LATE GLACIAL AND HOLOCENE ENVIRONMENTAL CHANGE INFERRED FROM THE PARAMO OF CAJANUMA IN THE PODOCARPUS NATIONAL PARK, SOUTHERN ECUADOR

被引:0
作者
Villota, Andrea [1 ]
Behling, Hermann [2 ]
机构
[1] Pontificia Univ Catolica Ecuador, Herbario QCA, Escuela Ciencias Biol, Quito, Ecuador
[2] Univ Gottingen, Dept Palynol & Climate Dynam, Albrecht von Haller Inst Plant Sci, D-37073 Gottingen, Germany
关键词
Palaeoecology; paramo; late Glacial; Holocene; climate and fire dynamics; LATE QUATERNARY VEGETATION; JIMBURA REGION; POLLEN RECORDS; FIRE DYNAMICS; CLIMATE; ANDES; HISTORY; COLOMBIA; FORESTS; RAIN;
D O I
暂无
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
To reconstruct the environmental history including vegetation, fire and climate dynamics, from the Cajanuma valley area (3285 m elevation) in the Podocarpus National Park, southern Ecuador, we address the following major research question: (1) How did the mountain vegetation developed during the late Glacial and Holocene? (2) Did fire played an important control on the vegetation change and was it natural or of anthropogenic origin?. Palaeoenvironmental changes were investigated using multiple proxies such as pollen, spores, charcoal analyses and radiocarbon dating. Pollen data indicated that during the late Glacial and transition to the early Holocene (ca. 16 000-10 500 cal yr BP) herb paramo was the main vegetation type around the study area, while subparamo and mountain rainforest were scarcely represented. The early and mid-Holocene (ca. 10 500 to 5600 cal yr BP) is marked by high abundance of paramo during the early Holocene followed by a slight expansion of mountain forest during the mid-Holocene. During the mid-to late Holocene (ca. 5600-1200 cal yr BP) there is a significant presence of paramo and subparamo while Lower Mountain Forest decreased substantially, although, Upper Mountain Forest remained relatively stable during this period. The late Holocene, from ca. 1200 cal yr BP to present, was characterized by paramo; however, mountain forest and subparamo presented significantly abundance compared to the previous periods. Fires became frequent since the late Holocene. The marked increased local and regional fire intensity during the wetter late Holocene strongly suggests that were of anthropogenic origin. During the late Glacial and early Holocene, the upper forest line was located at low elevations; but shifted slightly upslope to higher elevations during the mid-Holocene.
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页码:345 / 364
页数:20
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