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Dual-Probe FISH on Butterfly Chromosomes: Step-By-Step Technique. / Вишневская, Мария Сергеевна; Егиян, Игорь Викторович.

In: Cell and Tissue Biology, Vol. 19, No. 6, 30.09.2025, p. 590-596.

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Вишневская, Мария Сергеевна ; Егиян, Игорь Викторович. / Dual-Probe FISH on Butterfly Chromosomes: Step-By-Step Technique. In: Cell and Tissue Biology. 2025 ; Vol. 19, No. 6. pp. 590-596.

BibTeX

@article{0c33ebdee7114b43891cc29b5baaa4d8,
title = "Dual-Probe FISH on Butterfly Chromosomes: Step-By-Step Technique",
abstract = "Abstract: Objective: Karyotype diversity in some groups of Lepidoptera is associated with chromosomal rearrangements that are difficult to detect due to the structural features of lepidopteran chromosomes—the absence of a localized centromere. Methods: This article describes a technique for conducting fluorescence in situ hybridization (FISH) with two probes on chromosomes of Lepidoptera representatives. Blue butterflies of the genus Polyommatus (subgenus Agrodiaetus, family Lycaenidae) were chosen as the model organism. 18S rDNA and telomeric repeats (TTAGG)n were used as markers. The distinctive feature of this technique is the use of probes of different lengths—short (28 nucleotides) and long (1100 nucleotides)—labeled with different reporter molecules: a probe conjugated with fluorochrome (Cy3) was used for detecting telomeric repeats, while a biotinylated probe requiring immunochemical detection was used for detecting 18S rDNA. Results: Data on the localization of 18S rDNA and telomeric repeat markers for Polyommatus (A.) admetus malievi were obtained. Conclusions: The described technique allows for the independent construction of specific probes for the studied material and successful conduct of dual-probe FISH with probes significantly differing in length on butterfly chromosomes (Lepidoptera, Rhopalocera).",
keywords = "18S rDNA, Agrodiaetus, Lepidoptera, dual-probe FISH, telomeric repeats",
author = "Вишневская, {Мария Сергеевна} and Егиян, {Игорь Викторович}",
year = "2025",
month = sep,
day = "30",
doi = "10.1134/s1990519x25600206",
language = "English",
volume = "19",
pages = "590--596",
journal = "Cell and Tissue Biology",
issn = "1990-519X",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "6",

}

RIS

TY - JOUR

T1 - Dual-Probe FISH on Butterfly Chromosomes: Step-By-Step Technique

AU - Вишневская, Мария Сергеевна

AU - Егиян, Игорь Викторович

PY - 2025/9/30

Y1 - 2025/9/30

N2 - Abstract: Objective: Karyotype diversity in some groups of Lepidoptera is associated with chromosomal rearrangements that are difficult to detect due to the structural features of lepidopteran chromosomes—the absence of a localized centromere. Methods: This article describes a technique for conducting fluorescence in situ hybridization (FISH) with two probes on chromosomes of Lepidoptera representatives. Blue butterflies of the genus Polyommatus (subgenus Agrodiaetus, family Lycaenidae) were chosen as the model organism. 18S rDNA and telomeric repeats (TTAGG)n were used as markers. The distinctive feature of this technique is the use of probes of different lengths—short (28 nucleotides) and long (1100 nucleotides)—labeled with different reporter molecules: a probe conjugated with fluorochrome (Cy3) was used for detecting telomeric repeats, while a biotinylated probe requiring immunochemical detection was used for detecting 18S rDNA. Results: Data on the localization of 18S rDNA and telomeric repeat markers for Polyommatus (A.) admetus malievi were obtained. Conclusions: The described technique allows for the independent construction of specific probes for the studied material and successful conduct of dual-probe FISH with probes significantly differing in length on butterfly chromosomes (Lepidoptera, Rhopalocera).

AB - Abstract: Objective: Karyotype diversity in some groups of Lepidoptera is associated with chromosomal rearrangements that are difficult to detect due to the structural features of lepidopteran chromosomes—the absence of a localized centromere. Methods: This article describes a technique for conducting fluorescence in situ hybridization (FISH) with two probes on chromosomes of Lepidoptera representatives. Blue butterflies of the genus Polyommatus (subgenus Agrodiaetus, family Lycaenidae) were chosen as the model organism. 18S rDNA and telomeric repeats (TTAGG)n were used as markers. The distinctive feature of this technique is the use of probes of different lengths—short (28 nucleotides) and long (1100 nucleotides)—labeled with different reporter molecules: a probe conjugated with fluorochrome (Cy3) was used for detecting telomeric repeats, while a biotinylated probe requiring immunochemical detection was used for detecting 18S rDNA. Results: Data on the localization of 18S rDNA and telomeric repeat markers for Polyommatus (A.) admetus malievi were obtained. Conclusions: The described technique allows for the independent construction of specific probes for the studied material and successful conduct of dual-probe FISH with probes significantly differing in length on butterfly chromosomes (Lepidoptera, Rhopalocera).

KW - 18S rDNA

KW - Agrodiaetus

KW - Lepidoptera

KW - dual-probe FISH

KW - telomeric repeats

UR - https://www.mendeley.com/catalogue/38c7a8cd-32a2-36c0-8903-87a71eaa759c/

U2 - 10.1134/s1990519x25600206

DO - 10.1134/s1990519x25600206

M3 - Article

VL - 19

SP - 590

EP - 596

JO - Cell and Tissue Biology

JF - Cell and Tissue Biology

SN - 1990-519X

IS - 6

ER -

ID: 141947824