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1

Bernhard, Douglas L., and Karen Sue Renzaglia. "Spermiogenesis in the Moss Aulacomnium palustre." Bryologist 98, no. 1 (1995): 52. http://dx.doi.org/10.2307/3243642.

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2

Imura, Satoshi, Janice M. Glime, and Zennoske Iwatsuki. "Propagula of Aulacomnium heterostichum in Japan." Bryologist 94, no. 1 (1991): 67. http://dx.doi.org/10.2307/3243723.

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3

Baimuratov, Rashid A., Maksim G. Napreenko, and Arina A. Shangina. "ELEMENT ACCUMULATION IN BRYOPHYTES IN PEATLAND ECOSYSTEMS OF THE KALININGRAD REGION, RUSSIA." IKBFU's Vestnik. Series: Natural and Medical Sciences, no. 1 (2025): 58–70. https://doi.org/10.5922/vestniknat-2025-1-4.

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The results of studying the accumulation capabilities of mosses in two peatland ecosystems with different levels of disturbance in the Kaliningrad region—on the Bolshoye bog and the Wittgiren peatland—are presented. The study focused on widely distributed species of mosses: Aulacomnium palustre, Polytrichum strictum, Sphagnum centrale, S. cuspidatum, S. fuscum, S. magellanicum, and S. squarrosum, as well as the reference species Pleurozium schreberi. Using X-ray fluorescence spectroscopy, the content of eight macro- and microelements (Mn, Zn, Ni, Fe, Br, Rb, Sr, and Ca) was determined. Statist
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4

Boiko, M. F., V. M. Ovsienko, and S. V. Skrebovska. "Molecular genetic studies of the moss Aulacomnium arenopaludosum." Ukrainian Botanical Journal 73, no. 3 (2016): 255–61. http://dx.doi.org/10.15407/ukrbotj73.03.255.

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5

Kurbatova, L. E. "Mosses of the vicinities of Portovaya Bay, the Gulf of Finland, Baltic Sea (Leningrad Region, Russia)." Novosti sistematiki nizshikh rastenii 42 (2008): 277–87. http://dx.doi.org/10.31111/nsnr/2008.42.277.

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104 moss species were found in the vicinities of Portovaya Bay of the Gulf of Finland. The annotated list of species includes information on habitats, substrate and sporophyte production for every species. The peculiarities of moss flora are considered. One of the recorded species — Aulacomnium androgynum — is rare and protected in Russia.
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6

Tęczyńska-Kamecka, Ewa. "Biomass increment in mosses on the example of Aulacomnium palustre (Hedw.) Schwaegr." Acta Societatis Botanicorum Poloniae 43, no. 3 (2015): 293–305. http://dx.doi.org/10.5586/asbp.1974.028.

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The biomass increment of the moss <i>Aulacomnium palustre</i> growing on two meadows of the Kampinos National Park was studied. The state of the biomass and production in g/m<sup>2</sup> were compared on two different sites in two successive vegetation seasons.
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7

Lepiarz-Wittner, E. "Moss regeneration on the example of Aulacomnium palustre (Hedw.) Schwaegr." Acta Societatis Botanicorum Poloniae 44, no. 3 (2015): 407–13. http://dx.doi.org/10.5586/asbp.1975.036.

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The developmental dynamics of <i>Aulacomnium palustre</i> populations finds its reflection in vegetative reproduction and regeneration. Leaves detached from the shoot form two kinds of protonemata - chloronema and caulonema, on which the gametophotre develops. Most active in the process of regeneration is the basal part of the leaves. Increased light intensity speeds up regeneration.
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8

Ravera, Sonia, Marta Puglisi, Alfredo Vizzini, et al. "Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 11." Italian Botanist 11 (April 7, 2021): 45–61. http://dx.doi.org/10.3897/italianbotanist.11.64557.

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In this contribution, new data concerning bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte genera Aneura, Aulacomnium, Dumortiera, Fossombronia, Hennediella, Hygrohypnella, Pohlia, Porella, Riccardia, Tortella, and Tortula, the fungal genera Cortinarius, Mycena, Naucoria, Trichoglossum, and Tubaria and the lichen genera Agonimia, Blastenia, Chaenotheca, Cladonia, Endocarpon, Gyalecta, Lecanographa, Parmeliella, Porpidia, Stenhammarella, and Thelidium.
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9

Ravera, Sonia, Marta Puglisi, Alfredo Vizzini, et al. "Notulae to the Italian flora of algae, bryophytes, fungi and lichens: 11." Italian Botanist 11 (April 7, 2021): 45–61. https://doi.org/10.3897/italianbotanist.11.64557.

