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Turning snails into slugs: induced body plan changes and formation of an internal shell
Author(s) -
Osterauer Raphaela,
Marschner Leonie,
Betz Oliver,
Gerberding Matthias,
Sawasdee Banthita,
Cloetens Peter,
Haus Nadine,
Sures Bernd,
Triebskorn Rita,
Köhler HeinzR.
Publication year - 2010
Publication title -
evolution and development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.651
H-Index - 78
eISSN - 1525-142X
pISSN - 1520-541X
DOI - 10.1111/j.1525-142x.2010.00433.x
Subject(s) - body plan , biology , snail , anatomy , extant taxon , mantle (geology) , gastropoda , paleontology , zoology , evolutionary biology , microbiology and biotechnology , embryo
SUMMARY The archetypal body plan of conchiferan molluscs is characterized by an external calcareous shell, though internalization of shells has evolved independently in a number of molluscan clades, including gastropod families. In gastropods, the developmental process of torsion is regarded as a hallmark that is associated with a new anatomical configuration. This configuration is present in extant prosobranch gastropod species, which predominantly bear external shells. Here, we show that short‐term exposure to platinum during development uncouples at least two of the processes associated with torsion of the freshwater snail Marisa cornuarietis . That is, the anus of the treated snails is located anteriorly, but the gill and the designated mantle tissue remains in a posterior location, thus preventing the formation of an external shell. In contrast to the prosobranchian archetype, platinum treatment results in the formation of a posterior gill and a cone‐shaped internal shell, which persists across the lifetime. This first finding of artificially induced snail‐slug conversion was also seen in the pulmonate snail Planorbarius corneus and demonstrates that selective alteration of embryonic key processes can result in fundamental changes of an existing body plan and—if altered regulation is inherited—may give rise to a new one.

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