Structure, floristic composition, and distribution of swamp forests across a white-water flood-plain in the Colombian Amazon


Por: Urrego, LE, Gutierrez, M, Sanchez, M, Elejalde, D, Correa-Metrio, A

Publicada: 1 mar 2024
Resumen:
QuestionsThe fluvial dynamics of meandering white-water rivers of Amazonia drive vegetation primary succession. Directional successional processes have been recorded for the seasonal varzea forests that occupy well-drained soils on levees and point bars across the spatial gradient of the flood-plains. However, the types of forests occupying the swampy depressions interspersed between the point bars and their distribution along the flood-plain's spatial gradient are poorly understood. Here, we aimed to unravel the spatial patterns of swamp forests along the sequence defined by an axis perpendicular to the river and the relationship with edaphic and spatial factors.LocationThe flood-plains of the middle Caqueta River basin, Colombian Amazonia.MethodsForest types were identified by cluster analysis performed on 42 square plots (33 m x 33 m) set in poorly drained depressions of the flood-plain. Floristic composition and vegetation structure as response data, and edaphic and spatial variables as predictors, were analyzed through partial redundancy analysis (pRDA). The effect of geographic position was included by using the first two axes of a principal coordinates of neighbor matrix analysis as conditional factors in the pRDA.ResultsThe three identified swamp forest types were not arranged along a directional spatial pattern. Permanent varzea forests, closest to the river, showed the greatest diversity and alluvial sediment input. Oxandrales, furthest from the river, dominated by Oxandra polyantha, showed the greatest tree density, basal area and soil sand content, and received additional flooding from black-water streams. Cananguchales, dominated by Mauritia flexuosa, exhibited the highest dominance and soil organic matter layer thickness. Distribution of the permanent varzea and oxandrales was relatively constrained by the distance to the river, whereas that of the cananguchales was not.ConclusionsFlooding dynamics delay vegetation development of the swamp forests in permanent varzea and oxandrales. Cananguchales keep accumulating organic matter, becoming ombrotrophic peats after isolation from the river flooding influence. The swamp forests across these flood-plains are far from being arranged along a linear sequence. We identified three types of swamp forests across the flood-plains of the Caqueta River: permanent varzea, oxandrales and cananguchales. These forests showed successional patterns dissociated from their position relative to the main river channel. Still, they seemed more influenced by the interaction of floodings, sediment and nutrients input from white-water and/or black-water rivers, and peat accumulation.image

Filiaciones:
Urrego, LE:
 Univ Nacl Colombia Sede Medellin, Dept Ciencias Forestales, Medellin, Colombia

 Univ Nacl Colombia Sede Medellin, Dept Ciencias Forestales, Kra 65 59A, Medellin 110, Colombia

Gutierrez, M:
 Univ Nacl Colombia Sede Medellin, Dept Ciencias Forestales, Medellin, Colombia

 Univ Nacl Colombia Sede Medellin, Maestria Bosques & Conservac Ambiental, Medellin, Colombia

Sanchez, M:
 Univ Nacl Colombia Sede Medellin, Dept Ciencias Forestales, Medellin, Colombia

Elejalde, D:
 Univ Nacl Colombia Sede Medellin, Dept Ciencias Forestales, Medellin, Colombia

 Univ Nacl Colombia Sede Medellin, Ingn Forestal, Medellin, Colombia

Correa-Metrio, A:
 Univ Nacl Autonoma Mexico, Ctr Geociencias, Queretaro, Mexico
ISSN: 11009233
Editorial
WILEY-BLACKWELL PUBLISHING, INC, COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA, Estados Unidos America
Tipo de documento: Article
Volumen: 35 Número: 2
Páginas:
WOS Id: 001181627200001

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