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In this contribution, new data concerning bryophytes, fungi, and lichens of the Italian flora are presented. It includes new records and confirmations for the bryophyte genera Aneura, Aulacomnium, Dumortiera, Fossombronia, Hennediella, Hygrohypnella, Pohlia, Porella, Riccardia, Tortella, and Tortula, the fungal genera Cortinarius, Mycena, Naucoria, Trichoglossum, and Tubaria and the lichen genera Agonimia, Blastenia, Chaenotheca, Cladonia, Endocarpon, Gyalecta, Lecanographa, Parmeliella, Porpidia, Stenhammarella, and Thelidium.
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10

Leushina, E. G. "Mosses of Vyborgsky Sanctuary (Leningrad Region)." Novosti sistematiki nizshikh rastenii 46 (2012): 279–97. http://dx.doi.org/10.31111/nsnr/2012.46.279.

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Vyborgsky Sanctuary occupies the coastal zone of the Gulf of Finland and Vyborg Bay, the northern part of the Kiperort Peninsula, Lisy Island and about 40 adjacent small islands. The annotated list of 171 moss species and brief analysis of the moss flora are provided. Aulacomnium androgynum (Hedw.) Schwagr. is included in The Red Data Book of Russia (2008), Ulota drummondii (Hook. et Grev.) Brid. is new for the Leningrad Region and 9 species are protected in the Leningrad Region.
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11

Kang, Pilsung, Sung Mi Cho, Jungeun Lee, Joung Han Yim, Jun Hyuck Lee, and Hyoungseok Lee. "The complete mitogenome of the Arctic moss Aulacomnium turgidum (Wahlenb.) Schwaegr." Mitochondrial DNA Part B 4, no. 2 (2019): 3446–47. http://dx.doi.org/10.1080/23802359.2019.1674204.

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12

Hahn, Hannelore, Tassilo Seeger, Hans Geiger, Hans Dietmar Zinsmeister, Kenneth R. Markham, and Herbert Wong. "The first biaurone, a triflavone and biflavonoids from two Aulacomnium species." Phytochemistry 40, no. 2 (1995): 573–76. http://dx.doi.org/10.1016/0031-9422(95)00340-d.

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13

Doroshina, G. Ya, E. G. Ginzburg, and L. E. Kurbatova. "Mosses of the State Nature Reserve "Kurgalskiy" (Leningrad Region)." Novosti sistematiki nizshikh rastenii 53, no. 2 (2019): 369–84. http://dx.doi.org/10.31111/nsnr/2019.53.2.369.

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The paper provides the data on mosses of the State Nature Reserve ”Kurgalskiy” situated in the Kingisepp District of the Leningrad Region. The list includes 136 species. Among them Plagiothecium nemorale is new for the Leningrad Region, 83 species are recorded for the first time for the protected area, 12 species are protected in the region, Aulacomnium androgynum is protected in Russia. Of the protected species, Plagiothecium latebricola is recorded for the first time for the protected area. Data on habitats, substrates and frequency of every species are provided.
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14

Darigo, Carl, and Bruce H. Allen. "Aulacomnium androgynum excluded from Missouri and the Interior Highlands of North America." Evansia 20, no. 1 (2003): 10. http://dx.doi.org/10.5962/p.346563.

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15

Imu, Ulviani Cerlina, Andi Bida Purnamasari, and Alin Liana. "Identifikasi Tumbuhan Lumut di Kawasan Wisata Taman Nasional Bantimurung." bionature 20, no. 2 (2019): 147. http://dx.doi.org/10.35580/bionature.v20i2.11288.

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Abstract. This study aims to determine the types of mosses found in the Bantimurung National Park Tourism Area, especially on the riverbank sites to the entrance of Batu Caves. This research was conducted in June-August 2018. Exploration and collection of specimens was carried out using the roaming method. The specimens obtained were identified using a plant identification book. The results of this study indicate that there are five species of mosses found in the Bantimurung National Park Tourism Area, namely: Thuidium sp., Polytricum Commune, Aulacomnium palustre, Orthotrichum sp., And Ectrop
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16

HAHN, H., T. SEEGER, H. GEIGER, H. D. ZINSMEISTER, K. R. MARKHAM, and H. WONG. "ChemInform Abstract: The First Biaurone, a Triflavone and Biflavonoids from Two Aulacomnium species." ChemInform 27, no. 3 (2010): no. http://dx.doi.org/10.1002/chin.199603247.

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17

Czarnowska, K., and I. Rejmont-Grochowska. "Concentration of heavy metals - iron, manganese, zinc and copper in mosses." Acta Societatis Botanicorum Poloniae 43, no. 1 (2015): 39–44. http://dx.doi.org/10.5586/asbp.1974.004.

