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The latitudinal gradient of functional diversity of miocene marine mollusks from Chile

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DataONE2022-12-06 更新2025-07-19 收录
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Understanding latitudinal variations in biodiversity is central for biogeography. Along the coasts of the Southeast Pacific, several taxa show inverse latitudinal patterns of biodiversity, i.e., increasing species numbers from lower to higher latitudes. A plausible explanation for these patterns is that fjords, formed during the Pleistocene glaciations, increased the diversity of available biotopes that allowed for higher diversity in high latitudes. Assessing this hypothesis requires us to analyze latitudinal patterns of functional diversity (which is intimately related to niche use) in the absence of fjords, i.e., earlier than their formation. Here we test if the fossil record before the generation of fjords shows higher functional diversity at lower than at higher latitudes (a “regular” functional diversity gradient). We analyzed four components of functional diversity (functional richness, functional divergence, functional dispersion and functional evenness) for a fossil marine moll..., The dataset was collected at four regions along the Chilean Pacific Coast. The regions are Navidad South of San Antonio, 34°S) with 14 localities, Ranquil (Arauco peninsula, South of Concepción, 37°S) with 7 localities, Lacui (Pacific coast of Chiloé island, ca. 42°S) with 11 localities, and Los Chonos Archipelago (South of Chiloé Island, ca. 45°S) with 28 localities. These localities were selected, because they present a similar age and depositional environment (Kiel & Nielsen 2010, Encinas et al. 2018) of ca. 18Ma corresponding to the Early Miocene. Localities were sampled between the years 2000 and 2016, several of them repeatedly. Specimens were collected from the surface of the rocky outcrops (superficial sampling) and by collecting bulk sediment samples (1.5kg to > 50kg due to the accessibility of localities and logistical difficulties). The area of each locality ranged from various decimeters to tens of meters, normally within one rock layer. Many localities were sampled s...,
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2025-07-16
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