾ŃŃ‚Š°Š½ŃŒ ŠœŠ¾Ń€ŃŃŒŠŗŠ¾Ń— Антарктики
Reports of the …, 2022
[17] Meta‐analysis of Antarctic phylogeography reveals strong sampling bias and critical knowledge gaps
Ecography, 2022
[18] Biological soil crusts as ecosystem engineers in antarctic ecosystem
RodrĆ­guez… - Frontiers in …, 2022
[19] Hierachical epicuticular wax coverage on leaves of Deschampsia antarctica as a possible adaptation to severe environmental conditions
Beilstein Journal of …, 2022
[20] Molecular Diversity and Phylogeny Reconstruction of Genus Colobanthus (Caryophyllaceae) Based on Mitochondrial Gene Sequences
Genes, 2022
[21] Involvement of Lipids in Adaptations of Higher Vascular Plants to the Conditions of West Spitsbergen
Biology Bulletin …, 2022
[22] Characterization of the Cell Wall Component through Thermogravimetric Analysis and Its Relationship with an Expansin-like Protein in Deschampsia antarctica
Quintana, D Tapia-Valdebenito… - International Journal of …, 2022
[23] Š”Š¾ŃŠ»Ń–Š“Š¶ŠµŠ½Š½Ń Š°Š½Ń‚ŠøŠ±Š°ŠŗŃ‚ŠµŃ€Ń–Š°Š»ŃŒŠ½Š¾Š³Š¾ та ŠæŃ€Š¾Ń‚ŠøŠæŠ»Ń–Š²ŠŗŠ¾ŃƒŃ‚Š²Š¾Ń€ŃŽŠ²Š°Š»ŃŒŠ½Š¾Š³Š¾ ŠæŠ¾Ń‚ŠµŠ½Ń†Ń–Š°Š»Ńƒ Š±Š°ŠŗŃ‚ŠµŃ€Ń–Š¾Ń„Š°Š³Ńƒ, виГіленого Š· Ņ‘Ń€ŃƒŠ½Ń‚Ńƒ
2022
[24] Determination of stomatic density, index, and area as exposition biomarkers of pollution in Deschampsia antƔrctica Desv. (Poaceae)
Ecotoxicology, 2022
[25] УчреГители: Š Š¾ŃŃŠøŠ¹ŃŠŗŠ°Ń Š°ŠŗŠ°Š“ŠµŠ¼ŠøŃ наук
Š–Š£Š ŠŠŠ› ŠžŠ‘Š©Š•Š™Ā ā€¦, 2021
[26] Phaeosphaeria deschampsii J. Putzke & AB Pereira (Ascomycota, Fungi) causing whitening in Deschampsia antarctica Desv.(Poaceae) in the South Shetland …
Check List, 2021
[27] Preliminary estimates of the number and diversity of the culturable endophytic bacteria from Deschampsia antarctica and Colobanthus quitensis
Visnik ukrains' kogo tovaristva …, 2021
[28] Andrea Barrera1, Rasme Hereme1, Simon Ruiz-Lara1, Luis F. Larrondo2, Pedro E. Gundel3, Stephan Pollmann4, Marco A. Molina-Montenegro1, 5, 6 and Patricio …
Symbiosis in a Changing Environment, 2021
[29] Current status of Belgica antarctica Jacobs, 1900 (Diptera: Chironomidae) distribution by the data of Ukrainian Antarctic Expeditions
2021
[30] Heat Shock Tolerance in Deschampsia antarctica Desv. Cultivated in vitro Is Mediated by Enzymatic and Non-enzymatic Antioxidants
2021
[31] Determination of Stomatic Density, Index, and Area as Exposition Biomarkers of Pollution in Deschampsia AntƔrctica Desv.(Poaceae)
2021
[32] Anatomy of the generative structures of the Subantarctic flowering plant Colobanthus apetalus (Labill.) Druce
2021
[33] Root-Associated Bacteria Community Characteristics of Antarctic Plants: Deschampsia antarctica and Colobanthus quitensis—a Comparison
Microbial Ecology, 2021
[34] ŠœŠ¾Š»ŠµŠŗŃƒŠ»ŃŃ€Š½Š° Š¾Ń€Š³Š°Š½Ń–Š·Š°Ń†Ń–Ń та таксономічне Š·Š°ŃŃ‚Š¾ŃŃƒŠ²Š°Š½Š½Ń 5S рибосомної Š”ŠŠš преГставників триби Poeae (роГина Poaceae)
2021
[35] Mapeamento e caracterização da vegetação e geoambientes de Hope Bay, Península AntÔrtica, usando imangens de VANT
2020
[36] Content of biogenic and toxic elements in the leaves of Deschampsia antarctica Ɖ. Desv.(Poaceae): a preliminary study
2020
[37] Biodiversity Research and Innovation in Antarctica and the Southern Ocean
2020
[38] Vegetation of the Polar Zone
2020
[39] Fungal endophytes enhance the photoprotective mechanisms and photochemical efficiency in the Antarctic Colobanthus quitensis (Kunth) Bartl. exposed to …
2020
[40] ŠšŠŠ›Š®Š”ŠžŠ£Š¢Š’ŠžŠ Š•ŠŠŠÆ ТА ŠžŠ Š“ŠŠŠžŠ“Š•ŠŠ•Š— IN VITRO DESCHAMPSIA ANTARCTICA E. DESV.
