14 January 2020

Vogt, 2019

Vogt G. 2019. Estimating the young evolutionary age of marbled crayfish from museum samples. Journal of Natural History 53(39–40): 2353–2363. https://doi.org/10.1080/00222933.2019.1702730

Abstract

The obligately parthenogenetic, all-female marbled crayfish, Procambarus virginalis, is a triploid descendant of the similarly looking, sexually reproducing slough crayfish, Procambarus fallax, native to Florida and southern Georgia. We have earlier hypothesised that marbled crayfish may have originated from P. fallax only some 25 years ago, perhaps in captivity. In order to investigate the young evolutionary age hypothesis in more detail, I searched the P. fallax collection of the Smithsonian Institution Museum of Natural History (USNM, Washington, D.C.) for evidence of marbled crayfish before its detection in the German aquarium trade in 1995. In particular, I analysed the sex ratio of P. fallax and the frequency of pure female samples throughout its entire distribution range to detect potentially misidentified marbled crayfish among the P. fallax. If marbled crayfish had originated from P. fallax long ago, spread throughout Florida and Georgia and erroneously been sampled as P. fallax, then the sex ratio of the P. fallax in the collection should be significantly biased towards females and pure female samples should be much more frequent than in related Procambarus species. Comparison of P. fallax (n = 2299) with its closest relatives P. seminolae (n = 801) and P. leonensis (n = 150) revealed female proportions of 55.33%, 53.93% and 54.67%, respectively, which are not significantly different from each other. The average female proportion of the 14 Procambarus species investigated (8641 specimens) was 52.54 ± 7.54% (mean ± standard deviation). Moreover, pure female samples consisting of more than 3 specimens that could represent hidden marbled crayfish were not conspicuously more common in P. fallax (2.33%) than in all Procambarus species investigated (1.24 ± 1.79%). These data suggest that the P. fallax collection of the USNM consists of real, sexually reproducing P. fallax and does most likely not include hidden marbled crayfish, supporting the young evolutionary age hypothesis for marbled crayfish.

Keywords: Marbled crayfish • evolution • Procambarus • museum collection • sex ratio

06 January 2020

2019 was the second best year ever for Marmorkrebs research

I am a little late, but the tradition continues!


This is a conservative estimate of the research activity around Marmorkrebs, because it only includes journal articles, not doctoral theses or the Forum Flusskrebse articles and the like.

As with previous years, the articles are roughly evenly split between interest in Marmorkrebs as a lab animal used for basic research, and Marmorkrebs as an potential or actual invasive species. And indeed, reports emerged (not yet published) of Marmorkrebs in three more countries: France, Denmark, and Israel. The latter is the first report from the Middle East.

Like their introductions into natural ecosystems, the research trendline shows no signs of slowing down.

Update, 14 January 2020: Another paper came out with a 2019 cover date, so the graph is now updated!


Related posts

2008 was the best year ever for Marmorkrebs research
2009 was tied for the best year ever in Marmorkrebs research
2010 was the best year ever for Marmorkrebs research
2011 was not the best year ever for Marmorkrebs research
2012 was an average year for Marmorkrebs research
2013 was the second best year ever for Marmorkrebs research
2014 was a good year for Marmorkrebs research
2015 was the best year ever for Marmorkrebs research
2016 was the best year ever for Marmorkrebs research
2017 was the second best year ever for Marmorkrebs research
2018 was the second best year ever for Marmorkrebs research

04 January 2020

Lyko, 2020

Lyko F. 2020. Epigenetic adaptation in a clonal invasive crayfish. Symposium presentation at Society for Integrative and Comparative Biology, 3-7 January 2020, Austin, Texas, USA. http://vps40083.inmotionhosting.com/~sicb/meetings/2020/schedule/abstractdetails.php?id=3

