1. Holocene vegetation and climate change on the Colorado Plateau in southern Utah, USA
- Author
-
Joel C. Janetski, Christopher A. Kiahtipes, and Lisbeth A. Louderback
- Subjects
010506 paleontology ,060102 archaeology ,biology ,Macrofossil ,06 humanities and the arts ,Vegetation ,Woodland ,Understory ,Pinus edulis ,biology.organism_classification ,medicine.disease_cause ,01 natural sciences ,food.food ,food ,Arts and Humanities (miscellaneous) ,Pollen ,Juniperus osteosperma ,medicine ,General Earth and Planetary Sciences ,0601 history and archaeology ,Physical geography ,Holocene ,Geology ,0105 earth and related environmental sciences ,Earth-Surface Processes - Abstract
Pollen, plant macrofossils, and sedimentary analyses from archaeological deposits at North Creek Shelter (NCS) on the Colorado Plateau provide data on vegetation and climate change during the Holocene. From 11,300–10,200 cal yr BP, NCS was embedded in a mixed conifer forest of cool-adapted species (e.g.,Abies,Pseudotsuga menziesii, andPinus ponderosa) with anArtemisiaunderstory. During this interval, NCS pollen corresponds to modern pollen fromPicea–Abiesforests that reside 950 m higher in elevation. Rapid deposition rates of NCS sediments indicate that climatic conditions during the Early Holocene were more mesic than today, with increased precipitation. The onset of warmer conditions at NCS began at 10,200 cal yr BP, and pollen and plant macrofossils indicate that a semiarid woodland and scrub mosaic dominated byPinus edulis,Juniperus osteosperma, and Amaranthaceae surrounded NCS by 9300 cal yr BP. This is corroborated by fossil pollen that is similar to modern pollen fromP. edulis–J. osteospermawoodlands and Amaranthaceae scrub that currently surround NCS. Sedimentary analyses suggest that during this time, accumulation rates were very low due to low precipitation and a drier climate overall. Migration ofP. edulisinto southern Utah is directly dated to 8100 cal yr BP, thus confirming recently proposed patterns of northward expansion.
- Published
- 2020