POPULATION DIFFERENTIATION OF THE WOODLOUSE ONISCUS ASELLUS IN CENTRAL EUROPE (ISOPODA: ONISCOIDEA)
Magnus Wang, Arnd Schreiber
Abstract
Open-access reader
Magnus Wang, Arnd Schreiber
Abstract
Open-access reader
Thirteen allozyme gene loci were assayed in 264 Oniscus asellus L. from 10 collection sites in Central Europe. Three biallelic polymorphisms (glutamate-oxaloacetate transaminase Got-2*, glucose-phosphate, and isocitrate Icd-2*) and 1 triallelic system (Got-1*) are described. The questionably biallelic Icd-l* was omitted from subsequent data analysis. Optimized conditions for an allozymic survey of O. asellus are presented. The GST-fixation indices and the genetic interpopulation distances generally increased with the geographic distance separating population pairs. However, the geographic differentiation appeared very low when considering that a woodlouse lacks efficient means for active, locomotory dispersal. Moreover, the population samples could not be combined to geographically meaningful groupings. Three reasons possibly explaining the notable genetic population cohesion of a soil-dwelling isopod are discussed: the recent postglacial colonization of the Central European study area by O. asellus, human-aided passive dispersal on a large scale, and very abundant population sizes which minimize the among-stock differentiation by genetic drift.
OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Thirteen allozyme gene loci were assayed in 264 Oniscus asellus L. from 10 collection sites in Central Europe. Three biallelic polymorphisms (glutamate-oxaloacetate transaminase Got-2*, glucose-phosphate, and isocitrate Icd-2*) and 1 triallelic system (Got-1*) are described. The questionably biallelic Icd-l* was omitted from subsequent data analysis. Optimized conditions for an allozymic survey of O. asellus are presented. The GST-fixation indices and the genetic interpopulation distances generally increased with the geographic distance separating population pairs. However, the geographic differentiation appeared very low when considering that a woodlouse lacks efficient means for active, locomotory dispersal. Moreover, the population samples could not be combined to geographically meaningful groupings. Three reasons possibly explaining the notable genetic population cohesion of a soil-dwelling isopod are discussed: the recent postglacial colonization of the Central European study area by O. asellus, human-aided passive dispersal on a large scale, and very abundant population sizes which minimize the among-stock differentiation by genetic drift.
Key concepts: Biology, Biological dispersal, Isopoda, Population, Zoology, Ecology, Genetic structure, Genetic variation