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The iron content in gametophytes of <i>Aulacomnium palustre. Climacium dendroides, Catharinea undulata</i> is 5—10 times higher than in vascular plants. The manganese, zine and copper content is 2-3 times higher than in vascular plants. The content of these elements in sporophytes of <i>Catharinea undulata</i> is approximately the same as in vascular plants. The accumulation of the investigated metals takes place mainly in the protoplasts of the chlorophyll cells of gametophyte leaves. A weakly acid pH of the medium favors accumulation. No distinct difference was found
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18

АФОНИНА, О. М., Ю. С. МАМОНТОВ та И. В. ЧЕРНЯДЬЕВА. "НОВЫЕ И РЕДКИЕ ВИДЫ ПЕЧЕНОЧНИКОВ И МХОВ ДЛЯ ЗАБАЙКАЛЬСКОГО КРАЯ, "БОТАНИЧЕСКИЙ ЖУРНАЛ"". Ботанический журнал, № 11 (2013): 1427–40. http://dx.doi.org/10.1134/s1234567813110074.

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Впервые для флоры мохообразных Забайкальского края приводятся 26 видов мхов и 11 видов печеночников; из них впервые для Сибири — Lejeunea alaskana, Leptopterigynandrum austro-alpinum и Porella fauriei, впервые выявлены для Южной Сибири виды Ditrichum gracile, Grimmia torquata, Marsupella arctica и Scapania simmonsii. Для редких в Забайкалье 6 видов мхов и 6 видов печеночников, указываются новые местонахождения. Особый интерес представляют находки таких редких видов, как Barbula amplexifolia и Tetralophozia filiformis (находка каждого из них в Забайкальском крае является четвертой в России), и
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19

Liu, Shenghao, Hyoungseok Lee, Pil-Sung Kang, et al. "Complementary DNA library construction and expressed sequence tag analysis of an Arctic moss, Aulacomnium turgidum." Polar Biology 33, no. 5 (2009): 617–26. http://dx.doi.org/10.1007/s00300-009-0737-8.

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20

Mashtaler, Alexandra. "Morphological Variability of Aulacomnium palustre (Hedw.) Schwaegr. (Aulacomniaceae, Bryopsida) in Human Transformed Environment of South-Eastern Ukraine." Chornomorski Botanical Journal 2, no. 1 (2006): 79–86. http://dx.doi.org/10.14255/2308-9628/06.21/5.

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21

Vandamme, Peter, Katja Opelt, Nadine Knöchel, et al. "Burkholderia bryophila sp. nov. and Burkholderia megapolitana sp. nov., moss-associated species with antifungal and plant-growth-promoting properties." International Journal of Systematic and Evolutionary Microbiology 57, no. 10 (2007): 2228–35. http://dx.doi.org/10.1099/ijs.0.65142-0.

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A polyphasic taxonomic study including DNA–DNA reassociation experiments and an extensive biochemical characterization was performed on 14 Burkholderia isolates from moss gametophytes of nutrient-poor plant communities on the southern Baltic Sea coast in northern Germany. The strains were classified within two novel species, for which the names Burkholderia bryophila sp. nov. and Burkholderia megapolitana sp. nov. are proposed. The former species also includes isolates from grassland and agricultural soil collected in previous studies. Strains Burkholderia bryophila 1S18T (=LMG 23644T =CCUG 52
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22

Boiko, Mikhail. "Aulacomnium аrenopaludosum Boiko sp. nov. (Bryopsida, Aulacomniaceae) – a new moss species from steppe zone of Ukraine". Chornomorski Botanical Journal 6, № 1 (2010): 95–101. http://dx.doi.org/10.14255/2308-9628/10.61/9.

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23

Mulligan, Roisín C., and L. Dennis Gignac. "Bryophyte community structure in a boreal poor fen II: interspecific competition among five mosses." Canadian Journal of Botany 80, no. 4 (2002): 330–39. http://dx.doi.org/10.1139/b02-014.

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A possible competitive hierarchy among five boreal bryophytes (Sphagnum angustifolium, Sphagnum fuscum, Sphagnum magellanicum, Ptilium crista-castrensis, and Pleurozium schreberi) was examined in a 2-year transplant experiment conducted in two habitats of a poor fen in northern Alberta, Canada, using a sixth moss (Aulacomnium palustre) as a phytometer. Change in relative growth rate in length and weight of A. palustre, measured as competitive effect, indicated the existence of a hierarchy in this peatland wherein the feather mosses are subordinates to the Sphagnum mosses. Relative competitive
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24

Kirillova, Irina V., Olga F. Chernova, Jan van der Made, et al. "Discovery of the skull ofStephanorhinus kirchbergensis(Jäger, 1839) above the Arctic Circle." Quaternary Research 88, no. 3 (2017): 537–50. http://dx.doi.org/10.1017/qua.2017.53.