2019
[41] The effect of sodium fluoride on seeds germination and morphophysiological changes in the seedlings of the Antarctic species Colobanthus quitensis (Kunth) Bartl. and the Subantarctic species Colobanthus apetalus (Labill.) Druce
Polish Polar Research, 2019
[42] ŠšŠ°Š»ŃŽŃŠ¾ŃƒŃ‚Š²Š¾Ń€ŠµŠ½Š½Ń та органогенез в ŠŗŃƒŠ»ŃŒŃ‚ŃƒŃ€Ń– тканин Deschampsia antarctica E. Desv.
2019
[43] ВіГГіл генетики клітинних ŠæŠ¾ŠæŃƒŠ»ŃŃ†Ń–Š¹ Š†Š½ŃŃ‚ŠøŃ‚ŃƒŃ‚Ńƒ Š¼Š¾Š»ŠµŠŗŃƒŠ»ŃŃ€Š½Š¾Ń— біології і генетики ŠŠŠ України: Ń–ŃŃ‚Š¾Ń€Ń–Ń та головні Š½Š°ŃƒŠŗŠ¾Š²Ń– Š·Š“Š¾Š±ŃƒŃ‚ŠŗŠø (Го 30-річчя віГ Ń‡Š°ŃŃƒĀ ā€¦
2019
[44] Anatomical variations of Deschampsia antarctica Ɖ. Desv. plants from distant Antarctic regions, in vitro culture, and in relations to Deschampsia caespitosa (L.) P …
2019
[45] Antarctic extremophiles: biotechnological alternative to crop productivity in saline soils
2019
[46] Microbial Role in the Ecology of Antarctic Plants
2019
[47] Karyological Study of Siberian Larch Species Larix sibirica and Larix gmelinii in Taimyr
2019
[48] First record of the endophytic bacteria of Deschampsia antarctica E. Desv. from two distant localities of the maritime Antarctica
bioRxiv, 2019
[49] ŠšŠ°Ń€ŠøŠ¾Š»Š¾Š³ŠøŃ‡ŠµŃŠŗŠ¾Šµ исслеГование сибирских виГов лиственниц Larix sibirica Šø Larix gmelinii на Таймыре
Š¦ŠøŃ‚Š¾Š»Š¾Š³ŠøŃ Šø генетика, 2019
[50] The effect of sodium fluoride on seeds germination and morphophysiological changes in the seedlings of the Antarctic species Colobanthus quitensis (Kunth) …
2019
[51] Functional study of arctic/antarctic plant genes using cell-based assay and transgenic plants
2018
[52] DEVELOPMENT OF HYPERICUM PERFORATUM L. THE FIRST–THIRD YEAR OF LIFE UNDER THE CONDITIONS OF CULTURE
2018
[53] Ocena skażeń radioaktywnych i dawek dla wybranych elementów ekosystemów Antarktyki
2018
[54] ŠžŠ¦Š†ŠŠšŠ Š“Š•ŠŠ•Š¢Š˜Š§ŠŠžŠ“Šž ŠŸŠžŠ›Š†ŠœŠžŠ Š¤Š†Š—ŠœŠ£ Š£ Š ŠžŠ”Š›Š˜Š ЗА Š”ŠžŠŸŠžŠœŠžŠ“ŠžŠ® Š”ŠžŠ’Š–Š˜ŠŠ˜ Š†ŠŠ¢Š ŠžŠŠ†Š’ Š“Š•ŠŠ†Š’ β-Š¢Š£Š‘Š£Š›Š†ŠŠ£ ŠŠ Š’ŠŠ£Š¢Š Š†ŠØŠŠ¬Šž-ТА ŠœŠ†Š–Š’Š˜Š”ŠžŠ’ŠžŠœŠ£Ā ā€¦
2018
[55] A methodological proposal for the recovery of palynomorphs from snow and ice samples
2018
[56] Range-wide pattern of genetic variation in Colobanthus quitensis
Polar Biology, 2018
[57] The influence of short-term cold stress on the metabolism of non-structural carbohydrates in polar grasses
Polish Polar Research, 2017
