Diversity and species associations in cryptogam communities along a pedoenvironmental gradient on Elephant Island, Maritime Antarctica
The Maritime Antarctica region has terrestrial ecosystems dominated by lichens and mosses, representing important ecological indicators of climate change. However, little is known about environmental factors that shape regional cryptogam communities at local scale. In this study we analyse changes i...
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Published in | Folia geobotanica Vol. 55; no. 3; pp. 211 - 224 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Dordrecht
Springer Science + Business Media
01.09.2020
Springer Netherlands |
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Abstract | The Maritime Antarctica region has terrestrial ecosystems dominated by lichens and mosses, representing important ecological indicators of climate change. However, little is known about environmental factors that shape regional cryptogam communities at local scale. In this study we analyse changes in species richness, species composition and coverage of representative cryptogam communities across a pedoenvironmental gradient in Maritime Antarctica. We hypothesized that soil texture and chemical properties shape variations in species richness and composition. We selected fifteen different pedoenvironments, where 20 plots (20 × 20 cm) were sampled for obtaining phytosociological parameters of cryptogamous communities, and in each plot a composite topsoil sample was collected to determine chemical and physical soil properties. We then evaluated the main effects of soil attributes on the richness and composition of cryptogam species using direct gradient analysis and linear models. The ecological value of species was determined, allowing to identify the type of plant community and species associations in each pedoenvironment. Differences in species composition, richness and coverage were detected along the pedoenvironmental gradient. The model analysis showed that soil fertility has significant effects on species composition, but not on species richness. Based on gradient analysis, variability on soil fertility and nutrient contents were important pedoenvironmental filters for cryptogam communities in Maritime Antarctica. This study reveals that small-scale heterogeneity contributes to specific associations along pedoenvironmental gradients. We conclude that soil attributes drive the composition pattern of cryptogam species and also the type of communities present. |
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AbstractList | The Maritime Antarctica region has terrestrial ecosystems dominated by lichens and mosses, representing important ecological indicators of climate change. However, little is known about environmental factors that shape regional cryptogam communities at local scale. In this study we analyse changes in species richness, species composition and coverage of representative cryptogam communities across a pedoenvironmental gradient in Maritime Antarctica. We hypothesized that soil texture and chemical properties shape variations in species richness and composition. We selected fifteen different pedoenvironments, where 20 plots (20 × 20 cm) were sampled for obtaining phytosociological parameters of cryptogamous communities, and in each plot a composite topsoil sample was collected to determine chemical and physical soil properties. We then evaluated the main effects of soil attributes on the richness and composition of cryptogam species using direct gradient analysis and linear models. The ecological value of species was determined, allowing to identify the type of plant community and species associations in each pedoenvironment. Differences in species composition, richness and coverage were detected along the pedoenvironmental gradient. The model analysis showed that soil fertility has significant effects on species composition, but not on species richness. Based on gradient analysis, variability on soil fertility and nutrient contents were important pedoenvironmental filters for cryptogam communities in Maritime Antarctica. This study reveals that small-scale heterogeneity contributes to specific associations along pedoenvironmental gradients. We conclude that soil attributes drive the composition pattern of cryptogam species and also the type of communities present. The Maritime Antarctica region has terrestrial ecosystems dominated by lichens and mosses, representing important ecological indicators of climate change. However, little is known about environmental factors that shape regional cryptogam communities at local scale. In this study we analyse changes in species richness, species composition and coverage of representative cryptogam communities across a pedoenvironmental gradient in Maritime Antarctica. We hypothesized that soil texture and chemical properties shape variations in species richness and composition. We selected fifteen different pedoenvironments, where 20 plots (20 × 20 cm) were sampled for obtaining phytosociological parameters of cryptogamous communities, and in each plot a composite topsoil sample was collected to determine chemical and physical soil properties. We then evaluated the main effects of soil attributes on the richness and composition of cryptogam species using direct gradient analysis and linear models. The ecological value of species was determined, allowing to identify the type of plant community and species associations in each pedoenvironment. Differences in species composition, richness and coverage were detected along the pedoenvironmental gradient. The model analysis showed that soil fertility has significant effects on species composition, but not on species richness. Based on gradient analysis, variability on soil fertility and nutrient contents were important pedoenvironmental filters for cryptogam communities in Maritime Antarctica. This study reveals that small-scale heterogeneity contributes to specific associations along pedoenvironmental gradients. We conclude that soil attributes drive the composition pattern of cryptogam species and also the type of communities present. |
Author | Villa, Pedro Manuel Putzke, Jair Schmitz, Daniela Schaefer, Carlos Ernesto G. R. Campos, Prímula Viana Michel, Roberto Ferreira Machado Neto, João Augusto Alves Meira |
Author_xml | – sequence: 1 givenname: Daniela surname: Schmitz fullname: Schmitz, Daniela – sequence: 2 givenname: Pedro Manuel surname: Villa fullname: Villa, Pedro Manuel – sequence: 3 givenname: Jair surname: Putzke fullname: Putzke, Jair – sequence: 4 givenname: Roberto Ferreira Machado surname: Michel fullname: Michel, Roberto Ferreira Machado – sequence: 5 givenname: Prímula Viana surname: Campos fullname: Campos, Prímula Viana – sequence: 6 givenname: João Augusto Alves Meira surname: Neto fullname: Neto, João Augusto Alves Meira – sequence: 7 givenname: Carlos Ernesto G. R. surname: Schaefer fullname: Schaefer, Carlos Ernesto G. R. |
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CitedBy_id | crossref_primary_10_1016_j_soilbio_2021_108493 crossref_primary_10_1590_0001_3765202320230722 crossref_primary_10_1590_0001_3765202320230823 crossref_primary_10_1007_s00300_021_02944_y crossref_primary_10_1016_j_scitotenv_2022_153377 crossref_primary_10_1590_0001_3765202320230747 crossref_primary_10_1017_S0954102023000019 crossref_primary_10_1016_j_geoderma_2023_116405 crossref_primary_10_1590_0001_3765202220210597 crossref_primary_10_1016_j_catena_2023_107677 crossref_primary_10_1590_0001_3765202220210676 crossref_primary_10_1590_0001_3765202220210436 |
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Keywords | lichens mosses richness soil texture soil fertility species composition |
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SubjectTerms | Biomedical and Life Sciences Life Sciences Plant Ecology Plant Sciences Plant Systematics/Taxonomy/Biogeography |
Title | Diversity and species associations in cryptogam communities along a pedoenvironmental gradient on Elephant Island, Maritime Antarctica |
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