02 August 2017

Hagen, 1870

Hagen HA. 1870. Monograph of the North American Astacidae. Illustrated Catalogue of the Museum of Comparative Zoology at Harvard College 3: 1-109. http://dx.doi.org/10.5962/bhl.title.4923

Abstract

Without abstract. First paragraph of Introduction:

The following monograph of the Fresh-water Crawfishes of North America is intended to form the first step in a scientific examination of the rich crustacean materials contained in the Museum of Comparative Zoology at Harvard College, in Cambridge. The excellent monograph of the genus Callinectes, published by Mr. A. Ordway in 1863, is the only work about Crustacea, based principally upon the Cambridge collection.

Keywords: None provided.

Note: While doing some research to make a point, I discovered that the original species description for Procambarus fallax, the sexual form of Marmorkrebs, is available online. Since taxonomic sources are not cited anywhere near often enough, I include it here. The Procambarus fallax description is on pages 45 and 46 (mostly in Latin).

01 August 2017

Biffis, 2017

Biffis C. 2017. Comparative studies in the development of the nervous system in malacostracan crustaceans. Doctoral dissertation, Biology, Humboldt-Universität zu Berlin. http://dx.doi.org/10.18452/18061

Abstract

The present study addresses the development of the nervous system in three malacostracans species: the euphausiacean Meganyctiphanes norvegica, and the two decapods Penaeus monodon (Dendrobranchiata) and Procambarus fallax f. virginalis (Astacida). Based on the use of antibody stainings and fluorescent dyes in combination with CLSM and 3D reconstruction, the observations cover the onset of axogenesis and follow the establishment of the axonal scaffold in a consistent and comprehensive sequence through the embryonic and the post-embryonic development. The development of the nervous system reveals a general developmental pattern shared by the three investigated species. With a comparative approach, the observed pattern is discussed with respect to the segmental organization of the animals’ body. In particular, the development of the peripheral and of the enteric nervous systems plays a crucial role in the process of guiding the main axonal scaffold. In this context, the medulla terminalis, which in the nauplius larvae of M. norvegica and P. monodon develops strictly associated to a pair of frontal sensory organs, is proposed as a separate unit and not part of the tripartite brain. The homology of these sensory organs with the “frontal filaments” of non-malacostracan crustaceans and a new interpretation of the so called “lateral protocerebrum” in the developmental ground pattern of the Crustacea are discussed against the current phylogenetic background. Moreover, the present study offers a precise identification of the single structures forming the stomatogastric nervous system and provides a review of the former nomenclature. The interpretation of the labrum as a non-segmental appendage associated to the stomatogastric nervous system is advanced. Finally, the present study proposes the development of the nervous system as the result of the coordinated interaction of three independent nervous systems, i.e. the central, the enteric and the peripheral. As a consequence, the development of the axonal scaffold, i.e. the formation of the basal network of afferents and efferents necessary for the connection among these three systems, appears uncoupled from the segmentation process.

Keywords: None provided.

30 July 2017

Kukule Kankanamge, 2017

Kukule Kankanamge M. 2017. Analysis of chitinase activity. Master’s thesis, Biological Sciences, Bowling Green State University, Bowling Green, Ohio. http://rave.ohiolink.edu/etdc/view?acc_num=bgsu1498843764486231

