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A 9.6 kb intervening sequence in D. virilis rDNA, and sequence homology in rDNA interruptions of diverse species of Drosophila and other diptera.

A large proportion of the 28S ribosomal RNA genes in Drosophila virilis are interrupted by a DNA sequence 9.6 kilobase pairs long. As regards both its presence and its position in the 28S gene (about two thirds of the way in), the D. virilis rDNA intervening sequence is similar to that found in D. melanogaster rDNA, but lengths differ markedly between the two species. Degrees of nucleotide sequence homology have been detected bewteen rDNA interruptions of the two species. This homology extends to putative rDNA intervening sequences in diverse higher diptera (other Drosophila species, the house fly and the flesh fly), but hybridization of cloned D. melanogaster and D. virilis rDNA interruption segments to DNA of several lower diptera has been negative. As is the case with melanogaster rDNA interruptions, segments of the virilis rDNA intervening sequence hybridize with non-rDNA components of the virilis genome, and interspecific homology may involve these non-rDNA sequences as well as rDNA interruptions. There is, however, evidence from buoyant density fractionation of DNA that the distributions of interruption-related sequences are distinct in D. melanogaster and D. virilis genomes. Moreover, thermal denaturation studies have indicated differing extents of homology between hybridizable sequences in D. virilis DNA and different segments of the D. melanogaster rDNA intervening sequence. We infer from our studies that rDNA intervening sequences are prevalent among higher diptera; that in the course of the evolution of these organisms, elements of the intervening sequences have been moderately to highly conserved; and that this conservation extends in at least two distantly related species of Drosophila to similar sequences found elsewhere in the genomes.

Animals

[Diptera fauna from the nests of birds on the Volga-Kama State Preserve].

504 nests of 11 species of birds were examined in the Volga-Kama state reserve. 57,430 specimens of Diptera belonging to 19 species and 13 families were collected from the nests. The schemes of the life cycle of Diptera, nest-burrow parasites of birds (Carnus hemapterus Nitzsch, Stenepteryx hirundinis L., Protocalliphora azurea Fallen) are given and some moments of the ecology of nonparasitic species are illustrated.

Animals

Hemoglobins, XXIX. Sequence analysis of a dimeric hemoglobin (erythrocruorin), CTT-X, of Chironomus thummi thummi (Diptera).

The amino acid sequences of one of the dimeric hemoglobin components, CTT-X, of Chironomus thummi thummi (Diptera) are given. The sequences were determined by automatic Edman degradation of tryptic peptides and peptides obtained by specific chemical cleavages. CTT-X has two different polypeptide chains, each with 151 amino acid residues. The two polypeptide chains differ only in one amino acid. The sequences are discussed in the light of the sequences of other related heme-proteins.

Amino Acid Sequence

The genome sequence of a window fly, Scenopinus jerei Pohjoismäki & Haarto, 2021 (Diptera: Scenopinidae).

We present a genome assembly from an individual male Scenopinus jerei (window fly; Arthropoda; Insecta; Diptera; Scenopinidae). The assembly contains two haplotypes with total lengths of 345.25 megabases and 232.44 megabases. Most of haplotype 1 (94.85%) is scaffolded into 5 chromosomal pseudomolecules, including the X and Y sex chromosomes. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 16.52 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Scenopinus jerei; window fly; genome sequence; chr

The genome sequence of a blow fly, Melanomya nana (Meigen, 1826) (Diptera: Calliphoridae).

We present a genome assembly from an individual male Melanomya nana (blow fly; Arthropoda; Insecta; Diptera; Calliphoridae). The assembly contains two haplotypes with total lengths of 1 391.98 megabases and 1 424.34 megabases. Most of haplotype 1 (99.62%) is scaffolded into 5 chromosomal pseudomolecules. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 27.12 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of a hoverfly , Neoascia tenur (Harris, 1780) (Diptera: Syrphidae).

