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At least 19 recordsLinked to original sources

Genome structure and divergence of nucleotide sequences in echinodermata.

The arrangement of repetitive and single-copy DNA sequences has been studied in DNA of some species of Echinodermata--sea urchin, starfishes and sea-cucumber. Comparison of the reassociation kinetics of short and long DNA fragments indicates that the pattern of DNA sequence organization of all these species is similar to the so-called "Xenopus pattern" characteristic of the genomes of most animals and plants. However, substantional variations have been found in the amount of repetitive nucleotide sequences in DNA of different species and in the length of DNA regions containing adjacent single-copy and repetitive sequences. Measurements of the size of S1-nuclease resistant reassociated repetitive DNA sequences show a variability of ratios between long and short repetitive DNA sequences of different species.--The degree of divergence of short and long repetitive DNA sequences and single-copy DNA was studied by molecular hybridization of the sea urchin Strongylocentrotus intermedius 3H-DNA with the DNA of other species and by determination of the thermostability of the hybridized molecules so obtained. All three fractions of S. intermedius DNA contain sequences homologous to DNA of the other echinoderm species studied. The results obtained suggest that short repetitive DNA sequences are those which have been most highly conserved throughout the evolution of Echinodermata. A new hypothesis is proposed to explain the nature of the evolutionary changes in DNA sequence interspersion patterns.

Animals↗

Localization of acrosomal enzymes in Arthropoda, Echinodermata and Vertebrata.

The presence and localization of acrosin and hyaluronidase have been detected by immunocytochemistry in animals belonging to different phyla and characterized by the different structure of the acrosomal complex. Acrosin is widely distributed from Insecta to Echinodermata and Vertebrata; hyaluronidase has a similar diffusion, but seems to be absent from an Insect and from Echinodermata. The presence of extraacrosomal layer and perforatorium seems not to be related to that of the two enzymes, that are absent from Teleost species devoid of acrosome or having only a pseudoacrosome.

Acrosin↗

[Single copy and repetitive nucleotide sequences in the genome of Echinodermata. II. Nucleotide sequence divergence of DNA of echinoderms].

The degree of divergence of short and long repetitive DNA sequences and single copy DNA of five Echinodermata species (sea urchins, starfish, sea-cucumber) was studied by the method of molecular hybridization. Different fractions of 3H-DNA of the sea urchin Strongylocentrotus intermedius were hybridized with the DNA of other species. Thermal stability of the hybridized DNA molecules was determined. The results obtained suggest that short repetitive sequences were most conservative during the evolution of Echinodermata. Single copy DNA fractions of closely related sea urchin species (S. intermedius and S. nudus) have more homologous sequences than long repetitive DNA fractions of the same species. The DNA of evolutionary distant species (sea urchin and starfish) have more homologous long repetitive sequences than the single copy ones. All DNA fractions of S. intermedius have sequences hybridized with the DNA of all other species studied: short repetitive sequences--55%, long repetitive sequences--20%, single copy sequences--12%.

Animals↗

[Single copy and repetitive DNA sequences of Echinodermata. I. Arrangement of DNA sequences of different multiplicity].

Arrangement of repetitive and single copy DNA sequences in the DNA of 8 Echinodermata species (sea urchins, starfishes and sea-cucumber) has been studied. Comparison of the reassociation kinetics of short and long DNA fragments assayed by hydroxyapatite binding indicates that the pattern of DNA sequence organization of all these species is similar to the so called Xenopus pattern found in genomes of most animals and plants. Interspecies differences consist mainly in the quantities of sequences of various repetition degrees and their interspersion with each other and with single copy sequences. Measurements of the size of S1 nuclease resistant reassociated repetitive sequences show variability in the relative quantities of long and short repetitive sequences of different species. Difference in the arrangement of single copy and repetitive sequences between Echinodermata species are not related to their evolutionary proximity.

Animals↗

Alteration of bioluminescence in Amphipholis squamata (Ophiuroidea: Echinodermata) by heavy metals contamination: a field study.

The ophiuroid Amphipholis squamata (Echinodermata) is a bioluminescent species whose light production varies with physico-chemical parameters of the medium. Individuals collected in the bay of Portman along a gradient of heavy metal contamination show different patterns of light production: the ones from the highest contaminated area showing a bioluminescence weaker and slower than those from the lowest contaminated area. Individuals that were transferred for 3 days from the lowest to the highest contaminated area displayed a light production that became weaker and slower. It is suggested that the decrease of the bioluminescent capability due to heavy metal pollution could indirectly affect the ophiuroid ecological success (bioluminescence is associated with defense functions in ophiuroids.