[58] ŠŠ”ŠŠŸŠ¢ŠŠ¦Š˜ŠžŠŠŠ«Š• ŠžŠ”ŠžŠ‘Š•ŠŠŠžŠ”Š¢Š˜ Š”Š˜Š”Š¢Š•ŠœŠ« Š”Š•ŠœŠ•ŠŠŠžŠ“Šž Š ŠŠ—ŠœŠŠžŠ–Š•ŠŠ˜ŠÆ COLOBANTHUS QUITENSIS (CARYOPHYLLACEAE) Š’ Š£Š”Š›ŠžŠ’Š˜ŠÆŠ„ ŠœŠžŠ Š”ŠšŠžŠ™ ŠŠŠ¢ŠŠ ŠšŠ¢Š˜ŠšŠ˜
Ботанический Š¶ŃƒŃ€Š½Š°Š», 2017
[59] How did a grass reach Antarctica? The Patagonian connection of Deschampsia antarctica (Poaceae)
Botanical Journal of the Linnean Society, 2017
[60] Comprehensive characterization of cultivated in vitro Deschampsia antarctica E. Desv. plants with different chromosome numbers
Cytology and Genetics, 2017
[61] ŠžŠ¢Š Š˜ŠœŠŠŠŠÆ ŠšŠ£Š›Š¬Š¢Š£Š Š˜ IN VITRO DESCHAMPSIA ANTARCTICA DESV. ТА ĪŖĪŖ Š¤Š†Š—Š†ŠžŠ›ŠžŠ“Šž-Š“Š•ŠŠ•Š¢Š˜Š§ŠŠ• Š’Š˜Š’Š§Š•ŠŠŠÆ
2017
[62] ADAPTIVE PECULIARITIES OF THE SEED REPRODUCTION SYSTEM TO CONDITIONS OF MARITIME ANTARCTIC IN COLOBANTHUS QUITENSIS …
2017
[63] ŠŸŠ¾Š»Ń–Š¼Š¾Ń€Ń„Ń–Š·Š¼ Говжини інтронів генів β-Ń‚ŃƒŠ±ŃƒŠ»Ń–Š½Ńƒ у Deschampsia antarctica Desv. Š· Š¼Š¾Ń€ŃŃŒŠŗŠ¾Ń— Антарктики
2017
[64] Рослини Deschampsia antarctica E. Desv. Š· різним числом хромосом в ŃƒŠ¼Š¾Š²Š°Ń… Š²ŠøŃ€Š¾Ń‰ŃƒŠ²Š°Š½Š½Ń in vitro. Ймовірнісні зв'ŃŠ·ŠŗŠø Ń‚Ń€ŃŒŠ¾Ń… показників …
2017
[65] The role of photoheterotrophic and chemoautotrophic prokaryotes in the microbial food web in terrestrial Antarctica: a cultivation approach combined with functional analysis
Doctoral dissertation, Ghent University, 2017
[66] Development of generative structures of polar Caryophyllaceae plants: the Arctic Cerastium alpinum and Silene involucrata, and the Antarctic Colobanthus quitensis
Polish Polar Research, 2017
[67] Comparative molecular cytogenetic characterization of seven Deschampsia (Poaceae) species
PLOS ONE, 2017
[68] Seeds of non-native species in King George Island soil
Antarctic Science, 2017
[69] Phenotypic variability and genetic differentiation in continental and island populations of Colobanthus quitensis (Caryophyllaceae: Antarctic pearlwort)
Polar Biology, 2017
[70] Development of generative structures of polar Caryophyllaceae plants: the Arctic Cerastium alpinum and Silene involucrata, and the Antarctic Colobanthus …
Sopyła, I Giełwanowska, J Koc… - Polish Polar …, 2017
[71] Photosynthetic acclimation to warming and elevated CO2 in two Antarctic vascular plant species
2016
[72] Adaptation of the seed reproduction system to conditions of Maritime Antarctic in Deschampsia antarctica E. Desv.
