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A G Blinov

Publications and source records attributed to A G Blinov.

12 recordsLinked to original sources

[Molecular differences in Adh1-F and Adh1-S alleles in the sugar beet Beta vulgaris L].

We compared nucleotide sequences of exon 4 and part of exon 5 of alleles F and S of the Adh1 locus controlling alcohol dehydrogenase in sugar beet. The Adh1-F and Adh1-S sequences of the examined fragment were shown to differ by two nucleotides. Adenine (A) and cytosine (C) of Adh1-F were substituted by respectively thymine (T) and adenine (A) in Adh1-S. Consequently, glutamine and asparagine from the F subunit of ADH1 are replaced by valine and lysine, respectively. Because of differences in the amino acid content, the F subunit is by two elementary charges more negatively charged electrically than the S subunit, which correlates with differences in their electrophoretic mobility. Comparison of the examined Adh1 fragment of sugar beet with its counterparts in other plants showed that the sites bearing substitutions in the former species are classed as variable.

Aldehyde Dehydrogenase↗

[Structure and expression of the F6.2 gene in Chironomus thummi and other Chironomus species].

A full-length copy of the F6.2 gene from the tissue-specific BRa locus of the Chironomus thummi chromosome IV was isolated and analyzed. The gene contains two exons (715 and 644 bp, respectively) and one 172-bp intron. The data of the RT-PCR analysis demonstrated that F6.2 was transcriptionally active at different developmental stages of Chironomus thummi and at least in the last larval stage of C. dorsalis. The distribution of the F6.2 gene among 42 species of Chironomus, as well as among two other genera of the family Chironomidae was examined by means of PCR. The F6.2 sequence was found in 34 Chironomus species. Using in situ hybridization, three species were analyzed for the presence of the F6.2 homologous sequences. In five species, the sequence of the F6.2 PCR product was determined. In these species, the intron size polymorphism caused by the variation of the number of the intron-forming repeats was observed. The data obtained provided evaluation of the F6.2 distribution among the genus Chironomus.

Amino Acid Sequence↗

[Phylogenetic relationships among holarctic populations of Chironomus entis and Chironomus plumosus in view of possible horizontal transfer of mitochondrial genes].

In eight Holarctic populations of two typical chironomid sibling species of the plumosus group, Chrionomus entis and Chironomus plumosus, nucleotides sequences of mitochondrial (cytb) and nuclear (gb2b) gene regions were examined. The phylogenetic trees reflecting the evolutionary histories of the nuclear and mitochondrial markers exhibited significant differences. On the tree based on the nuclear gene sequences the populations clustered according to their species affiliation, whereas on the tree based on the mitochondrial gene sequences the populations were grouped according to their geographic position. This discrepancy is probably explained by mitochondrial gene flow between sympatric species with incomplete reproductive isolation (sibling species). Based on our results together with the earlier data on nuclear and mitochondrial gene sequences of some other species from the phylogenetic group plumosus, a scheme of phylogenetic relationships within this group is proposed. This scheme is in many ways different from the traditional view on the evolutionary relationships among species of the plumosus group.

Animals↗

[Headcase gene--proliferation or hormonal control?].

A new insertion allele of the hdc gene was isolated and described. The nucleotide sequence of the coding region had no detectable homology with genomic DNA of any other Drosophila species, except for D. mauritiana. Gene expression was found both in adult testes and ovaries and at embryonic and larval stages. This expression pattern exhibits a strong similarity to that of cell-cycle genes. In contrast to cycE (a typical cell-cycle gene), which leads to expression termination after in vivo culturing of the wing disk, hdc did not arrest expression. It is concluded that hdc is a species-specific differentiation gene, whose regulatory activity in the development of an organism differs from that of proliferation genes.

Animals↗

Structure and polymorphism of the Chironomus thummi gene encoding special lobe-specific silk protein, ssp160.

cDNA encoding Chironomus thummi ssp160 was used to isolate a genomic clone that hybridized in situ to band A2b on polytene chromosome IV, the site of the ssp160 gene. DNA sequencing, primer extension and gene/cDNA nucleotide sequence alignment revealed the gene contains six exons and five introns; 70% of ssp160 is encoded in exon 3. Variations between cDNA and gene sequences led to the design of a polymerase chain reaction, restriction fragment length polymorphism assay that was subsequently used to demonstrate the existence of polymorphic alleles whose distribution varied between geographically separated populations of larvae. The polymorphism is associated with codon deletions in a six-amino-acid repeat containing an N-linked glycosylation motif. These deletions may have resulted from slipped-strand mispairing during DNA replication.

Amino Acid Sequence↗

The Chironomus (Camptochironomus) tentans genome contains two non-LTR retrotransposons.