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AbstractThe skull of the extinct rhinocerosStephanorhinus kirchbergensis(Jäger, 1839) was discovered in the Chondon River valley (Arctic Yakutia, Russia) during the summer of 2014. This is the first find ofStephanorhinusabove the Arctic Circle, expanding significantly the known geographic range of the genus.14C dating and geologic evidence indicate that the skull dates to between 48,000 and 70,000 yr, corresponding to Marine Oxygen Isotope Stage 4/3. It is thus among the latest records of this species. To explore the evolutionary and natural history of this relatively unknown animal, we perfor
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25

Sadygov, R., and L. Felbaba-Klushyna. "GLACIAL RELICT OF TOMENTHYPNUM NITENS (HEDW.) LOESKE (AMBLYSTEGIACEAE) IN THE UKRAINIAN CARPATHIANS: DISTRIBUTION AND PHYTOCOENOTIC TIMING." BIOLOGY & ECOLOGY 8, no. 1 (2022): 48–52. http://dx.doi.org/10.33989/2022.8.1.275396.

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We found that within the Ukrainian Carpathians Tomenthypnum nitens is a regionally rare species with a narrow ecological amplitude. The article provides a map of the current distribution of the species within the Ukrainian Carpathians, taking into account new findings. T. nitens was found exclusively on meso- and eutrophic bogs in the communities of three associations of the Scheuchzerio palustris-Caricetea fuscae class: ass. Caricetum davallianae Dutoit 1924, ass. Carici flavae-Eriophoretum latifoliae Soό 1944, which belong to the order Caricetalia davallianae, as well as ass. Caricetum nigra
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26

Lavrinenko, O. V., N. V. Matveyeva, and I. A. Lavrinenko. "Dryas fell-fields in the East of the European part of the Russian Arctic." Vegetation of Russia, no. 24 (2014): 24–62. http://dx.doi.org/10.31111/vegrus/2014.24.38.

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Communities with Dryas octopetala dominance are rather rare in the East European North. Some of these occupying zonal positions on watersheds within the typical tundra subzone are described in the tradition of the dominant approach at the Vangurey Upland in the northern part of Bolshezemelskaya tundra (Andreev, 1932), the highest moraine elevations in the northern parts of Malozemelskaya tundra (Dedov, 2006) and at the Kolguev Isl. (Bogdanovskaya-Gienef, 1938; Smirnova, 1938). Besides Dryas octopetala abundant species in these stands are willows Salix glauca, S. hastata, S. polaris, S. reticul
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27

Opelt, Katja, and Gabriele Berg. "Diversity and Antagonistic Potential of Bacteria Associated with Bryophytes from Nutrient-Poor Habitats of the Baltic Sea Coast." Applied and Environmental Microbiology 70, no. 11 (2004): 6569–79. http://dx.doi.org/10.1128/aem.70.11.6569-6579.2004.

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ABSTRACT Very little is known about the interaction of bryophytes with bacteria. Therefore, we analyzed bacteria associated with three bryophyte species, Tortula ruralis, Aulacomnium palustre, and Sphagnum rubellum, which represent typical moss species of three nutrient-poor plant communities at the southern Baltic Sea coast in Germany. By use of two cultivation-independent techniques, denaturing gradient gel electrophoresis and single-strand conformation polymorphism analysis of the 16S ribosomal DNA, a high degree of moss specificity was found for associated bacterial communities. This speci
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28

Bauer, Ilka E., Diana Tirlea, Jagtar S. Bhatti, and Ruth C. Errington. "Environmental and biotic controls on bryophyte productivity along forest to peatland ecotones." Canadian Journal of Botany 85, no. 5 (2007): 463–75. http://dx.doi.org/10.1139/b07-045.

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Bryophyte growth and production can be critical measurements in quantifying carbon input into peatlands. For any species, total biomass produced in a given year is determined by three main factors: abundance of the species, bulk density, and annual (length) increment. We examined the relationship of these parameters to environmental factors (water table depth, tree canopy cover) and biotic interactions (presence of other species) in seven common peatland bryophytes. Correlations suggest that bulk density changed in response to environmental variation in Sphagnum angustifolium (C. Jens. ex Russ
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29

Kang, Pilsung, Yo-Han Yoo, Dong-Il Kim, Joung Han Yim, and Hyoungseok Lee. "De Novo Transcriptome Assembly and Comparative Analysis of Differentially Expressed Genes Involved in Cold Acclimation and Freezing Tolerance of the Arctic Moss Aulacomnium turgidum (Wahlenb.) Schwaegr." Plants 12, no. 6 (2023): 1250. http://dx.doi.org/10.3390/plants12061250.

