The Geologic History of Plants and Climate in India

Author:

Sanyal Prasanta12,Adhya Sourav Priyam1,Mandal Ritwick1,Roy Biswajit3,Dasgupta Bibhasvata4,Samantaray Santrupta1,Sen Rahul1,Sarangi Vijayananda5,Kumar Anurag6,Jha Deepak K.7,Ajay Ajay1

Affiliation:

1. 1Department of Earth Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, India; email: psanyal@iiserkol.ac.in

2. 2Centre for Climate and Environmental Studies, Indian Institute of Science Education and Research Kolkata, Mohanpur, India

3. 3National Centre for Polar and Ocean Research, Ministry of Earth Sciences, Goa, India

4. 4Institute for Marine and Atmospheric Research Utrecht, Utrecht University, Utrecht, The Netherlands

5. 5Department of Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden

6. 6Birbal Sahni Institute of Palaeosciences, Lucknow, India

7. 7Department of Archaeology, Max Planck Institute of Geoanthropology, Jena, Germany

Abstract

India's diverse vegetation and landscapes provide an opportunity to understand the responses of vegetation to climate change. By examining pollen and fossil records along with carbon isotopes of organic matter and leaf wax, this review uncovers the rich vegetational history of India. Notably, during the late Miocene (8 to 6 Ma), the transition from C3 to C4 plants in lowland regions was a pivotal ecological shift, with fluctuations in their abundance during the late Quaternary (100 ka to the present). In India, the global phenomenon of C4 expansion was driven by the combined feedback of climate variations, changes in substrate conditions, and habitat disturbances. The Himalayan region has experienced profound transformations, including tree-line migrations, shifts in flowering and fruiting times, species loss, and shifts in plant communities due to changing monsoons and westerlies. Coastal areas, characterized by mangroves, have been dynamically influenced by changing sea extents driven by climate changes. In arid desert regions, the interplay between summer and westerlies rainfall has shaped vegetation composition. This review explores vegetation and climate history since 14 Ma and emphasizes the need for more isotope data from contemporary plants, precise sediment dating, and a better understanding of fire's role in shaping vegetation. ▪This review highlights diverse vegetation and landscapes of India as a valuable source for understanding the vegetation-climate link during the last 14 Myr.▪A significant ecological shift occurred during 8 to 6 Ma in India, marked by the transition from C3 to C4 plants in the lowland regions.▪The abundance of C3 and C4 plants varied in India during the late Quaternary (100 ka to present).▪This review emphasizes the importance of more isotope data, precise sediment dating, and a better understanding of fire's role in shaping vegetation.

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