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Neuronal control of respiration in decapod crustacea.

Respiratory exchange in decapod crustacea requires the coordinated activity of the heart and the scaphognathites, appendages which ventilate the gills. There is common central nervous system neuronal modulation of both autogenically active systems as well as direct neuronal communication between both systems. The heart and scaphognathites also respond directly to oxygen tension. The neuronal control of the scaphognathites also respond directly to oxygen tension. The neuronal control of the scaphognathites is analyzed at several levels. Particular attention is directed toward the means by which the innately organized and stereotyped motor pattern for forward beating can be altered to produce reversed beating. The importance of sensory feedback in maintaining normal rates of scaphognathite beating is noted. And the phenomenon of bilateral coordination between the morphologically independent scaphognathites is described. Several different models of parts of the over-all scaphognathite neuronal circuitry are presented for heuristic purposes.

Animals↗

Regulation of muscle gene expression in Crustacea over the moult cycle.

Muscle growth in Crustacea may occur during specific stages of the moult cycle, focused around ecdysis when the old cuticle is shed and the new cuticle expands. In order to determine the moult stages in which sarcomeric proteins are synthesized and the regulatory factors involved, actin mRNA levels have been measured in the muscles of two crustaceans. These levels have been followed throughout the moult cycle and in response to passive stretch of walking leg muscle in vivo and to exogenous ecydsteroids applied to muscle preparations in vitro. Actin mRNA levels in both claw and leg muscles were elevated during the pre and postmoult stages of the moult cycle. However, varying patterns of expression are found in claw and leg muscle at specific stages of pre and postmoult. There was no increase in actin mRNA expression in extensor leg muscles in vitro after 6 hours exposure to elevated premoult levels of ecdysteroids. Immobilization of intemoult walking legs to maintain the extensor muscle in continuous passive stretch did not result in increased levels of actin mRNA after 5 days. These results are discussed in relation to the regulation of muscle growth over the moult cycle and to the molecular processes which may be responsible for controlling muscle protein synthesis.

Actins↗

[Characterization of various digestive enzyme activities of Palaemon serratus Pennant (Crustacea, Decapoda) after polyacrylamide gradient gel electrophoresis].

Soluble proteins of hepatopancreatic, extracts of Palaemon serratus (Crustacea, Deapoda) are separated by polyacrylamide gradient gel electoresis. The characterisation of the enzymatic activities is carried out directly on the polyacrylamide gel. The zymogram includes the following activities: acid and alcalin phosphatses, phosphamidase, alpha-glucosidase, beta-glucosaminidase, beta-glucuronidase and twenty bands with esterasic activities. The molecular weights are indicated.

Acid Phosphatase↗

[Electrophoresis study of hemocyanin of the polytypic species Idotea chelipes and Idotea balthica basteri (Crustacea Isopoda)].

Hemocyanin has been used as a protein marker for Crustacea speciation. The specificity of the hemocyanin fractions of two Idotea species has been confirmed by mono and bidirection electrophoresis. Four protein fractions have been found in the two Idotea species. However, the molecular weight of each Idotea chelipes fraction is slightly higher. The two fractions of high molecular weight are strongly associated. We assumed a molecular weight of 240,000 for I. chelipes and 230,000 for I. balthica basteri. The two other protein fractions are well separated and have a weight of 130,000 and 77,000 in I. chelipes; 120,000 and 75,000 for I. b. basteri. In contrast, the subspeciation of I. chelipes has not been clearly demonstrated by electrophoresis of the hemocyanin.

Animals↗

Evaluation of gill nets, fyke nets, and mark-recapture methods to estimate the number of Hirudinea and Crustacea on fish.

Twenty species of fishes (n = 20,759) were collected from Dauphin Lake, Manitoba, Canada, to determine the types and numbers of ectoparasites they harbored. Counts of ectoparasites on fishes collected with different gear were compared to evaluate different methods of collection and to estimate rates of recruitment of ectoparasites by fishes. Ectoparasites were found on 11 species of fishes and the majority of these were parasitic leeches (Myzobdella moorei, Cystobranchus verilli, and Placobdella montifera) and parasitic Crustacea (Argulus appendiculosus and Lernaea cyprinacea). Some fishes also were infested by neascus-type metacercariae (blackspot) or had tumors (lymphocystis). The prevalence of ectoparasites was correlated with the abundance, feeding habits, and spatial distribution of fish species. Argulus appendiculosus and blackspot were more prevalent on benthic fishes, whereas M. moorei and tumors were more prevalent on limnetic fishes. Mark-recapture records showed that fishes occupying shallow (less than or equal to 1.5 m) water had a higher prevalence of infestation and 28 of 29 infected fishes caught by gill nets were captured in shallow water. Placobdella montifera was the only ectoparasite found on fishes from deep (1.5-3.5 m) water and the only species that was acquired by fishes previously released with no ectoparasite (2 of 239 fishes). The littoral zone (less than or equal to 1.5 m) comprises only 14% of the surface area and 3% of the volume of Dauphin Lake, yet 72% of all gill-netted fishes harboring ectoparasites were collected there. Intensities of ectoparasites estimated from gill net and pound net samples were similar, but prevalence of ectoparasites estimated from samples obtained with gill nets was lower.