Russian Journal of Developmental Biology, 2016
[73] Female sporogenesis in the native Antarctic grass Deschampsia antarctica Desv.
Polish Polar Research, 2016
[74] ŠŸŃ–Š“Š²ŠøŃ‰ŠµŠ½Š° ŃŃ‚Ń–Š¹ŠŗŃ–ŃŃ‚ŃŒ Deschampsia antarctica Desv. Го Š¼ŃƒŃ‚агенної Гії іонів ŠŗŠ°Š“Š¼Ń–ŃŽ
2016
[75] ŠžŃŠ¾Š±Š»ŠøŠ²Š¾ŃŃ‚Ń– хромосомної мінливості в ŠŗŃƒŠ»ŃŒŃ‚ŃƒŃ€Ń– тканин рослин Deschampsia antarctica Desv. Š· різним числом хромосом
Š’?сник Укра?нського товариства генетик?в ? селекц?онер?в, 2016
[76] A new name in Sagina, Sagina alexandrae (Caryophyllaceae)
2016
[77] Š†Š“ŠµŠ½Ń‚ŠøŃ„Ń–ŠŗŠ°Ń†Ń–Ń та аналіз in silico генів стрес-Ń–Š½Š“ŃƒŠŗŠ¾Š²Š°Š½ŠøŃ… транскрипційних факторів DREB2 у Deschampsia antarctica Desv.
2016
[78] Ecophysiological traits of Antarctic vascular plants: their importance in the responses to climate change
Plant Ecology, 2016
[79] Дохранение ŃƒŠ½ŠøŠŗŠ°Š»ŃŒŠ½Š¾ŃŃ‚Šø по комплексной ŠæŃ€ŠøŃŠæŠ¾ŃŠ¾Š±Š»ŃŠµŠ¼Š¾ŃŃ‚Šø разных генотипов Deschampsia antarctica Desv. в ŃƒŃŠ»Š¾Š²ŠøŃŃ… станГартизованного Š²Ń‹Ń€Š°Ń‰ŠøŠ²Š°Š½ŠøŃĀ ā€¦
2016
[80] Distribution and characterization of bacterial communities in diverse Antarctic ecosystems by high-troughput sequencing
2016
[81] Біоінформатичне ŠæŠµŃ€ŠµŠ“Š±Š°Ń‡ŠµŠ½Š½Ń генів Ń–Š½Š“ŃƒŠŗŠ¾Š²Š°Š½ŠøŃ… холоГом транскрипційних факторів CBF/DREB1 та DREB4 у Deschampsia antarctica Desv.
Укра?нський антарктичний Š¶ŃƒŃ€Š½Š°Š», 2016
[82] Š—Š±ŠµŃ€ŠµŠ¶ŠµŠ½Š½Ń ŃƒŠ½Ń–ŠŗŠ°Š»ŃŒŠ½Š¾ŃŃ‚Ń– за ŠŗŠ¾Š¼ŠæŠ»ŠµŠŗŃŠ½Š¾ŃŽ ŠæŃ€ŠøŃŃ‚Š¾ŃŠ¾Š²ŃƒŠ²Š°Š½Ń–ŃŃ‚ŃŽ різних генотипів Deschampsia antarctica Desv. в ŃƒŠ¼Š¾Š²Š°Ń… станГартизованого Š²ŠøŃ€Š¾Ń‰ŃƒŠ²Š°Š½Š½Ń …
Укра?нський антарктичний Š¶ŃƒŃ€Š½Š°Š», 2016
[83] Дпецифика аГаптации системы семенного Ń€Š°Š·Š¼Š½Š¾Š¶ŠµŠ½ŠøŃ Deschampsia antarctica E. Desv. Šŗ ŃƒŃŠ»Š¾Š²ŠøŃŠ¼ ŠŸŃ€ŠøŠ±Ń€ŠµŠ¶Š½Š¾Š¹ Антарктики
2016
[84] Molecular Cytogenetic Analysis of Deschampsia antarctica Desv. (Poaceae), Maritime Antarctic
2015
[85] Mechanisms of antarctic vascular plant adaptation to abiotic environmental factors
Cytology and Genetics, 2015
[86] Generative reproduction of Antarctic grasses, the native species Deschampsia antarctica Desv. and the alien species Poa annua L.