Abstract

The oomycete Aphanomyces astaci infects crayfish, which can result in the mass mortality commonly referred to as “crayfish plague.” Additional oomycetes in the genera Aphanomyces and Saprolegnia also infect crayfish. In the present study, two distinct organisms were isolated and identified from infected marbled crayfish Procambarus fallax forma virginalis and two phylogenetic trees based on internal transcribed spacer I (ITSI) were constructed using MEGA 7 software and maximum likelihood method with 1000 bootstraps. It is known that crayfish pathogens that infect crayfish produce chitinases that enable them to penetrate the cuticle of the crayfish. Preliminary testing for chitinase activity of Aphanomyces sp. indicated that in vitro growth in terms of surface area of the plates covered by mycelia and dry weight of mycelia increased with increasing chitin concentration from 1%-3% and leveled off at 4% chitin. The effects of chitin on timing of sporangia formation and zoospore release of Apahanomyces sp. suggested that chitin plays a role in asexual reproduction of the pathogen. The time taken for Aphanomyces sp. to develop sporangia and zoospore release increased with the amount of chitin incorporated in the media. Based on these observations, isolates of Aphanomyces sp. and of Saprolegnia sp. were tested for their chitinase activity. Both isolates could utilize chitin as carbon and nitrogen source in their growth. Additional experiments suggested that the chitinase activity of Aphanomyces sp. and Saprolegnia sp. involved an unidentified acidic substance produced by both organisms. Dinitrosalicylic acid assay (DNS assay) indicated the presence of unidentified secondary metabolites and/or pigment produced by Saprolegnia sp. and Aphanomyces sp.in nutrient deprived media. In DNS assay, the media with chitin and water in which both pathogens were grown showed highest absorbance after 72 hours indicating the possibility of their maximum production of chitinase and other enzymes within 48-72 hours. Based on the average absorbance readings, Aphanomyces sp. could be producing significantly higher amount of enzymes that break down chitinous cuticle compared to Saprolegnia sp. Overall, the observations made in this study could indicate chitinase production in Aphanomyces sp. and Saprolegnia sp.

Keywords: crayfish pathogen • Aphanomyces astaciSaprolegnia sp. • chitinase • dinitro salicylic acid assay

06 July 2017

Vodovsky and colleagues, 2017

Vodovsky N, Patoka J, Kouba A. 2017. Ecosystem of Caspian Sea threatened by pet-traded non-indigenous crayfish. Biological Invasions 19(7): 2207–2217. https://doi.org/10.1007/s10530-017-1433-1

Abstract

Freshwater ecosystems are particularly vulnerable to biological invasions; the aquatic animal pet trade has been recognized as a significant pathway of introductions. Crayfish are considered a model group of traded organisms with a series of highly successful species already established in the wild, having the potential to negatively influence both indigenous crayfish species (ICS) as well as alter occupied ecosystems. Eastern Europe includes the entire native ranges of indigenous Astacus leptodactylus sensu lato and A. pachypus. This region has been largely overlooked and considered relatively safe from the adverse impacts of non-indigenous crayfish species (NICS). In this study, we evaluated the crayfish pet trade in the Lower Volga Region with special emphasis on Astrakhan, the biggest city of Russian Federation in the region located just in the delta of Volga River, thus being a potential gateway of introductions to the Caspian Sea and adjacent freshwaters. The local pet trade involves 12 NICS. Considering their origin, availability, probability of establishment, invasiveness and further aspects, Procambarus fallax f. virginalis, P. clarkii and Cherax destructor are considered potentially the most problematic, including transmission of diseases like crayfish plague caused by Aphanomyces astaci or white spot syndrome virus. Taking this information as a whole, the availability of NICS with a high probability of overlapping the entire range of European ICS means that attention is warranted. Further research is needed to corroborate the abilities of NICS and their associated diseases to withstand specific conditions of the Caspian Sea as well as the adjacent Black and Azov Seas, all possessing different degrees of elevated salinity.

Keywords: aquarium • invasiveness • ornamental animal • Pet trade • Russian Federation • salinity

Uderbayev and colleagues, 2017

Uderbayev T, Patoka J, Beisembayev R, Petrtý M, Bláha M, Kouba A. 2017. Risk assessment of pet-traded decapod crustaceans in the Republic of Kazakhstan, the leading country in Central Asia. Knowledge and Management of Aquatic Ecosystems 418: 30. https://doi.org/10.1051/kmae/2017018