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Cold acclimation refers to a phenomenon in which plants become more tolerant to freezing after exposure to non-lethal low temperatures. Aulacomnium turgidum (Wahlenb.) Schwaegr is a moss found in the Arctic that can be used to study the freezing tolerance of bryophytes. To improve our understanding of the cold acclimation effect on the freezing tolerance of A. turgidum, we compared the electrolyte leakage of protonema grown at 25 °C (non-acclimation; NA) and at 4 °C (cold acclimation; CA). Freezing damage was significantly lower in CA plants frozen at −12 °C (CA-12) than in NA plants frozen at
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30

Kholod, S. S., and O. M. Afonina. "MOSSES OF THE WESTERN PART OF THE CHUKCHI HIGHLANDS. 1. DISTRIBUTION BY HABITAT TYPES, AND ACTIVITY OF SPECIES." Ботанический журнал 108, no. 3 (2023): 183–209. http://dx.doi.org/10.31857/s0006813623030055.

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The analysis of the distribution of mosses in the landscape of the western part of the Chukchi Highlands served as the basis for distinguishing 12 types of habitats, which differ in a number of abiotic (altitude above sea level, slope exposure, steepness, degree of surface moisture) and biotic (composition of dominant species, cover of mosses and vascular plants, percentage of ground area free of vegetation) parameters. The vast majority of habitat types are the slopes of various steepness (including accumulative slopes – plumes with runoff hollows), which are characterized by active movement
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31

Pisarenko, O. Yu. "MOSSES OF FOREST SWAMPS IN THE SOUTHERN WEST SIBERIA." Ботанический журнал 108, no. 7 (2023): 641–55. http://dx.doi.org/10.31857/s0006813623070049.

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Long-term bryological research in birch and spruce forest swamps in the southern periphery of West Siberia are resulted in summary list of 133 moss species. Constancy and ecological features are given for all the species; some examples are discussed. It is shown that birch and spruce forest swamps (background and rare types of communities for the study area), are approximately equal in the diversity of moss species, and 60% of the recorded species were found in both types of communities. On the latitudinal gradient from north to south, the number of moss species in the forest swamps of the sou
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32

Churchill, Steven P. "BRYOLOGIA NOVO GRANATENSIS. ESTUDIOS DE LOS MUSGOS DE COLOMBIA IV. CATALOGO NUEVO DE LOS MUSGOS DE COLOMBIA." Bryophyte Diversity and Evolution 1, no. 1 (1989): 95–133. http://dx.doi.org/10.11646/bde.1.1.9.

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A revised moss checklist for Colombia recognizes 877 species distributed among 242 genera and 65 families. Departmental distribution is provided for all species. This paper is based on the previous checklist by Florschütz-de Waard & Florschütz (1979), publications since that time, on the extensive holdings of the New York Botanical Garden, the Institute of Systematic Botany, Utrecht, and other herbaria, and on recent field work. Included in this list are a number of the collections made by Aguirre C., Cleef, Griffin, Killip, Schultes, Steere, van der Hammen and van Reenen, among others, wh
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33

Churchill, Steven P. "BRYOLOGIA NOVO GRANATENSIS. ESTUDIOS DE LOS MUSGOS DE COLOMBIA IV. CATALOGO NUEVO DE LOS MUSGOS DE COLOMBIA." Bryophyte Diversity and Evolution 13, no. 1 (1997): 95–133. http://dx.doi.org/10.11646/bde.13.1.13.

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A revised moss checklist for Colombia recognizes 877 species distributed among 242 genera and 65 families. Departmental distribution is provided for all species. This paper is based on the previous checklist by Florschütz-de Waard & Florschütz (1979), publications since that time, on the extensive holdings of the New York Botanical Garden, the Institute of Systematic Botany, Utrecht, and other herbaria, and on recent field work. Included in this list are a number of the collections made by Aguirre C., Cleef, Griffin, Killip, Schultes, Steere, van der Hammen and van Reenen, among others, wh
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34

Fudali, Ewa. "The ecological structure of the bryoflora of Wroclaw's parks and cemeteries in relation to their localization and origin." Acta Societatis Botanicorum Poloniae 70, no. 3 (2014): 229–35. http://dx.doi.org/10.5586/asbp.2001.030.

