Morphological and Genetic Variability in Radix auricularia (Mollusca: Gastropoda: Lymnaeidae) of Lake Baikal, Siberia: The Story of an Unfinished Invasion into the Ancient Deepest Lake

Морфологическая и генетическая изменчивость Radix auricularia (Mollusca: Gastropoda: Lymnaeidae) озера Байкал, Сибирь: история незавершившейся инвазии в древнейшее и глубочайшее озеро
Katrin Schniebs, T. Ya. Sitnikova, Maxim V. Vinarski, Anke Müller, И. В. Ханаев, Anna K. Hundsdoerfer
2022-06-29

Genetic variabilityITS-2 and cyt-b sequencesLake BaikalMorphological variabilityRadix auricularia
This article aims to reconstruct the invasion of the ear-shaped pond snail, Radix auricularia (Linnaeus, 1758), to Lake Baikal, East Siberia. This species is widely distributed in the Palaearctic and Northern America, and since the early 20th century has formed abundant and sustained populations in Lake Baikal. The data provided on the morphological and genetic variability of R. auricularia help to better describe and delineate the species. With an integrative approach involving morphological and molecular data, we improved the knowledge of the intraspecific variability of R. auricularia in the most important characteristics used for its determination. Molecular sequences of nuclear spacer fragment ITS-2 and mitochondrial gene fragment cyt–b were obtained from 32 individuals of Radix (including seven outgroup Radix species) collected from various parts of Lake Baikal and adjacent waterbodies and compared with sequences of 32 individuals of R. auricularia from different regions of the Palaearctic as well as with individuals determinated as R. intercisa from Lake Baikal, R. iturupica from the Kurile Islands, R. ussuriensis from the Khabarovsk region, R. narzykulovi from Tajikistan, and R. schubinae from the Amur region. Molecular genetic analyses revealed that all specimens collected from Lake Baikal belong to R. auricularia. There are no genetically distinct groups of snails that would correspond to two morphospecies previously recorded in Lake Baikal (e.g., R. auricularia s. str. and R. intercisa). Variability of the characteristics that are commonly used for species identification (shell morphology, mantle pigmentation, shape and position of the bursa copulatrix, length and position of the bursa duct, length ratio of preputium to penial sheath) were found in individuals analysed with molecular genetics to be broader than recognised in the current literature. Some shells of R. auricularia collected from Lake Baikal resemble shells of another lymnaeid species, R. balthica, and without molecular assessment can be confused with the latter. Geometric morphometric analysis of more than 250 shells revealed no observed hiatus between Baikalian and non-Baikalian R. auricularia. The probable stages and pathways of R. auricularia invasion to Lake Baikal’s ecosystem are outlined and discussed. Factors such as global climate warming and human activity stimulated and facilitated the ongoing dispersal of ear pond snails within Lake Baikal.
1
All specimens collected from Lake Baikal were genetically identified as Radix auricularia, including individuals previously assigned to R. intercisa.
2
An integrative morphological and molecular analysis reconstructed the invasion and variability of Radix auricularia in Lake Baikal.
3
Morphological identification traits—including shell form, mantle pigmentation, reproductive anatomy, and organ-length ratios—showed greater intraspecific variability than recognized in existing literature.
4
No genetically distinct groups corresponded to the two morphospecies previously reported from Lake Baikal, R. auricularia sensu stricto and R. intercisa.
5
The study compared ITS-2 and mitochondrial cyt-b sequences from Baikal and adjacent populations with diverse Palaearctic Radix taxa to delimit R. auricularia.

Radix auricularia populations in Lake Baikal and adjacent waterbodies

Morphological and genetic intraspecific variability, species delineation, and invasion history of Radix auricularia

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Publication Date
2022-06-29
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Authors
Katrin Schniebs
T. Ya. Sitnikova
Maxim V. Vinarski
Anke Müller
И. В. Ханаев
Anna K. Hundsdoerfer
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