Science · 2006 · 459 citations · 34 references
BiodiversityCenozoic Plant DiversityPlant DiversityDiversification PatternsBotanyBiogeographyLongest Time SeriesNatural SciencesEvolutionary BiologyEarly OligocenePlant BiodiversityPaleoecologyPhytogeographyPaleobotanySocial Sciences
High Neotropical plant diversity is attributed to several proposed mechanisms, yet diversification patterns over geological time remain poorly understood, and climate may also limit the area available for tropical plants. We compiled the longest palynological plant diversity time series for the Neotropics, covering 65–20 Ma across 15 stratigraphic sections in Colombia and Venezuela. The dataset comprises 1,530 samples, 1,411 morphospecies, and 287,736 occurrences spanning the Paleocene to early Miocene. The record shows a low-diversity Paleocene, a peak in early to middle Eocene exceeding Holocene levels, followed by a decline at the end of the Eocene and early Oligocene, with diversity fluctuations correlating strongly with global temperature changes, implying tropical climate drives the pattern.
Several mechanisms have been proposed to explain the high levels of plant diversity in the Neotropics today, but little is known about diversification patterns of Neotropical floras through geological time. Here, we present the longest time series compiled for palynological plant diversity of the Neotropics (15 stratigraphic sections, 1530 samples, 1411 morphospecies, and 287,736 occurrences) from the Paleocene to the early Miocene (65 to 20 million years ago) in central Colombia and western Venezuela. The record shows a low-diversity Paleocene flora, a significantly more diverse early to middle Eocene flora exceeding Holocene levels, and a decline in diversity at the end of the Eocene and early Oligocene. A good correlation between diversity fluctuations and changes in global temperature was found, suggesting that tropical climate change may be directly driving the observed diversity pattern. Alternatively, the good correspondence may result from the control that climate exerts on the area available for tropical plants to grow.
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