Abstract

The parthenogenetic marbled crayfish (Procambarus virginalis) is a novel species that has rapidly invaded and colonized various different habitats. Remarkably, adaptation to different environments appears to be independent of the selection of genetic variants, as marbled crayfish represent an evolutionary young and genetically homogeneous clone. It therefore seems likely that marbled crayfish adaptation depends on epigenetic mechanisms. We have recently established the complete genome sequence of the marbled crayfish and identified an active DNA methylation system, thus establishing the capacity for epigentic regulation of this genome. We are now using integrated analysis of DNA methylation, chromatin and gene expression datasets to characterize the regulatory mechanism(s) used for epigenetic adaptation in marbled crayfish. In addition, we are analyzing epigenetic modification patterns of animals from ecologically distinct habitats at the population scale. Our results provide novel insights into invertebrate DNA methylation and its function in adaptive gene regulation.

Keywords: None provided.

(Note: This presentation was scheduled to be part of the symposium, “Building Bridges from Genome to Phenome: Molecules, Methods and Models.” It was not presented due to author’s inability to travel.)

24 December 2019

Knudsen and colleagues, 2019

Knudsen SW, Agersnap S, Møller PR, Andersen JH. 2019. Development of species-specific eDNA-based test systems for monitoring of freshwater crayfish. Norwegian Institute for Water Research. http://hdl.handle.net/11250/2633765

Abstract

This MONIS 5 report focuses on freshwater crayfish and was funded by the Danish Environmental Protection Agency. The aim of the present study was to develop species-specific systems for tracking environmental DNA (eDNA) from nine species of freshwater crayfish in water samples. Among these nine species, only one (Astacus astacus) can be considered indigenous in Scandinavia, and among the other eight non-indigenous species; two (Astacus leptodactylus and Pacifastacus leniusculus) are frequently encountered in Scandinavian freshwater systems. The remaining seven non-indigenous species are rarely encountered in Scandinavia but have been recorded in the past from other places in Europe. It is our aim that the nine species-specific eDNA assays presented here will allow for continuous monitoring of both the one indigenous species, the two non-indigenous species more frequently encountered and help produce early warnings of the seven non-indigenous species that might disperse to Denmark.

Keywords: non-indigenous species • eDNA • monitoring • freshwater crayfish

26 November 2019

DeLeon and colleagues 2019

DeLeon H III, Garcia J Jr., Silva DC, Quintanilla O, Faulkes Z, Thomas JM III. 2019. Culturing embryonic cells from the parthenogenetic clonal marble crayfish (Marmorkrebs) Procambarus virginalis Lyko, 2017 (Decapoda: Astacidea: Cambaridae). Journal of Crustacean Biology 39(6): 758–763. https://doi.org/10.1093/jcbiol/ruz063.

Abstract

The parthenogenetic marbled crayfish, or Marmorkrebs (Procambarus virginalis Lyko 2017), is an emerging model organism. We describe a method to isolate cells from early-stage embryos and culture them in vitro. The identity of the cells was confirmed by sequencing the cytochrome c oxidase subunit I (COI) gene. This technique can be applied for use in the manipulation of embryonic parthenogenetic crayfish cells.

Keywords: cell culture • embryos • invasive species • model organisms • ontogeny • techniques

21 November 2019

Travel awards for International Association of Astacology 2020

Applications are now open for five Student Travel Awards (US$500) for the 23rd Biennial Symposium of the International Association of Astacology, in Hluboká nad Vltavou, Czech Republic, from 29 June 2010 to 3 July 2020.

The deadline for Student Travel Award applications is 10 February 2020. Award notifications will be no later than 15 March 2020. Questions can be emailed to Jim Furse, chair of the Student Travel Awards committee: j.furse@griffith.edu.au.

Applicants must be society members by the application deadline and be presenting at the symposium. Student memberships are free for the first year. (Processing membership applications may take a few days, however.) Information on membership is available here or by emailing Jim Stoeckel at jimstoeckel@auburn.edu.

