On November 27, 2023, PIB Delhi posted an article from the Ministry of Science & Technology concerning the discovery of a 37,000-year-old bamboo fossil in Manipur, India. Researchers examining silt-rich deposits in the Chirang River, Imphal Valley found an intact bamboo stem with thorn scars. Scientists from the Birbal Sahni Institution of Palaeosciences (BSIP), part of the Department of Science and Technology (DST) identified the fossil as *Chimonobambusa manipurensis*. Comparisons with *Bambusa bambos* and *Chimonobambusa callosa* aided in understanding its defensive traits. This discovery provides the first fossil evidence of thorny bamboo in Asia during the Ice Age and suggests Northeast India served as a refuge for bamboo when it was eliminated from regions like Europe. The discovery published in the journal Review of Palaeobotany and Palynology highlights the Indo-Burma biodiversity hotspot. The research was conducted by H Bhatia, P Kumari, NH Singh, & G Srivastava. The publication link is https://doi.org/10.1016/j.revpalbo.2025.105347. Release ID: 2195471, with a visitor counter of 975.
Key Entities Referenced
Department of Science and Technology (DST): A department whose scientists conducted field surveys and found a bamboo stem.
Birbal Sahni institution of Palaeosciences (BSIP): An autonomous institute of the DST where the scientists are based.
Manipur: Indian state where the bamboo fossil was discovered along the Chirang River in the Imphal Valley.
Ministry of Science & Technology
37,000-year-old bamboo from Manipur reveals
Asia’s ice age secret
Posted On: 27 NOV 2025 6:12PM by PIB Delhi
Among the silt-rich deposits of the Chirang River in Manipur’s Imphal Valley researchers examining
fossil plant remains have found an astonishingly intact bamboo stem, carrying the ghostly marks of
long-vanished thorns. This earliest thorny bamboo fossil from Asia could rewrite a chapter of the
continent’s botanical history.
Bamboo fossils are extremely rare because their hollow stems and fibrous tissues decay rapidly,
leaving little trace in the geological record. Scientists usually understood bamboo defences mainly by
comparing modern species with their habitats.
Scientists from Birbal Sahni institution of Palaeosciences (BSIP), an autonomous institute of the
Department of Science and Technology (DST) during field surveys in the silt-rich deposits of the
Chirang River in Manipur’s Imphal Valley, chanced upon a bamboo stem with unusual markings.
Their detailed analysis identified these as thorn scars, prompting further investigation into its identity
and significance.
Through study of its morphology—nodes, buds, and thorn scars in the laboratory, as they assigned it
to the genus Chimonobambusa. Comparisons with living thorny bamboos such as Bambusa bambos
and Chimonobambusa callosa helped reconstruct its defensive traits and ecological role.Fig 1: Enlarged microscopic view of the 37,000-year-old fossil bamboo (Chimonobambusa
manipurensis), showing rare preservation of thorn scars (white arrows).
This is the first fossil evidence that thorniness in bamboo—a defense against herbivores—was already
present in Asia during the Ice Age. Its preservation is particularly significant because it comes from a
period of colder and drier global climates, when bamboo was wiped out in many other regions,
including Europe. The fossil shows that while harsh Ice Age conditions restricted bamboo’s global
distribution, Northeast India provided a safe refuge where the plant could continue to thrive.
The discovery published in the journal Review of Palaeobotany and Palynology is remarkable for
capturing fragile details like thorn scars—features that almost never fossilize. The finding also
highlights the Indo-Burma biodiversity hotspot as a crucial refugium during the Ice Age. While colder
and drier climates eliminated bamboo from places such as Europe, the warm and humid conditions of
Northeast India allowed it to persist.
Fig 2: Enlarged microscopic view of the 37,000-year-old fossil bamboo (Chimonobambusa
manipurensis), showing preserved bud (yellow arrows).
This research by H Bhatia, P Kumari, NH Singh & G Srivastava adds a new dimension to our
understanding of both bamboo evolution and regional climate history. It also emphasizes the role of
this part of Asia in safeguarding biodiversity during times of global stress, making the discovery notonly a botanical milestone but also an important contribution to palaeoclimatic and biogeographic
studies.
Link to publication: https://doi.org/10.1016/j.revpalbo.2025.105347
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