A cDNA library from salivary gland cells of Chironomus tentans was screened with a probe containing the NLRCth1 non-LTR (long terminal repeat) retrotransposon from Chironomus thummi. Several positive clones were obtained and one of them, p62, was characterized by in situ hybridization and sequencing. The sequencing analysis showed that this clone contained a 4607 bp nucleotide sequence of a new transposable element that hybridized in situ to more than 100 sites over all four C. tentans chromosomes. The detailed analysis of this sequence revealed the presence of the 3'-end of open reading frame 1 (ORF1), a complete ORF2, and a 1.3-kb 3'-end untranslated region (UTR). The new element has been designated NLRCt2 (non-LTR retrotransposon 2 from C. tentans). A comparison of the nucleotide sequences of NLRCth1 and NLRCt2 showed 30% similarity in the region of ORF1 and 70% similarity in the region of ORF2. Based on the results of Southern blot analysis, two transposable elements have been found in the C. tentans genome, one of which is identical to NLRCth1 from C. thummi. This may be explained by horizontal transmission. The second element, NLRCt2, has been found in two different forms in the C. tentans genome. These can be distinguished by the presence of the 1.3-kb 3'-end UTR in one of the forms. Since the cDNA clone investigated was isolated from a tissue-specific cDNA library, the data showed that NRLCt2 is expressed in somatic cells.

Amino Acid Sequence↗

The Chironomus thummi genome contains a non-LTR retrotransposon.

Nineteen recombinant phages containing DNA from the region of Balbiani ring a (BRa), which develops on chromosome IV in cells of the special lobe of the Chironomus thummi salivary gland, were isolated from a Chironomus thummi genomic library. Three of the clones contained transposable element sequences that hybridized to more than 100 sites on all four Chironomus chromosomes, including constant and variable sites. Two handogous clones, lambda 24 (which lacks the transposable element) and lambda 43 (which contains this insertion) were investigated by nucleotide sequence analysis. The complete nucleotide sequence of the 4.8 kb transposable element from Chironomus thummi (NLR1Cth) is reported here. This element contains two overlapping open reading frames of 1887 (ORF1) and 2649 bp (ORF2). Three cysteine motifs are found in the sequence of ORF1. Sequence similarity was found between ORF2 and known genes of viruses and transposable elements which encode reverse transcriptase. The NLR1Cth element has no long terminal repeats and is flanked by short direct repeats of the sequence TATCACTGACAAC. A 24 bp poly(dA) sequence was found at the 3' end of the element. Based upon its structural organization and comparative analysis of its nucleotide sequence we suggest that this NLR1Cth element belongs to the class of non-LTR retrotransposons. The genomic clone pC6.10 was previously obtained by microdissection and cloning of DNA from polytene chromosome IV of Chironomus thummi. A 2.4 kb insertion contained part of the 3' terminal region of the NLR1Cth element, but this differed in sequence from the first copy by several nucleotide substitutions and a shorter poly (dA) tract at the 3' end.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

MEC: a transposable element from Chironomus thummi (diptera).

Two genomic clones, pC1.2 and p20D (containing inserts of 2.0 and 1.6 kb, respectively) were isolated from the A2b region to polytene chromosome IV of Chironomus thummi thummi salivary gland cells. Upon in situ hybridization to polytene chromosomes of C. thummi thummi and C. thummi piger, p20D DNA hybridized mainly over the A2b region of chromosome IV, whereas pC1.2 DNA hybridized to at least 90 sites distributed over all the chromosomes. A partial nucleotide sequence analysis showed that these clones were very similar and allowed the detection of a 596 bp insert in the pC1.2 clone. This insert possesses all of the essential features of a Class II transposable element and was called MEC. It carries a nearly perfect 107 bp terminal inverted repeat containing one mismatch and is flanked by a 5 bp direct repeat. The 372 bp central region contains a short open reading frame with a coding capacity of 58 amino acids.

Amino Acid Sequence↗

A tissue-specific puff (Balbiani ring a) in Chironomus thummi may contain a gene encoding a 67-kDa protein which exhibits non-tissue-specific expression.

A 2.3-kb genomic clone has been isolated from the region where the tissue-specific puff, Balbiani ring a (BRa), is found on chromosome IV of the special lobe of Chironomus thummi salivary gland cells. The clone was characterized by nucleotide sequence analysis. Two clusters of direct tandem repeats were identified, as well as large and small open reading frames (ORFs). The large ORF was fused to an Escherichia coli lacZ gene. Antibodies against the beta-galactosidase/ORF fusion protein reacted selectively on Western blots with a 67-kDa protein. Western-blot analysis and immunoelectron microscopy showed that this protein was distributed in the cells of all larval tissues examined. We concluded that BRa, a tissue-specific puff, whose activity correlates with the synthesis of 160-kDa secretory protein [Kolesnikov et al., Chromosoma 83 (1981) 661-677], may also contain a gene which is not expressed in a tissue-specific manner.

Amino Acid Sequence↗