Literature DB >> 33182176

A comprehensive calibrated phytolith based climatic index from the Himalaya and its application in palaeotemperature reconstruction.

Oindrila Biswas1, Ruby Ghosh2, Shailesh Agrawal3, P Morthekai3, Dipak Kumar Paruya1, Biswajit Mukherjee1, Meghma Bera1, Subir Bera4.   

Abstract

Past climate reconstructions from palaeoecological records require an understanding of relationships between modern vegetation and climate. Phytoliths are being used widely to reconstruct variations in C3/C4 grasses in the past vegetation and corresponding climate. However, little understanding is available on their relationships with the climate driver(s). Even though, the driver(s) regulating C3/C4 grass distributions vary regionally, while reconstructing the past distributions, a grass phytolith-based climatic index (Ic) has often been found to be used globally without assessing its regional consistency. In the Himalaya, the working potential of Ic has proven to be unsatisfactory when compared to other regions of the globe. To improve the efficacy of Ic, we have identified the redundant grass phytolith morphs and revised it by including four exclusive C3-grass indicator morphotypes (bilobate trapezoidal, bilobate scooped, saddle tall and saddle plateaued) to the existing Ic calculation. Thus, a new climatic index, revised Ic (rIc) is proposed in this article. We have compared the rIc with modern climate variables and a relationship with mean annual temperature (MAT) is established with statistical validation. To assess the working potential of the proposed calibration function in the past temperature reconstructions, we have estimated the late Holocene MAT variations in the Himalaya using rIc. We infer that in the mountainous regions like the Himalaya, even with irregular precipitation distribution, variability in C3/C4 grass distributions and their phytolith spectra seem to be a primary function of temperature. Further, we recommend that rIc can be satisfactorily used to reconstruct past temperature variations in the Himalaya and similar mountainous regions where soil water availability is not a limiting factor.
Copyright © 2020 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  C3/C4 grasses; Elevation gradient; Himalaya; Mean annual temperature; Phytolith assemblages; Revised climatic index

Year:  2020        PMID: 33182176     DOI: 10.1016/j.scitotenv.2020.142280

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  2 in total

1.  Phytolith Assemblages as a Promising Tool for Quantitative Canopy Coverage Reconstruction in Subtropical Forests, China.

Authors:  Nannan Li; Fengling Yu; Dorothy Sack; Zhaoquan Huang; Ganghua Tian; Shengtao Liu
Journal:  Front Plant Sci       Date:  2022-06-20       Impact factor: 6.627

2.  Red Panda feces from Eastern Himalaya as a modern analogue for palaeodietary and palaeoecological analyses.

Authors:  Sadhan K Basumatary; Rajib Gogoi; Swati Tripathi; Ruby Ghosh; Anil K Pokharia; H Gregory McDonald; Norbu Sherpa; Eline N van Asperen; Rajesh Agnihotri; Geetamani Chhetri; Korobi Saikia; Arya Pandey
Journal:  Sci Rep       Date:  2021-09-15       Impact factor: 4.379

  2 in total

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