Animals↗

[Lethal activity of benzamido-2 nitro-5 thiazole and its derivatives against Lymnaea peregra ovata Müller (Mollusca: Pulmonata) and Gammarus pulex pulex L. (Crustacea: Amphipoda)].

The toxicity of benzamido-2-nitro-5-thiazole (BNT) and 3 derivatives was studied on Lymnaea peregra ovata and Gammarus pulex pulex. These results were compared with the toxicity obtained by application of a basic product, niclosamide. The evaluation of LC50 (50% lethality concentration) was studied to evaluate the toxicity of each product after 4 different assay periods: 24, 48, 72 and 96 h. The compounds had a high toxicity against snails. Molluscicidal effect was higher than the lethal activity against Crustacea. The ortho substitution decreased the toxicity of products compared with BNT.

Animals↗

Gap junction pleiomorphism in the root system of the rhizocephalans (Arthropoda: Crustacea).

We have studied gap junctions in the root system of four different species of rhizocephalans (Arthropoda: Crustacea) using freeze-fracture. Numerous and often very extensive gap junctions are present between the root cells. They are of the characteristic E-type also found in other arthropods. Large junctional particles (ca. 13 nm) are located predominantly on the E-face, while complementary pits and a few dislocated particles are present on the P-face. The gap junctions show a remarkable pleiomorphism. Small macular gap junctions with rather densely packed particles, larger irregularly shaped gap junctions, often forming bands with intervening particle-free membrane domains, and gap junctions with widely dispersed particles are observed. These features are documented both in material after conventional preparation including glutaraldehyde fixation and glycerol cryoprotection and in material frozen directly in a nitrogen slush without any preceding preparation, and are discussed in relation to possible functional significance.

Animals↗

Quantification of the age-pigment lipofuscin in brains of known-age, pond-reared prawns Penaeus japonicus (Crustacea, decapoda).

A quantitative study of the lipofuscin content was carried out by image analysis in brains of known-age, pond-reared Penaeus japonicus (Crustacea, Decapoda) with the aim of assessing the applicability of the lipofuscin technique as an estimator of the physiological age in penaeids. With this purpose, three distinct measurements of lipofuscin levels (% area fraction, granule density and mean granule size) were recorded in ten sections of the olfactory lobe cell mass (OLCM) per animal. The image analysis was based on the autofluorescence emitted by the pigment, which accentuates the contrast between the lipofuscin granules and the background tissue. The concentration of lipofuscin increased significantly with age and was independent of sex. The relationship between age and lipofuscin concentration (area fraction and granule density) was best described by a seasonalized von Bertalanffy function, since the accumulation rate of the pigment dramatically slowed down in fall-winter, probably as a result of reduced seasonal metabolism. The present results confirm the potential of the lipofuscin method in the estimation of physiological age in penaeids and suggest that the application of this methodology can be useful in studies of age structure in wild populations and in the assessment of natural resources. J. Exp. Zool. 286:120-130, 2000.

Animals↗

Reexamination of hemocytes in brine shrimp (Crustacea, branchiopoda).

In 1941, a single type of hemocyte was described in the blood of the brine shrimp Artemia salina using light microscopy. This condition is unusual because most crustaceans examined using morphological, cytochemical, and functional methods have at least two types of hemoctyes. Upon examining A. franciscana, we found a single type of disk-shaped hemocyte, with a centrally located nucleus and about 15 large (6 microm diameter) granules. The granules stain for the presence of acid phosphatase and react with L-DOPA suggesting, respectively, that they are involved in degrading ingested material and possess the phenoloxidase system. Hemocytes require calcium for adhesion, bind together to mend small wounds in the body wall, and are able to phagocytose bacteria. Blood cells of A. franciscana are morphologically and functionally similar to those of the primitive chelicerate, Limulus polyphemus, and both forms have apparently given rise to more advanced taxa with multiple types of hemocytes. The major difference between the two species is the presence of the phenoloxidase system in the Crustacea and its apparent absence in the chelicerates.

Animals↗

Comparative ultrastructure of the root system in rhizocephalan barnacles (Crustacea: Cirripedia: Rhizocephala).

