Dynamic interplay between niche variation and flight adaptability drove a hundred million years’ dispersion in iconic lacewings

H Haohong Ou (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) J Jingtao Yang (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) H Honglong Wang (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) N Nuoyao Kang (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) S Shumin Li (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) Y Yuting Chen (Department of Chemistry) Z Zihao Peng (School of Life Sciences, Key Laboratory of Conservation and Application in Biodiversity of South China, Guangzhou University) X Xianzhe Xiang (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University) M Michael S. Engel (Division of Invertebrate Zoology, American Museum of Natural History) S Shaun L. Winterton (California State Collection of Arthropods, California Department of Food and Agriculture) D Dong Ren (College of Life Sciences and Academy for Multidisciplinary Studies, Capital Normal University) Q Qiang Yang (Synthetic Molecule Design and Development, Lilly Research Laboratories) C Chaofan Shi (School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University)

Abstract

The form and change of animal biogeography reflects the long-term interplay between organisms and their environment, involving physiological limitation, dispersal capability, and adaptive evolution versus plate tectonics, global climatic shifts, and changing landscapes. This is especially manifest for lineages with extended geological histories, which, therefore, evokes questions as to the associated processes producing such patterns. Insects, as the earliest flying animals, have exceptional abilities for expanding their range and habitats and to avoid detrimental conditions. They are ideal for exploring historical biogeography augmented via adaptation. Here, we employ beaded lacewings as a model to explore such patterns and likely processes, particularly given that they differ notably from the commonly observed pattern of a latitudinal diversity gradient. Furthermore, owing to their good fossil record it can be observed that their distributions varied remarkably through time. Ecological niche modeling and evaluation demonstrate their niche variation and niche breadth expansion intermittently accompanying global climate change. However, different niche relevant variables changed under patterns of either phylogenetic conservatism or evolutionary lability. By assessing wing morphological disparity and modeling flight aerodynamics, we uncovered a continuous improvement of flight efficiency through beaded-lacewing history as well as a Paleogene divergence in strategy, which reveals a long-term associated path with the niche variation. Our results unveil the adaptive evolution and dispersal history of beaded lacewings through 170 My, achieved by dynamic strategies in niche shift and flight adaptation as responses to a changing planet.

Article Details

Volume / Issue Vol. 122, Issue 19
Published May 13, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

H

Haohong Ou

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

J

Jingtao Yang

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

H

Honglong Wang

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

N

Nuoyao Kang

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

S

Shumin Li

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

Y

Yuting Chen

Department of Chemistry

Z

Zihao Peng

School of Life Sciences, Key Laboratory of Conservation and Application in Biodiversity of South China, Guangzhou University

X

Xianzhe Xiang

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University

M

Michael S. Engel

Division of Invertebrate Zoology, American Museum of Natural History

S

Shaun L. Winterton

California State Collection of Arthropods, California Department of Food and Agriculture

D

Dong Ren

College of Life Sciences and Academy for Multidisciplinary Studies, Capital Normal University

Q

Qiang Yang

Synthetic Molecule Design and Development, Lilly Research Laboratories

C

Chaofan Shi

School of Earth Sciences and Engineering, Guangdong Provincial Key Lab of Geological Processes and Mineral Resources, Sun Yat-sen University