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I B Raikov

Publications and source records attributed to I B Raikov.

8 recordsLinked to original sources

Unusual extrusive organelles in karyorelictid ciliates: an argument for the ancient origin of this group.

The karyorelictid ciliates never possess extrusomes that are typical of most other ciliates, i.e. trichocysts, mucocysts, and toxicysts, but instead present unusual types of extrusive organelles, most existing nowhere else. These organelles are: (1) Nematocysts with a filament making only 2-3 coils in the longitudinal plane, in Remanella multinucleata; (2) 'Orthonematocysts' with a short straight internal filament, in Remanella rugosa and R. brunnea; (3) Tiny bottle-shaped organelles somewhat resembling haptocysts, in Remanella granulosa; (4) Rhabdocysts, arrow-shaped extrusomes somewhat resembling certain trichocysts but undergoing no strong elongation during extrusion, in species of Tracheloraphis and in Kentrophoros latum; (5) Ampullocysts, complex vesicular organelles with hyaline secretion, occurring in Kentrophoros latum; (6) pigmentocysts or extrusible pigment granules, often with some internal structure, in almost all karyorelictids (Trachelocerca, Tracheloraphis, Trachelonema, Loxodes, Remanella, Geleia). This is the only type of cortical organelles the karyorelictids share with other ciliates, namely, the Heterotrichida (Stentor, Blepharisma). This highly aberrant set of extrusomes in karyorelictids argues that they are a very ancient branch of ciliates which separated from the main trunk early in evolution, conserving or developing an unusual set of extrusomes independently from the rest of ciliates. There is also some evidence for the relatedness of the Karyorelictida to Heterotrichida, already supposed from studies of the ciliary fibre systems and sequencing of ribosomal RNAs.

Animals↗

Changes of the DNA content of differentiating and adult macronuclei of the ciliate Loxodes magnus (Karyorelictida).

The DNA content of isolated micronuclei, differentiating macronuclei (macronuclear Anlagen), and adult macronuclei of Loxodes magnus was measured cytofluorimetrically in preparations stained with a Schiff-type reagent, auramine-SO2, following hydrochloric acid hydrolysis. The DNA content of the youngest macronuclear Anlagen proved to be the same as that of telophasic micronuclei (2 c). The Anlagen thus differentiate from micronuclei which are still in G1. The quantity of DNA in the macronuclear Anlagen thereafter rises to the 4-c level, simultaneously with DNA replication in the micronuclei which immediately follows mitosis. In non-dividing animals most micronuclei are already in G2. Adult macronuclei here contain on average 1.5 times more DNA than the micronuclei; their DNA content is about 5-6 c (in some individual nuclei, up to 10 c). These data are consistent with autoradiographic evidence indicating a weak DNA synthesis in the macronuclei of Loxodes and make likely the existence of partial DNA replication (e.g. gene amplification) in the macronuclei. The DNA content of adult macronuclei isolated from dividing animals proved to be significantly smaller than that of macronuclei isolated from non-dividing specimens of the same clone. In 3 clones studied, the former value amounted on average to 71-79, 78 and 95% of the latter, respectively. This drop of DNA content cannot be explained by 'dilution' of the old macronuclei with newly formed ones. The quantity of DNA in adult macronuclei thus seems to undergo cyclical changes correlated with cytokinesis, despite the fact that, in Loxodes magnus, the macronuclei themselves never divide and are simply segregated at every cell division. The macronuclei of Loxodes can be termed paradiploid or hyperdiploid.

Animals↗

[Ultrastructure of the nuclear apparatus of the infusorian Loxodes magnus. I. The macronuclei, macronuclear anlagen and the interphasic micronuclei].

The nuclear apparatus of Loxodes magnus Stokes (Holotricha) consists of numerous macronuclei which belong to the diploid type and never divide, and of numerous micronuclei. No nuclear groups exist; individual nuclei often lie in cytoplasmic islets surrounded by large lacunae of the smooth endoplasmic reticulum. Interphasic micronuclei have two-membraned envelopes with numerous pores, usually lined at the cytoplasmic side with a layer of vacuoles, channels, or flattened vesicles of the smooth endoplasmic reticulum. The chromatin of the micronuclei consists of anastomosing threads, 0.1--0.2 mum wide, between which several nucleolus-like bodies of microfibrillar structure occur. Adult macronuclei have a similar nuclear envelope and a similar system of vacuoles, channels, and flattened agranular cisternae outside it. The macronucleus contains a single large composite nucleolus with 3 or 4 fibrillar cores inside the common granular cortex. The fibrillar cores are pierced by channels containing nucleolar organizers in the form of strands of condensed chromatin. The peripheral zone of the macronucleus is filled with decondensed chromatin fibrils and contains a number of small chromocenters and several aggregates of RNP granules. No protein inclusions (spheres) have been observed in Loxodes macronuclei. The macronuclear anlagen, developing in the cycle of every cell division, show progressive decondensation of the chromosomes and formation of several nucleoli, each with its own organizer. Later on, the nucleoli fuse into a single nucleolus. The small chromocentres are the last to form.

Cell Division↗

Insights into the evolution of nuclear dualism in the ciliates revealed by phylogenetic analysis of rRNA sequences.

The small subunit rRNA gene sequences of the karyorelictean ciliates, Loxodes striatus and Protocruzia sp., and the heterotrichian ciliates, Climacostomum virens and Eufolliculina uhligi, were used to test the evolution of nuclear dualism in the Phylum Ciliophora. Phylogenies derived using a least squares distance method, neighbour joining, and maximum parsimony demonstrate that the karyorelictean ciliates sensu Small and Lynn, 1985 do not form a monophyletic group. However, Loxodes and the heterotrich ciliates form the first branch in the ciliate lineage, and Protocruzia branches, in distance methods, basal to the spirotrich lineage. It is proposed that Protocruzia be removed from the Class Karyorelictea, and placed in closer taxonomic association with the spirotrich lineage. The distribution of nuclear division types along the phylogenetic tree is consistent with the notion that macronuclei incapable of division represent a derived rather than a primitive or "karyorelictid" character trait.

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