We present a genome assembly from an individual femal Neoascia tenur (hoverfly; Arthropoda; Insecta; Diptera; Syrphidae). The genome sequence has a total length of 491.77 megabases. Most of the assembly (97.23%) is scaffolded into 4 chromosomal pseudomolecules. The mitochondrial genome has also been assembled, with a length of 16.31 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of the muscid fly, Hydrotaea similis Meade, 1887 (Diptera: Muscidae).

We present a genome assembly from an individual female Hydrotaea similis (muscid fly; Arthropoda; Insecta; Diptera; Muscidae). The assembly contains two haplotypes with total lengths of 884.66 megabases and 852.78 megabases. Most of haplotype 1 (90.83%) is scaffolded into 5 chromosomal pseudomolecules. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 20.27 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of the Silver Colonel, Odontomyia argentata (Fabricius, 1794) (Diptera: Stratiomyidae).

We present a genome assembly from an individual female Odontomyia argentata (Silver Colonel; Arthropoda; Insecta; Diptera; Stratiomyidae). The assembly contains two haplotypes with total lengths of 1 950.48 megabases and 1 937.58 megabases. Most of haplotype 1 (95.92%) is scaffolded into 6 chromosomal pseudomolecules. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 17.0 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of a muscid fly, Lispocephala verna (Fabricius, 1794) (Diptera: Muscidae).

We present a genome assembly from an individual female Lispocephala verna (muscid fly; Arthropoda; Insecta; Diptera; Muscidae). The assembly contains two haplotypes with total lengths of 987.71 megabases and 934.62 megabases. Most of haplotype 1 (95.8%) is scaffolded into 5 chromosomal pseudomolecules. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 16.34 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of the fungus gnat, Macrocera phalerata Wiedemann in Meigen, 1818 (Diptera: Keroplatidae).

We present a genome assembly from an individual female Macrocera phalerata (fungus gnat; Arthropoda; Insecta; Diptera; Keroplatidae). The genome sequence has a total length of 572.81 megabases. Most of the assembly (97.46%) is scaffolded into 5 chromosomal pseudomolecules. The mitochondrial genome has also been assembled, with a length of 20.98 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

The genome sequence of an opomyzid fly, Geomyza tripunctata Fallen, 1823 (Diptera: Opomyzidae).

We present a genome assembly from an individual female Geomyza tripunctata (opomyzid fly; Arthropoda; Insecta; Diptera; Opomyzidae). The genome sequence has a total length of 223.30 megabases. Most of the assembly (99.67%) is scaffolded into 3 chromosomal pseudomolecules. The mitochondrial genome has also been assembled, with a length of 16.03 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Cereal Fly

The genome sequence of a muscid fly, Hydrotaea militaris (Meigen, 1826) (Diptera: Muscidae).

We present a genome assembly from an individual female Hydrotaea militaris (Arthropoda; Insecta; Diptera; Muscidae). The assembly contains two haplotypes with total lengths of 1 703.03 megabases and 1 760.39 megabases. Most of haplotype 1 (96.2%) is scaffolded into 6 chromosomal pseudomolecules. Haplotype 2 was assembled to scaffold level. The mitochondrial genome has also been assembled, with a length of 18.83 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces genomes for eukaryotic species found in Britain and Ireland.

Diptera

[Hemoglobins, XXV. Hemoglobin (erythrocruorin) CTT III from Chironomus thummi thummi (Diptera). Primary structure and relationship to other heme proteins (author's transl)].

The amino acid sequence analysis of hemoglobin (erythrocruorin) CTT III from Chironomus thummi th. (Diptera) has been checked with automatic methods and completed. The protein chain consists of 136 amino acids and contains a neutral exchange isoleucine/threonine in position 57. The molecular weight of the heme protein (Thr) is 15400. The primary structure gives the chemical basis for the refinement of the X-ray structure and the understanding of the mechanism of the Bohr effect in this monomeric hemoglobin. A homologous alignment to vertebrate globins is reported. The resulting data for the phylogeny of proto-and deuterostomian animals and the function of this hemoglobin are discussed.

Amino Acid Sequence