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The ecological structure of the flora of 81 bryophytes found in 22 town parks and 6 cemeteries situated within the borders of the Wrocław town has been analyzed in relation to the localization of objects (within the center of the town and its suburbs) and their origin (parks set up in the place of ruins, those built on the site of old cemeteries, objects established within former forests, and parks set up in open, previously rural areas, often as gardens of mansions). In general estimation, the bryoflora of parks and cemeteries appears to be rather ecologically highly specializated - more than
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35

Lavrinenko, O. V., and I. A. Lavrinenko. "Communities with shrub willows in typical tundra subzone in the East European sector of the Arctic." Vegetation of Russia, no. 41 (2021): 75–112. http://dx.doi.org/10.31111/vegrus/2021.41.75.

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Outside the Russian Arctic, the floristic classification of willow scrub was carried out in Norway (Nordhagen, 1943), Greenland (Daniёls, 1982; Sieg et al., 2006), and Alaska (Cooper, 1986, 1989; Walker et al., 1994; Schickhoff et al., 2002). In the Russian Arctic, willow communities are most fully studied in Chukotka and Wrangel Isl. (Sekretareva, 1990, 1991, 1992, 1995, 2003, 2006; Sinelnikova, 2001); several associations are described in the Siberian Arctic (Zanokha, 2003; Telyatnikov et al., 2014, 2015), on the Kola Peninsula (Koroleva, 2006, 2014), while such studies have just begun in th
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36

Likhanova, I. A., E. M. Perminova, G. S. Shushpannikova, G. V. Zheleznova, T. N. Pystina, and Yu V. Kholopov. "Dynamics of vegetation after clearcutting bilberry spruce forests (middle taiga subzone of the European North-East of Russia)." Vegetation of Russia, no. 40 (2021): 108–36. http://dx.doi.org/10.31111/vegrus/2021.40.108.

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The communities of middle taiga spruce forests (ass. Linnaeo borealis–Piceetum abietis dryopteridetosum var. typica) and secondary communities formed after winter clearcuttings are described (Fig. 1) and classified according Braun-Blanquet (1964) approach using 81 relevés. Ellenberg ecological values (Ellenberg et al., 1991) were used to assess lighting (L), soil moisture (F), acidity (R) and nitrogen (N). The ordination was carried out using the NMS method. Both primary forest and secondary communities are classified as the alliance Piceion excelsae Pawłowskiet al. 1928 within the order Picee
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37

Matveyeva, N. V., L. L. Zanokha, and Z. A. Yanchenko. "Vegetation of the Tareya (Western Taymyr): forty years later." Environmental Dynamics and Global Climate Change 15, no. 3 (2024): 133–88. https://doi.org/10.18822/edgcc641772.

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The tiny fishing settlement of Tareya (73.253389° N, 90.596806° W) on the right bank of the river Pyasina (Fig. 1, this and others see in text) in its middle reaches (Western Taymyr) is well known in the circumpolar scientific community due to the long-term Biogeocenological field station of the Komarov Botanical Institute of the Academy of Sciences of the USSR, which operated in 1965-1977. A huge amount of complex researches has been done by numerous scientists, and the results were published in a lot of proceedings, reports at the Arctic conferences, and papers published in various journals,
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Matveyeva, N. V. "Association Dicranoweisio-Deschampsietum ass. nov. in cold desert belt of Putorana plateau (Srednesibirskoe plateau)." Vegetation of Russia, no. 3 (2002): 32–41. http://dx.doi.org/10.31111/vegrus/2002.03.32.

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New association Dicranoweisio-Deschampsietum ass. nov. with 2 variants within the class Salicetea herbaceae Br.-Bl. 1947 is described for the cold desert belt of the Putorana plateau (Srednesibirskoe plateau). Its species composition represents the combination of species charac­ter for both the snow beds in the northern part of Taymyr peninsula (ass. Deschampsio-Cerastietum regelii Mat­veye­va 1994) and zonal vegetation of the polar deserts (асс. Aulacomnio-Deschampsietum prov., unpublished author’s data) on Bolshevik Isl. (Severnaya Zemlya Archipelago) with common dominating tufted grass De­s
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39

Lavrinenko, O. V., and I. A. Lavrinenko. "Zonal vegetation of the plain East European tundras." Vegetation of Russia, no. 32 (2018): 35–108. http://dx.doi.org/10.31111/vegrus/2018.32.35.

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Zonal tundra vegetation occupies slightly sloped watershed surfaces, weakly convex tops and gentle slopes of moraine hills and ridges with moderate snow cover and loamy soils (plakors). Environmental conditions of such sites are most relevant to macroclimate (Aleksandrova, 1971; Matveyeva, 1998). For the East European sector of the Arctic this vegetation was described in 30–70 years of last century by the Soviet geobotanists V. D. Aleksandrova (1956), ­ V. N. Andreyev (1932), I. D. Bogdanovskaya-Giye­nef (1938), A. A. Dedov (2006), A. E. Katenin (1972), Z. N. Smirnova (1938), who, following th
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40

Ermakov, N. B. "Classification of boreal larch forests of the continental sector of Northern Eurasia (Conspectus of Syntaxa)." Plant Biology and Horticulture: theory, innovation, no. 149 (December 10, 2019): 78–95. http://dx.doi.org/10.36305/0201-7997-2019-149-78-95.