Polish Polar Research, 2015
[87] Germination capacity of five polar Caryophyllaceae and Poaceae species under different temperature conditions
Polar Biology, 2015
[88] Comparative analysis of Deschampsia antarctica Desv. population adaptability in the natural environment of the Admiralty Bay region (King George Island, maritime Antarctic)
Polar Biology, 2015
[89] Molecular Cytogenetic Analysis of Deschampsia antarctica Desv.(Poaceae), Maritime Antarctic
PloS one, 2015
[90] Morphological and ultrastructural changes of organelles in leaf mesophyll cells of the Arctic and Antarctic plants of Poaceae family under cold influence
Arctic, Antarctic, and Alpine Research, 2015
[91] Š”ŠžŠ”Š•Š Š–ŠŠŠ˜Š• ŠŸŠžŠ›Š˜Š¦Š˜ŠšŠ›Š˜Š§Š•Š”ŠšŠ˜Š„ ŠŠ ŠžŠœŠŠ¢Š˜Š§Š•Š”ŠšŠ˜Š„ Š£Š“Š›Š•Š’ŠžŠ”ŠžŠ ŠžŠ”ŠžŠ’ Š’ ŠŸŠžŠ§Š’ŠŠ„ ŠžŠšŠ Š•Š”Š¢ŠŠžŠ”Š¢Š•Š™ ŠŠŠ¢ŠŠ ŠšŠ¢Š˜Š§Š•Š”ŠšŠ˜Š„ Š”Š¢ŠŠŠ¦Š˜Š™
2015
[92] An Introductory Guide to the Flora of Antarctica
2015
[93] ŠœŠµŃ…Š°Š½Ń–Š·Š¼Šø аГаптації ŃŃƒŠ“ŠøŠ½Š½ŠøŃ… рослин антарктики Го абіотичних факторів Š“Š¾Š²ŠŗŃ–Š»Š»Ń
Š¦ŠøŃ‚Š¾Š»Š¾Š³ŠøŃ Šø генетика, 2015
[94] New forms of chromosome polymorphism in Deschampsia antarctica Desv. from the Argentine islands of the Maritime Antarctic region
Укра?нський антарктичний Š¶ŃƒŃ€Š½Š°Š», 2014
[95] Cold stress effects on organelle ultrastructure in polar Caryophyllaceae species
Polish Polar Research, 2014
[96] Š’ŠøŠ²Ń‡ŠµŠ½Š½Ń геном?в рослин Deschampsia antarctica Desv. Š· р?зних локал?тет?в прибережно? антарктики за Š“Š¾ŠæŠ¾Š¼Š¾Š³Š¾ŃŽ хромосомних та Š¼Š¾Š»ŠµŠŗŃƒŠ»ŃŃ€Š½ŠøŃ… маркер?в
Фактори ŠµŠŗŃŠæŠµŃ€ŠøŠ¼ŠµŠ½Ń‚Š°Š»ŃŒŠ½Š¾? ŠµŠ²Š¾Š»ŃŽŃ†?? орган?зм?в, 2014
[97] Changes in soluble carbohydrates in polar Caryophyllaceae and Poaceae plants in response to chilling
Acta Physiologiae Plantarum, 2014
[98] ЗвеГений латентний показник ŠæŃ€ŠøŃŃ‚Š¾ŃŠ¾Š²ŃƒŠ²Š°Š½Š¾ŃŃ‚? Deschampsia antarctica Desv., ŃŠŗ в?Гбиток м?ŠŗŃ€Š¾ŃƒŠ¼Š¾Š² ?ŃŠ½ŃƒŠ²Š°Š½Š½Ń в район? АГм?Ń€Š°Š»ŃŒŃŃŒŠŗŠ¾? Š±ŃƒŃ…Ń‚Šø (о. ŠšŠ¾Ń€Š¾Š»Ń Георга, ŠŸŃ€ŠøŠ±ŠµŃ€ŠµŠ¶Š½Š° Антарктика)
Укра?нський антарктичний Š¶ŃƒŃ€Š½Š°Š», 2014
[99] Genetic diversity of Colobanthus quitensis across the Drake Passage