Animals↗

Higher ribosomal RNA substitution rates in Bacillariophyceae and Dasycladales than in Mollusca, Echinodermata, and Actinistia-Tetrapoda.

Molecular evolutionary rates within two protistan and three metazoan taxa were estimated using divergence times derived from fossil records. The results indicate that the small-subunit rRNA sequences within Dasycladales (Chlorophyta) and Bacillariophyceae evolved at a rate approximately two to three times faster than that estimated within Echinodermata, Mollusca, and Actinistia-Tetrapoda. It was concluded that this twofold discrepancy demonstrates actual taxonomic differences in the fixation rate of mutations in the small-subunit rRNA.

Animals↗

Discoplana malagasensis sp. nov., a new turbellarian (Platyhelminthes: Polycladida: Leptoplanidae) symbiotic in an ophiuroid (Echinodermata), with a cladistic analysis of the Discoplana/Euplana species.

A new species of polyclad flatworm from Papua New Guinea is described. It is found symbiotic in the ophiuroid Ophiothrix purpurea von Martens, 1867 (Echinodermata: Ophiuroidea). Apparently it belongs to the taxon Discoplana Bock, 1913 and can be distinguished from the six previously described Discoplana species by its very short ejaculatory duct and a penial papilla covered with a penial sheath, but without any true sclerotised structures such as a stylet or spines. The cladistic analysis of the Discoplana/ Euplana species, based on morphological features and including two outgroups, reveals that all species of Discoplana, except D. pacificola, form a monophyletic taxon, that is not a synonym of Euplana Girard, 1893. Therefore the name Discoplana is conserved and the new species will be described as Discoplana malagasensis sp. nov. A key for the Discoplana/Euplana group is provided. In this key the biogeographical distribution and possible synonyms are given.

Animals↗

[Divergence of repetitive DNA sequences in Echinodermata. I. Comparison of sequences with a high degree of intragenomic divergence].

The molecular DNA-DNA hybridization method was used for comparison of repetitive sequences with a high degree of intragenomic divergence in seven species of echinodermata, representatives of three classes of this type, and also for a representative of the type Annelida. The value of intragenomic divergence was estimated with respect to a thermolabile fraction of repetitive [3H]DNA of Strongylocentrotus intermedius isolated by thermoelution at 70 degrees after reassociation up to C0t=140. The data obtained indicate a significant conservatism of the given fraction: its homologues are present in DNA of all the species studied. Hybridization of the thermolabile fraction of [3H]DNA S. intermedius at C0t=10 and 1000 allowed one to estimate the divergence of sequences in DNA of all the species studied. Hybridization of the thermolabile fraction of [3H]DNA highly repetitive sequences of the given DNA fraction is more appreciable than that of moderately repetitive ones. Intragenomic divergence of moderately repetitive thermolabile sequences is higher than that of highly repetitive sequences both in phylogenetically close and distant species of sea urchins.

Animals↗

System-theoretical (Holistic) approach to the modelling of structural-functional relationships of biomolecules and their evolution: an example of triterpene glycosides from sea cucumbers (Echinodermata, holothurioidea).

Triterpene glycosides from sea cucumbers (Holothurioidea, Echinodermata) are used as a model for studying the biochemical evolution for correlation between the glycoside membranolytic activity and biological functions. Concepts of evolutionary morphology are applied at the molecular level. The concept of Van-der-Klaauve's- Dullemeijer's system-theoretical (holistic) approach is used for the model of structural-functional relationships of the glycosides. Network diagrams of structural-functional relationships have been prepared for many glycosides. The diagrams correlate well with experimental data and show a very complex and flexible action of the natural selection on the structural fragments of the glycosides. The diagrams also show overlapping in the functional components that provide stability to the general structural plan of glycosides during evolution. The method may be applied to other biomolecules.

Animals↗

Ultrastructural evidence for the existence of steroid synthesizing cells in the ovary of the starfish. Asterias rubens (echinodermata).

The ultrastructure of cells showing characteristic features of steroid producing cells in the ovaries of the starfish. Asterias rubens, is described. The correlation between the appearance of these cells and steroid biosynthesis in ovarian tissue of A. rubens is discussed. The importance of the discovery of these cells in view of the biosynthesis of steroids and the phylogeny of Echinodermata is mentioned.

