Paleovegetation dynamics in an alternative stable states landscape in the montane Western Ghats, India

Author:

Ramya Bala Prabhakaran1234ORCID,Pullyottum Kavil Sarath25,Tayasu Ichiro6,Yoshimizu Chikage6ORCID,Thirumalai Kaustubh7,Sajeev Krishnan1,Sukumar Raman23

Affiliation:

1. Centre for Earth Sciences, Indian Institute of Science, India

2. Centre for Ecological Sciences, Indian Institute of Science, India

3. Divecha Centre for Climate Change, Indian Institute of Science, India

4. Department of Anthropology, University of Pennsylvania, USA

5. LOCEAN, Sorbonne University, France

6. Research Institute for Humanity and Nature, Japan

7. Department of Geosciences, University of Arizona, USA

Abstract

Peat deposits (>50 ka) in the montane Nilgiris (Western Ghats, India), have been central to the reconstruction of late Quaternary paleoclimate using paleovegetation changes in the forest-grassland vegetation mosaic that coexist here. However, it is well-known that short-term disturbances can also cause vegetation switches when multiple stable vegetation states exist. We studied paleovegetation changes within the alternative stable states framework using stable carbon isotopes (relative abundance of C3-C4 vegetation) on the cellulose fraction from two high-resolution radiocarbon-dated peat cores ~170 m apart in the Sandynallah valley: Core 1 closer to the hillslope (32,000 years old) and Core 2 from the centre of the valley (45,000 years old). Core 1 is located in an ecotone showing shola-sedgeland dynamics with vegetation switching at c.22 ka from shola (possibly due to fire) to a prolonged unstable state until 13 ka sustained by low waterlogging. Following a hiatus c.13 ka, sedgeland dominates, with a shift into shola at 3.75 ka driven by increasing aridity. Core 2 shows a stable sedgeland mixed C3-C4 composition responding to temperature, enriched in C3-vegetation in the last glacial with C4-dominance beginning c.18.5 ka, indicative of deglacial warming. The distinctive vegetation states at corresponding times in Cores 1 and 2 within the same valley, responding independently to disturbances and climate, respectively, is the first paleo-record from an alternative stable states landscape in the montane tropics. Thus, short-term disturbances and site attributes need to be accounted for before ascribing vegetation change to changing climate in such vegetation mosaics.

Funder

Japan Society for the Promotion of Science

Publisher

SAGE Publications

Subject

Paleontology,Earth-Surface Processes,Ecology,Archeology,Global and Planetary Change

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