Logo image
Exploring the impact of Cenozoic climate change on diversification of the Australian endemic Eurepini crickets (Orthoptera: Gryllidae: Eneopterinae)
 

Exploring the impact of Cenozoic climate change on diversification of the Australian endemic Eurepini crickets (Orthoptera: Gryllidae: Eneopterinae)

Shilin He, Gael J. Kergoat, You Ning Su, Céline Bonillo, Andreas Zwick, Ben H. Warren Tony Robillard
Communications Biology, Vol.9
07/03/2026
: PMC13096196
: 41794934
aridification arid zone climate change extinction historical biogeography in situ diversification macroevolution paleoenvironments effect of climate change impact of climate change species diversification paleontology palaeontology literature review state of the art Pleistocene desert climate dry climate arid climate geographic distribution geographical distribution adaptation to drought drought adaptation loss of biodiversity biodiversity loss species extinction endemic species Orthoptera evolutionary history species distribution biological diversity biodiversity model system palaeoecology paleoclimate
The Australian continent underwent a series of dramatic climate changes during the Cenozoic, which impacted the evolutionary history and distribution of many groups of organisms. Up to now, few studies have explored the drivers of diversification and the processes that generated and maintained biodiversity in Australia. Here, we used the Australian endemic Eurepini crickets as a model system to investigate the impact of paleoenvironmental changes on diversification of Australian lineages with a series of state-of-the-art macroevolutionary models. We inferred an Early Eocene origin of Eurepini in current Northern Australia, with the majority of descendant lineages diversifying in situ. We detected a drastic drop in diversification rate at the beginning of Pleistocene. Diversification rates of Eurepini declined with increasing aridity and decreasing temperature. Diversification rate heterogeneity was linked to contrasting geographic distributions: the arid-adapted lineages diversified at a much lower rate than their mesic-distributed counterparts. The drastic environmental changes that occurred from the Miocene onwards were likely detrimental to dispersal of Eurepini lineages, slowing down their diversification during the Pleistocene. The tribe likely suffered substantial diversity losses in the arid zone during progressive aridification of Australia. Our study highlights the importance of paleoenvironmental changes in shaping diversification dynamics of Australian lineages.

(2)

url
Find in HAL
url
https://doi.org/10.1038/s42003-026-09791-9
Published (Version of record)
1
Logo image