4.8 Article

Abdominal serial homologues of wings in Paleozoic insects

Related references

Note: Only part of the references are listed.
Article Multidisciplinary Sciences

A hemimetabolous wing development suggests the wing origin from lateral tergum of a wingless ancestor

Takahiro Ohde et al.

Summary: This study investigates wing development in crickets and provides evidence for the evolution of the novel insect wing from the pre-existing dorsal body wall of a wingless ancestor through the activation of an evolutionarily conserved growth mechanism.

NATURE COMMUNICATIONS (2022)

Article Biology

Wing serial homologues and the diversification of insect outgrowths: insights from the pupae of scarab beetles

Yonggang Hu et al.

Summary: The study found a common developmental origin shared between body wall projections and wings in scarab beetles, with divergence in gene function across different structures. This suggests that the morphological and gene regulatory diversification of wing serial homologues has significantly contributed to the diversity of arthropod appendages and outgrowths.

PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES (2021)

Article Evolutionary Biology

Tergal and pleural wing-related tissues in the German cockroach and their implication to the evolutionary origin of insect wings

Courtney Clark-Hachtel et al.

Summary: The study suggests that the origin of wings may come from a combination of tergal and pleural tissues, contrary to previous beliefs. By examining wing-related tissues in beetles and cockroaches, researchers found evidence supporting this dual origin hypothesis, indicating a more complex evolutionary history of insect wings.

EVOLUTION & DEVELOPMENT (2021)

Article Biology

Out from under the wing: reconceptualizing the insect wing gene regulatory network as a versatile, general module for body-wall lobes in arthropods

Cera R. Fisher et al.

Summary: The evolution of body plans often involves differentiation of serially homologous body parts, particularly in arthropods. Recent research on homeotic transformations and gene expression has shed new light on the evolution of insect wings. Study on a hemimetabolous insect, Oncopeltus fasciatus, suggests that genes involved in wing development play similar roles in the development of other body-wall structures. This supports the concept of a versatile development module for building bilayered structures pre-dating the origin of wings, leading to new predictions and insights on the evolution of body structures.

PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES (2021)

Article Entomology

Evidence for wing development in the Late Palaeozoic Palaeodictyoptera revisited

Katerina Rosova et al.

Summary: The study challenges the original idea of articulated and movable wings in Palaeozoic insect larvae, suggesting that the supposed wings are actually wing pads with developing wings inside. Additionally, the research confirms the presence of nygma-like structures on the wings and wing pads of Palaeodictyopteran Tchirkovaeidae.

ARTHROPOD STRUCTURE & DEVELOPMENT (2021)

Review Cell Biology

What crustaceans can tell us about the evolution of insect wings and other morphologically novel structures

Yoshinori Tomoyasu

Summary: Studies in crustaceans have shed light on the evolutionary origin of insect wings, with three recent investigations proposing distinct mechanisms underlying their evolution.

CURRENT OPINION IN GENETICS & DEVELOPMENT (2021)

Article Ecology

Life history, systematics and flight ability of the Early Permian stem-mayflies in the genus Misthodotes Sellards, 1909 (Insecta, Ephemerida, Permoplectoptera)

Pavel Sroka et al.

Summary: The stem-group of Ephemeroptera from the Early Permian is studied in this research, providing new insights into the life history traits of Misthodotes. The morphology of adult and larval stages, as well as the structure of thoracic pleura and wing articulation, are examined. The findings support the systematic placement of investigated taxa and reveal adaptations for scavenging and flight in Misthodotes before the appearance of characteristics seen in modern mayflies.

BMC ECOLOGY AND EVOLUTION (2021)

Article Ecology

Co-option of wing-patterning genes underlies the evolution of the treehopper helmet

Cera R. Fisher et al.

NATURE ECOLOGY & EVOLUTION (2020)

Article Multidisciplinary Sciences

Genomic adaptations to aquatic and aerial life in mayflies and the origin of insect wings

Isabel Almudi et al.

NATURE COMMUNICATIONS (2020)

Review Ecology

Arthropod Origins: Integrating Paleontological and Molecular Evidence

Gregory D. Edgecombe

ANNUAL REVIEW OF ECOLOGY, EVOLUTION, AND SYSTEMATICS, VOL 51, 2020 (2020)

Article Ecology

Two sets of candidate crustacean wing homologues and their implication for the origin of insect wings

Courtney M. Clark-Hachtel et al.

NATURE ECOLOGY & EVOLUTION (2020)

Article Multidisciplinary Sciences

Beetle horns evolved from wing serial homologs

Yonggang Hu et al.

SCIENCE (2019)

Article Entomology

Detailed analysis of the prothoracic tissues transforming into wings in the Cephalothorax mutants of the Tribolium beetle

Courtney M. Clark-Hachtel et al.

ARTHROPOD STRUCTURE & DEVELOPMENT (2018)

Article Multidisciplinary Sciences

Dual evolutionary origin of insect wings supported by an investigation of the abdominal wing serial homologs in Tribolium

David M. Linz et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2018)

Article Entomology

Jumping and the aerial behavior of aquatic mayfly larvae (Myobaetis ellenae, Baetidae)

Stephen P. Yanoviak et al.

ARTHROPOD STRUCTURE & DEVELOPMENT (2018)

Article Biochemistry & Molecular Biology

Paleozoic Nymphal Wing Pads Support Dual Model of Insect Wing Origins

Jakub Prokop et al.

CURRENT BIOLOGY (2017)

Article Biology

Exploring the origin of insect wings from an evo-devo perspective

Courtney M. Clark-Hachtel et al.

CURRENT OPINION IN INSECT SCIENCE (2016)

Article Multidisciplinary Sciences

Tergal and pleural structures contribute to the formation of ectopic prothoracic wings in cockroaches

Moyses Elias-Neto et al.

ROYAL SOCIETY OPEN SCIENCE (2016)

Article Multidisciplinary Sciences

Phylogenomics resolves the timing and pattern of insect evolution

Bernhard Misof et al.

SCIENCE (2014)

Article Multidisciplinary Sciences

Insect Morphological Diversification Through the Modification of Wing Serial Homologs

Takahiro Ohde et al.

SCIENCE (2013)

Article Evolutionary Biology

Evolutionary origin of the insect wing via integration of two developmental modules

Nao Niwa et al.

EVOLUTION & DEVELOPMENT (2010)

Review Geology

A review of the Carboniferous fossil insects from Scotland

A. J. Ross

SCOTTISH JOURNAL OF GEOLOGY (2010)

Article Biology

Gliding hexapods and the origins of insect aerial behaviour

Stephen P. Yanoviak et al.

BIOLOGY LETTERS (2009)

Article Biology

The clonal composition of biramous and uniramous arthropod limbs

Carsten Wolff et al.

PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES (2008)

Review Biology

Flight adaptations in Palaeozoic Palaeoptera (Insecta)

RJ Wootton et al.

BIOLOGICAL REVIEWS (2000)