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The analysis of modern state of boreal larch forests in their main part of range placed in continental bioclimatic sector of Northern Eurasia (Siberia and continental part of Russian Far East) was performed. Conspectus of larch forests syntaxa was developed and it includes one class - Vaccinio myrtilli-Piceetea abietis Br.-Bl. in Braun-Blanquet et al. 1939, one subclass - Laricenea cajanderi-sibiricae subclass nova hoc loco, two orders - Ledo-Laricetalia cajanderi Ermakov in Ermakov et Alsynbayev 2004, Lathyro humilis-Laricetalia cajanderi Ermakov, Cherosov et Gogoleva 2002, six alliances - Le
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41

Kasprowicz, Marek. "Acidophilous oak forests of the Wielkopolska region (West Poland) against the background of Central Europe." Biodiversity: Research and Conservation 20, no. 1 (2010): 1–212. http://dx.doi.org/10.2478/v10119-010-0012-4.

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Acidophilous oak forests of the Wielkopolska region (West Poland) against the background of Central EuropeThis monograph gives the phytosociological characteristics of acidophilous oak forests from the classQuercetea robori-petraeae(Aulacomnio androgyni-Quercetum, Molinio caeruleae-Quercetum, andCalamagrostio arundinaceae-Quercetum) and the closely related forest communities from the classesQuerco-Fagetea(Potentillo albae-Quercetumand acidophilous forms ofGalio sylvatici-Carpinetum) andVaccinio-Piceetea(Querco roboris-PinetumandSerratulo-Pinetum) in the Wielkopolska region and adjacent areas.
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42

Matveyeva, N. V., and O. V. Lavrinenko. "The checklist of the syntaxa within the Russian Arctic: current state with vegetation classification." Vegetation of Russia, no. 42 (2021): 3–41. http://dx.doi.org/10.31111/vegrus/2021.42.3.

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Introduction. A revision of syntaxa was carried out within the framework of the classification of the Brown-Blanquet school identified in the Russian Arctic. A geodatabase (GDB) and GIS, which include several interconnected main modules (see: Matveyeva et al., 2019a, b), with information on species composition, structure, ecology, and geography of syntaxa of all levels, integrated in these databases, became the basis of the presented checklist. This is the first result of compiling information on the vegetation classification, performed with the prospect to produce Prodromus of syntaxa, identi
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Lavrinenko, O. V., and A. G. Kochergina. "New associations and higher syntaxa of willow scrubs in the East European sector of the Arctic." Vegetation of Russia, no. 44 (2022): 97–135. http://dx.doi.org/10.31111/vegrus/2022.44.97.

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Relevés of communities (94 in total) with shrub willows — Salix glauca, S. lanata, S. phylicifolia, and tree-like willows — S. viminalis, S. dasyclados were made in the Bolshezemelskaya tundra (11 sites, Fig. 1). Six new associations and one community type are described in 2 alliances — Polemonio acutiflorum–Salicion glaucae Lavrinenko et Lavrinenko 2021 and Galio borealis–Salicion viminalis all. nov. (Tables 1–4). The alliance Polemonio acutiflorum–Salicion glaucae unites herb and herb-moss willow scrubs (predominantly with Salix glauca, S. lanata) in lakeside depressions, runoff troughs, the
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44

Kholod, S. S. "Vegetation in the vicinity of Cape Zhelaniya (Severnyy Island of Novaya Zemlya archipelago)." Vegetation of Russia, no. 38 (July 2020): 85–138. http://dx.doi.org/10.31111/vegrus/2020.38.85.

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The results of the study of vegetation of the extreme northern point of the Novaya Zemlya archipe­lago, the vicinity of Cape Zhelaniya, which belongs to the southern variant of the polar desert zone, are represented. On the basis of 150 relevés, 20 syntaxa of the floristic classification of the several ranks (6 associations, 1 community type, 4 subassociations, 9 variants) were identified. Zonal vegetation belongs to the ass. Saxifrago oppositifoliae–Cerastietum regelii ass nov. hoc loco (Table 1, nomenclature type (holotypus hoc loco) — relevé 12; field number 68, Novaya Zemlya archipe­lago,
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Matveyeva, N. V. "How the errors in the process of vegetation analysis in the field and the data processing affect the results of classification (with arctic communities as an example)." Vegetation of Russia, no. 38 (July 2020): 139–50. http://dx.doi.org/10.31111/vegrus/2020.38.139.

