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      The most ancient roach (Blattodea): a new genus and species from the earliest Late Carboniferous (Namurian) of China, with a discussion of the phylomorphogeny of early blattids

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      Journal of Systematic Palaeontology
      Informa UK Limited

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          New light shed on the oldest insect.

          Insects are the most diverse lineage of all life in numbers of species, and ecologically they dominate terrestrial ecosystems. However, how and when this immense radiation of animals originated is unclear. Only a few fossils provide insight into the earliest stages of insect evolution, and among them are specimens in chert from Rhynie, Scotland's Old Red Sandstone (Pragian; about 396-407 million years ago), which is only slightly younger than formations harbouring the earliest terrestrial faunas. The most well-known animal from Rhynie is the springtail Rhyniella praecursor (Entognatha; Collembola), long considered to be the oldest hexapod. For true insects (Ectognatha), the oldest records are two apparent wingless insects from later in the Devonian period of North America. Here we show, however, that a fragmentary fossil from Rhynie, Rhyniognatha hirsti, is not only the earliest true insect but may be relatively derived within basal Ectognatha. In fact, Rhyniognatha has derived characters shared with winged insects, suggesting that the origin of wings may have been earlier than previously believed. Regardless, Rhyniognatha indicates that insects originated in the Silurian period and were members of some of the earliest terrestrial faunas.
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            Origin and evolution of insect wings and their relation to metamorphosis, as documented by the fossil record

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              Function, homology and terminology in insect wings

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                Author and article information

                Journal
                Journal of Systematic Palaeontology
                Journal of Systematic Palaeontology
                Informa UK Limited
                1477-2019
                1478-0941
                January 2013
                January 2013
                : 11
                : 1
                : 27-40
                Article
                10.1080/14772019.2011.634443
                4108037b-d81e-415d-bd05-b090e7b4b44a
                © 2013
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