Plant Genetic Resources, 2014
[100] ДоГержание полициклических ароматических ŃƒŠ³Š»ŠµŠ²Š¾Š“Š¾Ń€Š¾Š“Š¾Š² в почвах АнтарктиГы на примере российских ŠæŠ¾Š»ŃŃ€Š½Ń‹Ń… станций
Гигиена и …, 2014
[101] ŠŠµŠ·Š½Š°ŠŗŠ¾Š¼Š°Ń Антарктика: Ń€Š°ŃŃ‚ŠµŠ½ŠøŃ Ń€Š°ŃŠŗŃ€Ń‹Š²Š°ŃŽŃ‚ свои секреты
2013
[102] Characterization of a novel antarctic plant growth-promoting bacterial strain and its interaction with antarctic hair grass (Deschampsia antarctica Desv)
Polar biology, 2013
[103] UNKNOWN ANTARCTICA: PLANTS DISCLOSE THEIR SECRETS
2013
[104] ŠšŠŠ›Š›Š£Š”ŠžŠ“Š•ŠŠ•Š— И Š Š•Š“Š•ŠŠ•Š ŠŠ¦Š˜ŠÆ Š ŠŠ”Š¢Š•ŠŠ˜Š™ DESCHAMPSIA ANTARCTICA DESV.(POACEAE) Š’ ŠšŠ£Š›Š¬Š¢Š£Š Š• IN VITRO
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[105] CALLUS FORMATION AND REGENERATION OF Deschampsia antarctica Desv.(Poaceae) IN CULTURE in vitro
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[106] ŠŠµŠ·Š½Š°Š¹Š¾Š¼Š° Антарктика: рослини Ń€Š¾Š·ŠŗŃ€ŠøŠ²Š°ŃŽŃ‚ŃŒ сво? та?мниц?
Š’?сник ŠŠ°Ń†?онально? акаГем?? наук Укра?ни, 2013
[107] DESCHAMPSIA ANTARCTICA DESV. IN THE MARITIME ANTARCTIC: EXCLUSIVENESS OR THE LONG-TERM ADAPTIVE STRATEGIES?
Ukrainian Botanical Journal, 2013
[108] ŠšŠŠ›Š®Š”ŠžŠ“Š•ŠŠ•Š— ТА Š Š•Š“Š•ŠŠ•Š ŠŠ¦Š†ŠÆ Š ŠžŠ”Š›Š˜Š Deschampsia antarctica Desv.(Poaceae) Š£ ŠšŠ£Š›Š¬Š¢Š£Š Š† in vitro
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[109] Увеличение площаГи Ń€Š°ŃŃŠµŠ»ŠµŠ½ŠøŃ злака Deschampsia antarctica в Š¾ŠŗŃ€ŠµŃŃ‚Š½Š¾ŃŃ‚ŃŃ… российской антарктической станции Š‘ŠµŠ»Š»ŠøŠ½ŃŠ³Š°ŃƒŠ·ŠµŠ½ (о-ва Кинг-ДжорГж Šø …
2012
[110] Географічний граГієнт генетичного ŠæŠ¾Š»Ń–Š¼Š¾Ń€Ń„Ń–Š·Š¼Ńƒ Deschampsіa antarctіca Desv. Ń–Š· ŠŸŃ€ŠøŠ±ŠµŃ€ŠµŠ¶Š½Š¾Ń— Антарктики
?Šž АнГр??в, РА Волков, ?А ŠšŠ¾Š·ŠµŃ€ŠµŃ†ŃŒŠŗŠ°, ?Š® ŠŸŠ°Ń€Š½?коза… - terreco.univ.kiev.uaļæ½, 2012
[111] FACULTAD DE QUƍMICA Y BIOLOGƍA
2007
[112] CatĆ”logo das Plantas do Jardim BotĆ¢nico da Universidade de Coimbra–obra completa
1971
[113] First record of the endophytic bacteria of Deschampsia antarctica Ė. Desv. from two distant localities of the maritime Antarctic
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