Animals↗

Identification of Hox Gene Sequences in the Sea Cucumber Holothuria glaberrima Selenka (Holothuroidea: Echinodermata).

The Echinodermata is a unique animal group forming an early branch in the deuterostomes phylogenetic tree. In echinoids and asteroids a single Hox cluster with nine cognates of the vertebrate Hox paralogous groups has been reported, but no data are available from other echinoderm classes. We report here nine Hox-type sequences from the sea cucumber Holothuria glaberrima, a member of the class Holothuroidea. Partial homeodomain sequences were amplified by polymerase chain reaction from genomic DNA and from a regenerating gastrointestinal tract complementary DNA library. Sequence analyses suggest that the holothuroid cluster has at least three genes of the anterior, one of the medial, and five of the posterior groups. This is the first evidence of five posterior sequences in echinoderms.

Journal Article↗

Tauropine dehydrogenase from the starfish Asterina pectinifera (Echinodermata: Asteroidea): presence of opine production pathway in a deuterostome invertebrate.

Tauropine dehydrogenase (tauropine:NAD oxidoreductase; TaDH) was purified to homogeneity from the body wall of the starfish Asterina pectinifera Müller at Troschel(Echinodermata: Asteroidea) by means of (NH4)2SO4 precipitation followed by column chromatographies in DEAE-cellulose, Sephadex G75, Macro-prep ceramic hydroxyapatite, PBE 94, and Toyopearl HW50S. The enzyme was a monomeric protein of approximately 42000 Da and pI 5.2. The maximum rate of the tauropine biosynthetic reaction was observed at pH 6.0, and that of the tauropine catabolic reaction was at pH 8.7-9.2. Taurine and pyruvate were the preferred substrates. The tauropine catabolic reaction was inhibited by the substrate tauropine: the peak rate was observed at 12.5 mM. Apparent Km values for NADH, taurine, and pyruvate were 0.036 +/- 0.002, 21.3 +/- 1.6, and 0.46 +/- 0.02 mM, respectively, and for tauropine and NAD+ were 2.64 +/- 0.73 and 0.068 +/- 0.005 mM, respectively. The molecular and catalytic properties of the starfish TaDH were basically similar to those of TaDH from other species belonging to the lower invertebrate phyla and the middle phyla of Prostostomia. Tauropine accumulation in vivo during experimental anoxia was also demonstrated. These results gave clear evidence of opine production pathway in deutrostome invertebrate.

Amino Acid Oxidoreductases↗

[Regulation of histogenesis in the axial organ of echinoderms (Echinodermata) according to findings from diffusion chamber cultivation].

Fragments of axial organs of different echinoderms were cultivated together with the gonad epithelium in the diffusion chambers made of millipore filters impermeable for cells (VUFS). Under these conditions, the histogenesis of amoebocytes suffered definite changes: the number of middle amoebocytes increased 2-3 times and that of large amoebocytes decreased correspondingly. Similar results were obtained not only under the direct contact of two tissues, but also under the contact realized through the millipore filter impermeable for cells. Corticosteroid agents of vertebrates did not influence the histogenesis of amoebocytes in Echinodermata.

Animals↗

Involvement of cyclic nucleotides and IP(3) in the regulation of luminescence in the brittlestar Amphipholis squamata (Echinodermata).

We investigated the effects of cyclic nucleotides (cGMP, cAMP) and the phosphoinositide IP(3) on the luminescence of the ophiuroid Amphipholis squamata. The cGMP analogue, dibutyryl-cGMP, and the guanylate cyclase activator, sodium nitroprusside, had no effect on the luminescence. The cAMP analogue, dibutyryl-cAMP, and the adenylate cyclase activator, forskolin, triggered luminescence. Moreover, the adenylate cyclase inhibitor, MDL-12330A, significantly reduced ACh-induced luminescence. The phospholipase C inhibitor, U-73122, also significantly reduced ACh-induced luminescence. The results suggest that ACh-induced luminescence is mediated by both cAMP and IP(3) pathways but not by cGMP. The effects of calcium-free ASW confirmed this hypothesis. A hypothetical scheme of the transduction mechanisms involved in the intracellular control of luminescence is presented.

Adenylyl Cyclase Inhibitors↗