External links

International Association for Astacology
2020 IAA conference website

07 November 2019

Linzmaier, 2019

Linzmaier SM. 2019. Ecology and evolution in novel communities: The marbled crayfish and its interaction partners. Doctoral thesis, Department of Biology, Chemistry and Pharmacy, Freie Universität Berlin. http://dx.doi.org/10.17169/refubium-25647

Abstract

Ecosystems worldwide are undergoing drastic changes caused by the intentional and unintentional transfer of species between them. This anthropogenic process has accelerated within the last centuries, creating novel ecosystems which harbor species assemblages devoid of a shared evolutionary history. When novel organisms interact with their new environment and the members of the invaded community, they often exhibit different or even new traits compared to established species. These interactions can thus be difficult to predict, and they can have far-reaching consequences on biotic and abiotic components of the ecosystem. Especially differences in trophic interactions and behaviors can cause the most severe repercussions of species invasions. Therefore, a deeper understanding of the mechanisms underlying the invasion process informs general ideas of community assembly and can help predict potential invasions and the risks associated with it. To gain an understanding of the interactions within novel communities, this dissertation combines empirical and theoretical approaches from the fields of community, invasion and behavioral ecology. The first chapter of the thesis presents a framework for risk assessments of novel organisms based on trophic interactions. A fundamental ecological principle, the functional response (i.e. the per-capita consumption rate as a function of resource density) is used to identify and quantify trophic traits of novel organisms linked to invasion success. The new approach presented in this chapter prioritizes and selects subsets of trophic links within the system in question and demonstrates the application of functional responses while including multiple potential interaction partners in the invaded system. The invasion of marbled crayfish Procambarus virginalis into Germany and a resident non-native congener (spiny-cheek crayfish Faxonius limosus) are used to illustrate the framework. However, the framework is applicable to a variety of novel organisms and invasion scenarios. The second chapter implements the framework from Chapter 1 by executing the aforementioned example within a laboratory study and the parameterization of a mechanistic functional response model. Predator-prey interactions between the crayfish species and individuals feeding on a key aquatic primary consumer (Dreissena spp.) are examined in great detail to mechanistically explain trophic-trait differences. Data from video-recordings of foraging and feeding events are used to model and predict functional responses from independently derived predation parameters. In addition, modeled and empirically observed functional responses are linked to individual behavioral traits. Furthermore, this chapter demonstrates and discusses the explanatory power of the predation parameters on functional responses. The third chapter assesses and compares behavioral traits that are important for the invasion success of crayfish species. Individual traits related to interspecific interactions – such as agonistic behavior between two crayfish and the response to predators, but also activity, which is related to foraging – are tested therein. In addition, correlations between behaviors, or so-called behavioral syndromes, are evaluated. This chapter also compares behavioral differences between naïve aquarium and naturalized individuals of marbled crayfish, and discusses the overall importance of the observed behavioral traits for novel communities. In the fourth and final chapter, the prey-choice of marbled crayfish compared to that of established spiny cheek crayfish from field sites were investigated in the laboratory and contrasted with diet data from invaded lakes. Also, the trophic position and trophic niche size are determined to assess the ecological function of each species. To understand what resources the species use and which prey items or resources are mostly impacted, preferences and consumption rates were measured in predator-free environments and computed from stable isotopes of lake ecosystems. This part of the dissertation delivers insights into the in situ impacts of marbled crayfish in invaded food webs by highlighting particularly important interactions in an ecosystem context. My thesis provides a novel interaction framework applicable for risk assessments of novel organisms (Chapter 1). It advances fundamental principles of ecology and invasion biology by providing a detailed, mechanistic examination and modeling of predator-prey interactions (Chapter 2), including the behavioral aspects (Chapter 3) and the food web effects (Chapter 4) of the novel, invasive marbled crayfish and a functionally similar comparator species, the spiny-cheek crayfish.

Keywords: ecological novelty • functional responses • freshwater crayfish • behavioral syndromes • biological invasions • over-invasions • trophic niche • predator–prey interactions