Abstract

The pet trade with decapod crustaceans has been considered one of the main pathway of introduction of these animals worldwide. As the leading markets in this regards are the Czech Republic, Germany and the USA. Central Asia is not perceived as an important market with ornamental decapod crustaceans. Despite this assumption, we found at least 16 species of freshwater shrimp, crayfish and crab species pet-traded in the Republic of Kazakhstan, the largest country in this region. Considering computed risk assessment, the origin of particular species, their availability on the market, the probability of establishment and further aspects, we identified two crayfish Procambarus clarkii and Procambarus fallax f. virginalis being the seriously hazardous taxa with high potential to threaten native crayfish species as well as inhabited ecosystems. To prevent their introductions and to minimize the risks of mentioned species, similarly as in the case of European Union, we recommend the total ban of import, trade and keeping of these high-risk taxa within Central Asia.

Keywords: Biological invasion • climate matching • introduction pathway • Procambarus clarkiiProcambarus fallax f. virginalis

22 June 2017

Lyko, 2017

Lyko F. 2017. Ein Krebs für die Krebsforschung. Biologie in unserer Zeit 47(3): 172–177. http://dx.doi.org/10.1002/biuz.201710620

Abstract

Marmorkrebs (or marbled crayfish) is a triploid crayfish known since the mid-1990s, which reproduces parthenogenetically. It originated from the North American decapod species Procambarus fallax and was distributed as a popular aquarium pet. Subsequent anthropogenic releases have resulted in the establishment of several stable populations in the wild that constitute a serious invasive threat. Interestingly, marbled crayfish use a parthenogenetic mode of reproduction that results in the generation of clones with minimal genetic variation. In addition, the animals can be easily bred and manipulated in the laboratory. These features establish marbled crayfish as a novel and innovative model organism for tumor biology, particularly for the analysis of clonal evolution and epigenetic adaptation of tumor genomes.

Keywords: Marmorkrebs • tumor biology • clonal evolution • epigentics

(Note: The main text of the article is in German. Keywords are translated from German.)

12 June 2017

Martin and colleagues, 2016

Martin A, Serano JM, Jarvis E, Bruce HS, Wang J, Ray S, Barker CA, O’Connell LC, Patel NH. 2016. CRISPR/Cas9 mutagenesis reveals versatile roles of Hox genes in crustacean limb specification and evolution. Current Biology 26(1): 14-26. https://doi.org/10.1016/j.cub.2015.11.021

Abstract

Crustaceans possess a diverse array of specialized limbs. Although shifts in Hox gene expression domains have been postulated to play a role in generating this limb diversity, little functional data have been provided to understand the precise roles of Hox genes during crustacean development. We used a combination of CRISPR/Cas9-targeted mutagenesis and RNAi knockdown to decipher the function of the six Hox genes expressed in the developing mouth and trunk of the amphipod Parhyale hawaiensis. These experimentally manipulated animals display specific and striking homeotic transformations. We found that abdominal-A (abd-A) and Abdominal-B (Abd-B) are required for proper posterior patterning, with knockout of Abd-B resulting in an animal with thoracic type legs along what would have been an abdomen, and abd-A disruption generating a simplified body plan characterized by a loss of specialization in both abdominal and thoracic appendages. In the thorax, Ubx is necessary for gill development and for repression of gnathal fate, and Antp dictates claw morphology. In the mouth, Scr and Antp confer the part-gnathal, part-thoracic hybrid identity of the maxilliped, and Scr and Dfd prevent antennal identity in posterior head segments. Our results allow us to define the role Hox genes play in specifying each appendage type in Parhyale, including the modular nature by which some appendages are patterned by Hox gene inputs. In addition, we define how changes in Hox gene expression have generated morphological differences between crustacean species. Finally, we also highlight the utility of CRISPR/Cas9-based somatic mutagenesis in emerging model organisms.

Keywords: None provided.

Note: Marmorkrebs appear in Figure 7D, described in the main text with the incomplete species name, “Procambarus fallax.” The Supplemental Experimental Procedures provide the full name, confirming that these are Marmorkrebs.