Rhizocephalan barnacles are parasites of Crustacea. They lack even the rudiments of an alimentary canal, but infiltrate their hosts with a nutrient-absorbing system of rootlets. We review the ultrastructure of the rootlets using light microscopy, SEM, and TEM in nine species from five families, representing both suborders of the Rhizocephala: from the Kentrogonida Peltogaster paguri, P. curvatus, Peltogasterella sulcata, Cyphosaccus norvegicus (Peltogastridae); Lernaeodiscus porcellanae (Lernaeodiscidae); and Sacculina carcini (Sacculinidae); and from the Akentrogonida Clistosaccus paguri (Clistosaccidae); Chthamalophilus delagei, and Boschmaella japonica (Chthamalophilidae). With the exception of Chthamalophilus delagei, the root system of the investigated species shares numerous apomorphies at the ultrastructural level and displays at all levels specializations that maximize the surface area. The rootlets consist of a cuticle, an epidermis and a subjacent layer of axial cells that often, but not always surround, a central lumen. The rootlets are at all times enclosed in a less than 0.5 microm thick cuticle, which is never molted. The cuticle consists of an inner homogeneous layer with a slightly fibrous structure and an outer, less than 15-nm thick electron-dense layer, from which numerous microcuticular projections extend into the hemolymphatic space of the host. The microcuticular projections consist of the outer electron-dense layer and sometimes a core of the more translucent homogeneous layer. They vary among the species from being simple in Sacculina carcini to exhibiting complex branching patterns in Peltogasterella sulcata and Cyphosaccus norvegicus. Beneath the cuticle the epidermal plasma membrane is thrown into irregularly shaped projections. The epidermal cells are joined by long septate junctions and exhibit the characteristics of a transporting epithelium. Experiments with acid phosphatase revealed activity both in the epidermis and among the microcuticular projections. The projections may therefore form a domain that is important in absorption and extracellular digestion of nutrients from the host. The axial cells contain abundant endoplasmic reticulum and seem to convert absorbed carbohydrates into lipid, which is stored in large droplets. Subepidermal muscle cells cause sinuous movements of the rootlets, but it remains unknown how nutrients are transported along the rootlets towards the external reproductive body. In C. delagei the single, bladder-shaped rootlet lacks both the apical projections in the epidermis, the electron-dense cuticle layer, and the microcuticular projections. We review previous studies on the rhizocephalan root system and discuss functional and phylogenetic aspects of the morphology.

Acid Phosphatase↗

Focused ion beam/scanning electron microscopy studies of Porcellio scaber (Isopoda, Crustacea) digestive gland epithelium cells.

The focused ion beam (FIB) was used to prepare cross sections of precisely selected regions of the digestive gland epithelium of a terrestrial isopod P. scaber (Isopoda, Crustacea) for scanning electron microscopy (SEM). The FIB/SEM system allows ad libitum selection of a region for gross morphologic to ultrastructural investigation, as the repetition of FIB/SEM operations is unrestricted. The milling parameters used in our work proved to be satisfactory to produce serial two-dimensional (2-D) cuts and/or three-dimensional (3-D) shapes on a submicrometer scale. A final, cleaning mill at lower ion currents was employed to minimize the milling artifacts. After cleaning, the milled surface was free of filament- and ridge-like milling artifacts. No other effects of the cleaning mill were observed.

Animals↗

Ultrastructural aspects of a new species, Vavraia mediterranica (Microsporidia, Pleistophoridae), parasite of the French Mediterranean shrimp, Crangon crangon (Crustacea, Decapoda).

The life cycle stages of a new species of the genus Vavraia (Microsporidia, Pleistophoridae), which parasitizes the shrimp Crangon crangon (Crustacea, Decapoda), were examined by light and electron microscopy. This parasite was monomorphic with polysporous sporogony and developed in the skeletal muscle of the host. The multinucleate sporogonial plasmodium divided by plasmotomy and multiple division into uninucleate sporoblasts. All stages were surrounded by a thick and amorphous dense coat external to the plasmalemma. This structure gradually became a merontogenetic sporophorous vacuole (MSV) where the sporonts developed into sporoblasts. The MSV was filled with episporontal granular secretory products and eventually contained up to 50 uninucleate spores. During spore morphogenesis, these episporontal granular products within the MSV became organized as episporontal tubular-like structures. In transverse sections, these structures showed a mean diameter of 1.0 microm, but disappeared during the final phase of the spore maturation. Mature spores were ellipsoidal to slightly pyriform and measured 2.30 x 1.41 microm. The polar filament was anisofilar and consisted of a single coil with six to seven turns (rarely five). This new species is named Vavraia mediterranica n. sp.