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A list of species with an access of their “amount” (number of individuals, true/projective cover, biomass) on a plot of a standard size is the information that is necessary for an objective classification of plant communities, no matter what principles it is based on. Information on species composition, the variation both in their “amount” and constancy in the pool of geobotanical relevés is the basis for their clustering and the delimitation of syntaxonomical units. The only possible documents recording this information are geobotanical relevés, both published in the open press and stored in
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46

Baymuratov, Rashid, Maksim Napreenko, and Yuliya Koroleva. "Accumulation Characteristics of Bryophytes in Abandoned Disturbed Peatlands: A Case Study From the Kaliningrad Region, Russia." Russian Journal of Earth Sciences, September 27, 2023, 1–19. http://dx.doi.org/10.2205/2023es000873.

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The paper provides original data on accumulation capabilities of bryophytes typical of peatland ecosystems with different degree of anthropogenic transformation occurring in the Kaliningrad Region of Russia. A key study area was the Vittgirrensky Peatland, abandoned after milled peat extraction in 1990s and designated as the Rossyanka Carbon Measurement Supersite in 2021. The accumulation of micro- and macroelements: Ca, Mn, Fe, Ni, Zn, Br, Rb, and Sr – was identified by means of X-ray fluorescence spectroscopy in 13 bryophyte species (Aulacomnium palustre, Campylopus introflexus, Polytrichum
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47

Zeng, Yuying, Yuqing Cai, Xuping Zhou, et al. "Chromosome-level genomes of Arctic and Antarctic mosses: Aulacomnium turgidum and Polytrichastrum alpinum." Scientific Data 12, no. 1 (2025). https://doi.org/10.1038/s41597-025-04960-7.

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48

Jabłońska, Ewa, Wiktor Kotowski, and Nadejda A. Soudzilovskaia. "Desiccation Avoidance and Hummock Formation Traits of rich fen Bryophytes." Wetlands 43, no. 3 (2023). http://dx.doi.org/10.1007/s13157-023-01669-4.

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AbstractThe aim of this study was to understand the variation in traits relevant for desiccation avoidance among bryophyte species dominant in rich fens and to assess whether these traits explain the formation of a hummock-hollow gradient within peatlands. In samples of 10 species (Aulacomnium palustre, Calliergonella cuspidata, Climacium dendroides, Hamatocaulis vernicosus, Helodium blandowii, Marchantia polymorpha, Plagiomnium ellipticum, Sphagnum teres, S. warnstorfii, Tomentypnum nitens) collected in rich fens of NE Poland, we calculated: canopy bulk density of wet (CDW) and dry (CDD) colo
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49

Wolski, Grzegorz J., Zbigniew Sobisz, Józef Mitka, Andrzej Kruk, Ilona Jukonienė, and Agnieszka Popiela. "Vascular plants and mosses as bioindicators of variability of the coastal pine forest (Empetro nigri-Pinetum)." Scientific Reports 14, no. 1 (2024). http://dx.doi.org/10.1038/s41598-023-50189-y.

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AbstractEmpetro nigri-Pinetum is a unique sea coast plant community developing along the Baltic Sea from Germany to Lithuania. Our detailed field research of bryophytes and vascular plants has highlighted the regional diversity of the Empetro nigri-Pinetum typicum plant community throughout its range in Central Europe. Our study indicated that vascular plants and mosses effectively discriminate against the described phytocoenoses, thus it was possible to distinguish three variants of the coastal forest: Calluna–Deschampsia (from Germany), Vaccinium vitis–idaea (from Poland) and Melampyrum–Desc
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50

Lavrinenko, Olga Vasilevna, and Igor Anatolievich Lavrinenko. "Twenty-one year dynamics of vegetation from long-term plots in East European tundra." Environmental Dynamics and Global Climate Change 13, no. 2 (2022). http://dx.doi.org/10.18822/edgcc109513.

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The results of vegetation monitoring from 1999 to 2020 on 12 plots laid out in different types of communities on Cape Bolvansky Nos in the northwest of the Bolshezemelskaya tundra are presented (Fig. 1). The area is located on the border between the southern and typical tundra subzones.
 On five long-term plots with clay-loam patches of bare ground sparse shrubby willowsedge-dwarf shrub-moss tundra were formed. They belong to zonal vegetation ass. Dryado octopetalaeHylocomietum splendentis Andreev 1932 subass.caricetosum capillaris Lavrinenko et Lavrinenko 2018 (Table 1) in the class Cari
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