FLORA AND VEGETATION DIVERSITY IN THE INTERFLUVIUM NAPO-PUTUMAYO-AMAZONAS, PERU

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The Napo-Putumayo-Amazonas interfluvium in the Peruvian Amazon harbors a great diversity of plant species and types of vegetation that are greatly needed by the rural Amazonian population for subsistence and commercialization. Understanding plant diversity can possibly contribute to the creation of...

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Detalles Bibliográficos
Autores: ZÁRATE-GÓMEZ, Ricardo, DEL-ÁGUILA-CACHIQE, Harvey Kuinsy Jonathan, RAMOS-RODRÍGUEZ, María Claudia, PALACIOS-VEGA, Juan José, PÉREZ MACEDO, Christian Paulo, VALLES-PÉREZ, Luis Andrés
Formato: artículo
Fecha de Publicación:2020
Institución:Instituto de investigaciones de la Amazonía Peruana
Repositorio:Folia Amazónica
Lenguaje:español
OAI Identifier:oai:ojs.pkp.sfu.ca:article/531
Enlace del recurso:https://revistas.iiap.gob.pe/index.php/foliaamazonica/article/view/531
Nivel de acceso:acceso abierto
Materia:Amazonía
hábitats
plantas
riqueza
similitud
geomorfometría
Amazon
habitats
plants
diversity
similarity
geomorphometry
Descripción
Sumario:The Napo-Putumayo-Amazonas interfluvium in the Peruvian Amazon harbors a great diversity of plant species and types of vegetation that are greatly needed by the rural Amazonian population for subsistence and commercialization. Understanding plant diversity can possibly contribute to the creation of conservation strategies that regulate their usage. Therefore, the objectives of this study were to evaluate the diversity of flora and vegetation in the interfluvium and and to evaluate the similarity of the flora between the types of vegetation. The data were obtained from 10 inventory studies of the flora carried out in the Napo-Putumayo-Amazonas interfluvium. A similarity analysis (ANOSIM) was performed of the flora. A model of the spatial distribution of the vegetation units was generated based on three geomorphometric parameters, which were calculated from a digital elevation model (with images from the Palsar sensor of the Alos satellite) and integrated with spectral data (from the optical images from the Sentinel satellite 2) and official spatial data. In total, 1,807 species corresponding to 140 plant families were found. There are seven types of vegetation, the largest corresponding to the high terrace forest, low hill forest and high hill forest. The plant community between the terra firme forest and the flooded forest were different according to the similarity analysis (p-value = 0.001); the species more associated with flooded forests are Oxandra euneura Diels, Mauritia flexuosa L. f., Euterpe precatoria Mart, Cynometra spruceana Benth., Pouteria gomphiifolia, Tovomita laurina Planch. & Triana and Macrolobium limbatum Spruce ex Benth.
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