Floristic composition and edaphic relationships in ferruginous campo rupestre reference ecosystems

Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet. Some environments with high economic relevance, such as the ferruginous campo rupestre (rupestrian grassland known as Canga in Brazil), are even more...

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Published inJournal of mountain science Vol. 21; no. 3; pp. 719 - 733
Main Authors Fernandes, G. Wilson, Ramos, Letícia, Paiva, Dario C., Cunha-Blum, Jéssica, Gomes, Vanessa Matos, Negreiros, Daniel
Format Journal Article
LanguageEnglish
Published Heidelberg Science Press 01.03.2024
Springer Nature B.V
Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil
Laboratório de Estudo das Rela??es Solo-Planta,Departamento de Solos,Universidade Federal Rural do Rio de Janeiro,Seropédica,RG,Brazil%Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil
Knowledge Center for Biodiversity,31270-901,Belo Horizonte,MG,Brazil
Department of Biological Sciences,Institute of Environment,Florida International University,Miami,FL 33199,USA%Knowledge Center for Biodiversity,31270-901,Belo Horizonte,MG,Brazil%Department of Biological Sciences,Institute of Environment,Florida International University,Miami,FL 33199,USA%Programa de Pós Gradua??o em Biodiversidade e Uso dos Recursos Naturais,Universidade Estadual de Montes Claros,Montes Claros,MG,Brazil%Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil
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Abstract Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet. Some environments with high economic relevance, such as the ferruginous campo rupestre (rupestrian grassland known as Canga in Brazil), are even more susceptible to severe impacts due to their extreme habitat conditions and low resilience. The determination of reference ecosystems based on the intrinsic characteristics of the ecosystem is essential for conservation as well as to the implementation of ecological restoration. We proposed the reference ecosystem of the three main types of habitats of the ferruginous campo rupestre based on their floristic composition. We described the floristic composition of each habitat and evaluated the physicochemical properties of the soils and the relationship between plants and soils. All three habitats showed high diversity of plant species and many endemic species, such as Chamaecrista choriophylla, Cuphea pseudovaccinium, Lychnophora pinaster , and Vellozia subalata. The distribution of vegetation was strongly related with the edaphic characteristics, with a set of species more adapted to high concentration of base saturation, fine sand, organic carbon, and iron, while another set of species succeeded in more acidic soils with higher S and silt concentration. We provide support for the contention that the ferruginous campo rupestre is a mosaic of different habitats shaped by intrinsic local conditions. Failure to recognize the floristic composition of each particular habitat can lead to inappropriate restoration, increased habitat homogenization and increased loss of biodiversity and ecosystem services. This study also advances the knowledge base for building the reference ecosystem for the different types of ferruginous campo rupestre habitats, as well as a key database for highlighting those species contribute most to community assembly in this diverse and threatened tropical mountain ecosystem.
AbstractList Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet. Some environments with high economic relevance, such as the ferruginous campo rupestre (rupestrian grassland known as Canga in Brazil), are even more susceptible to severe impacts due to their extreme habitat conditions and low resilience. The determination of reference ecosystems based on the intrinsic characteristics of the ecosystem is essential for conservation as well as to the implementation of ecological restoration. We proposed the reference ecosystem of the three main types of habitats of the ferruginous campo rupestre based on their floristic composition. We described the floristic composition of each habitat and evaluated the physicochemical properties of the soils and the relationship between plants and soils. All three habitats showed high diversity of plant species and many endemic species, such as Chamaecrista choriophylla, Cuphea pseudovaccinium, Lychnophora pinaster , and Vellozia subalata. The distribution of vegetation was strongly related with the edaphic characteristics, with a set of species more adapted to high concentration of base saturation, fine sand, organic carbon, and iron, while another set of species succeeded in more acidic soils with higher S and silt concentration. We provide support for the contention that the ferruginous campo rupestre is a mosaic of different habitats shaped by intrinsic local conditions. Failure to recognize the floristic composition of each particular habitat can lead to inappropriate restoration, increased habitat homogenization and increased loss of biodiversity and ecosystem services. This study also advances the knowledge base for building the reference ecosystem for the different types of ferruginous campo rupestre habitats, as well as a key database for highlighting those species contribute most to community assembly in this diverse and threatened tropical mountain ecosystem.
Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet. Some environments with high economic relevance, such as the ferruginous campo rupestre (rupestrian grassland known as Canga in Brazil), are even more susceptible to severe impacts due to their extreme habitat conditions and low resilience. The determination of reference ecosystems based on the intrinsic characteristics of the ecosystem is essential for conservation as well as to the implementation of ecological restoration. We proposed the reference ecosystem of the three main types of habitats of the ferruginous campo rupestre based on their floristic composition. We described the floristic composition of each habitat and evaluated the physicochemical properties of the soils and the relationship between plants and soils. All three habitats showed high diversity of plant species and many endemic species, such as Chamaecrista choriophylla, Cuphea pseudovaccinium, Lychnophora pinaster, and Vellozia subalata. The distribution of vegetation was strongly related with the edaphic characteristics, with a set of species more adapted to high concentration of base saturation, fine sand, organic carbon, and iron, while another set of species succeeded in more acidic soils with higher S and silt concentration. We provide support for the contention that the ferruginous campo rupestre is a mosaic of different habitats shaped by intrinsic local conditions. Failure to recognize the floristic composition of each particular habitat can lead to inappropriate restoration, increased habitat homogenization and increased loss of biodiversity and ecosystem services. This study also advances the knowledge base for building the reference ecosystem for the different types of ferruginous campo rupestre habitats, as well as a key database for highlighting those species contribute most to community assembly in this diverse and threatened tropical mountain ecosystem.
Author Gomes, Vanessa Matos
Paiva, Dario C.
Cunha-Blum, Jéssica
Fernandes, G. Wilson
Ramos, Letícia
Negreiros, Daniel
AuthorAffiliation Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil;Knowledge Center for Biodiversity,31270-901,Belo Horizonte,MG,Brazil;Department of Biological Sciences,Institute of Environment,Florida International University,Miami,FL 33199,USA%Knowledge Center for Biodiversity,31270-901,Belo Horizonte,MG,Brazil%Department of Biological Sciences,Institute of Environment,Florida International University,Miami,FL 33199,USA%Programa de Pós Gradua??o em Biodiversidade e Uso dos Recursos Naturais,Universidade Estadual de Montes Claros,Montes Claros,MG,Brazil%Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil;Laboratório de Estudo das Rela??es Solo-Planta,Departamento de Solos,Universidade Federal Rural do Rio de Janeiro,Seropédica,RG,Brazil%Ecologia Evolutiva&Biodiversidade,Departamento de Genética,E
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CitedBy_id crossref_primary_10_1016_j_teadva_2025_200122
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Canga
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– name: Laboratório de Estudo das Rela??es Solo-Planta,Departamento de Solos,Universidade Federal Rural do Rio de Janeiro,Seropédica,RG,Brazil%Ecologia Evolutiva&Biodiversidade,Departamento de Genética,Ecologia e Evolu??o/ICB,Universidade Federal de Minas Gerais,31270-901,Belo Horizonte,MG,Brazil
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Snippet Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet. Some...
Land use change and occupation have led to modifications in the environment causing loss of biodiversity and ecosystem services throughout the planet.Some...
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springer
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Enrichment Source
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StartPage 719
SubjectTerms Acidic soils
Biodiversity
Biodiversity loss
Composition
Earth and Environmental Science
Earth Sciences
Ecology
Ecosystem services
Ecosystems
Endemic plants
Endemic species
Environment
Environmental restoration
Geography
Grasslands
Habitats
Knowledge bases (artificial intelligence)
Land use
Mountain ecosystems
Organic carbon
Original Article
Physicochemical processes
Physicochemical properties
Plant diversity
Plant species
Restoration
Saturation
Soil
Soil properties
Soils
Species composition
Species diversity
Title Floristic composition and edaphic relationships in ferruginous campo rupestre reference ecosystems
URI https://link.springer.com/article/10.1007/s11629-023-8333-x
https://www.proquest.com/docview/2973655606
https://d.wanfangdata.com.cn/periodical/sdkxxb-e202403001
Volume 21
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