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Updated: Feb 2, 2026

Characterization of Aquatic Biofilms with Flow Cytometry
Published on: June 6, 2018
Differential response to heat stress among evolutionary lineages of an aquatic invertebrate species complex
Sofia Paraskevopoulou1,2, Ralph Tiedemann3, Guntram Weithoff2,4
1Institute of Biochemistry and Biology, Unit of Evolutionary Biology and Systematic Zoology, University of Potsdam, D-14476 Potsdam, Germany paraskevopou@uni-potsdam.de.
Abstract:
Under global warming scenarios, rising temperatures can constitute heat stress to which species may respond differentially. Within a described species, knowledge on cryptic diversity is of further relevance, as different lineages/cryptic species may respond differentially to environmental change. The Brachionus calyciflorus species complex (Rotifera), which was recently described using integrative taxonomy, is an essential component of aquatic ecosystems. Here, we tested the hypothesis that these (formerly cryptic) species differ in their heat tolerance. We assigned 47 clones with nuclear ITS1 (nuITS1) and mitochondrial COI (mtCOI) markers to evolutionary lineages, now named B. calyciflorus sensu stricto (s.s.) and B. fernandoi We selected 15 representative clones and assessed their heat tolerance as a bi-dimensional phenotypic trait affected by both the intensity and duration of heat stress. We found two distinct groups, with B. calyciflorus s.s. clones having higher heat tolerance than the novel species B. fernandoi This apparent temperature specialization among former cryptic species underscores the necessity of a sound species delimitation and assignment, when organismal responses to environmental changes are investigated.
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