Animals↗

Measurement of uranium content and its distribution in some crustacea of Mysidacea species by the fission track method.

Uranium distributions and contents in Mysidacea species were investigated in order to be subsequently correlated with some specific properties of these crustacea. The fission track micromapping technique was used in uranium distribution and content measurements. The investigated biological samples were: (1) Javanisomysis gutzui Bacescu, 1992 and (2) Mesopodopsis slabberi Van Beneden, 1861. The determined contents varied in the range of natural background values of uranium.

Animals↗

Complete mitochondrial DNA sequence of Tigriopus japonicus (Crustacea: Copepoda).

The complete nucleotide sequence of the mitochondrial genome was determined for a harpacticoid copepod, Tigriopus japonicus (Crustacea), using an approach that employs a long polymerase chain reaction technique and primer walking. Although the genome (14,628 bp) contained the same set of 37 genes (2 ribosomal RNA, 22 transfer RNA, and 13 protein-coding genes) as found in other metazoan animals, none of the previously reported gene orders were comparable to that of T. japonicus. Furthermore, all genes were encoded on one strand, unlike the mitochondrial genomes of most metazoan animals. Size reductions were notable for tRNA and rRNA genes, resulting in one of the smallest mitochondrial genomes in the arthropod lineage. Although it appears that such large-scale gene rearrangements have occurred in the ancestral species of T. japonicus, none of the proposed mechanisms parsimoniously account for this eccentric gene arrangement.

Journal Article↗

Biochemical and histochemical observations on effects of low-level heavy metal load (lead, cadmium) in different organ systems of the freshwater crayfish, Astacus astacus L. (Crustacea: Decapoda).

The effects of low-level lead (20 micrograms/liter) and/or cadmium (2 micrograms/liter) exposure on the structure and function of different organ systems of the freshwater crayfish. Astacus astacus L. (Crustacea: Decapoda) were estimated by several biochemical and histochemical methods. The animals were incubated during 10 weeks (max.) at a temperature of 10 degrees C and a normal diurnal rhythm. Lead accumulated in high amounts especially in the digestive gland, carapax, and gills, whereas the hindgut and musculature exhibited very low lead levels. Cadmium accumulated particularly in the digestive gland and gills. Lead and cadmium levels were definitely lower in the digestive gland, gills, and carapax of animals incubated in water containing a double, i.e., lead and cadmium load, than in animals kept in water containing only one of these heavy metals. Histochemically both metals could be visualized in a typical distribution within the tissues, such as the carapax, digestive gland, or gills. After several weeks of poisoning, all organs, but especially the digestive gland, showed severe structural impairment. The activities of oxidative enzymes in the digestive gland and gills were significantly lowered after 2 weeks of incubation. Enzyme histochemical evaluation demonstrated changes of reaction intensities within the organs as compared to the controls. GSH S-transferase activities and GSH contents were also distinctly decreased following lead and/or cadmium intoxification. The histochemical demonstration of SH and S-S groups exhibited a stronger staining reaction after 10 weeks of exposure, especially in digestive gland and gills. The results obtained are discussed in view of the specific impairment of function of the organ systems studied, as related to the typical biology of the animal species tested.

Animals↗

Modulation and dynamic specification of motor rythm-generating circuits in crustacea.

The operation of central pattern generators (CPGs), oscillatory neural circuits responsible for rhythmic motor behavior, is now known to depend both on the synaptic interactions between constituent neurons and their intrinsic membrane properties (oscillatory, plateauing, etc). Moreover, these synaptic and cellular properties are not invariant, but are subject to a wide range of neuromodulatory influences that, by modifying the bioelectrical character of individual neurons and/or the strength of their synapses, are able to adapt the output of a given CPG circuit to the changing needs of the animal. Despite this ability to produce different functional configurations, however, the assumption remains of a CPG as a predefined assemblage of interconnected neurons dedicated to a particular behavior and functionally distinguishable from other circuits responsible for other tasks. However, our recent studies on the stomatogastric nervous system (STNS) of crustacea have begun to question this concept of the CPG as a discrete and identifiable entity within the central nervous system. Here we review evidence showing that under neuromodulatory instruction, individual neurons can participate in different oscillatory motor circuits and hence more than one rhythmic behaviour, and even more profoundly, preexisting networks can be dismantled to specify dynamically a new circuit for an entirely different behaviour. This de novo network construction is achieved again by neuromodulatory-induced alterations in the oscillatory and synaptic properties of individual target neurons. On this basis, therefore, a functional CPG network must be seen in a more dynamic context than previously thought since it may exist only in a particular behavioural situation dictated by modulatory influences.

Animals↗