MORPHOLOGICAL AND MOLECULAR GENETIC DESCRIPTION OF THE MALARIOUS MOSQUITO ANOPHELES HYRCANUS PALLAS (1771) IN THE SURKHANDARYA NATURAL GEOGRAPHICAL REGION
This article published a study conducted on malarial mosquitoes of the genus Anopheles Meigen (1818) in the Surkhandarya
region. In particular, information is given on the basis of the coordinates of observation points on morphological features and the
results of molecular genetic analysis of the species Anopheles hyrcanus Pallas (1771) from the genus Anopheles Meigen (1818),
belonging to the family Culicidae.
1. Alam M.S., Khan M.G., Chaudhury N., Deloer S., Nazib F., Bangali A.M. et al. Prevalence of anopheline species and their
Plasmodium infection status in epidemic-prone border areas of Bangladesh. Malar J. 2010; 9:15. https://
doi.org/10.1186/1475-2875-9-15. 6.
2. Chen K., Wang Y., Li X.Y., Peng H., Ma Y.J. Sequencing and analysis of the complete mitochondrial genome in
Anopheles sinensis (Diptera: Culicidae). Infect Dis Poverty. 2017;6(1):149.
3. Chu H., Li C., Guo X., Zhang H., Luo P., Wu Z., Wang G., Zhao T. The phylogenetic relationships of known mosquito
(Diptera: Culicidae) mitogenomes. Mitochondrial DNA A DNA Mapp Seq Anal. 2018; 29(1):31-5. 9.
4. Davidson J.R., Wahid I., Sudirman R., Small S.T., Hendershot A.L., Baskin R.N. et al. Molecular analysis reveals a high
diversity of Anopheles species in Karama West Sulawesi Indonesia. Parasit Vectors. 2020; 13:379. 27.
5. Demari-Silva B., Foster P.G., de Oliveira T.M., Bergo E.S., Sanabani S.S., Pessoa R., Sallum M.A. Mitochondrial genomes
and comparative analyses of Culex camposi, Culex coronator, Culex usquatus and Culex usquatissimus (Diptera:
Culicidae), members of the coronator group. BMC Genomics. 2015; 16:831.
6. Fang Y., Shi W.Q., Zhang Y. Research progress in classifcation of Anopheles hyrcanus group (Diptera: Culicidae). Chin J.
Parasitol Paras Dis. 2016; 34(6):565-70 (in Chinese).
7. Feng X., Huang L., Lin L., Yang M., Ma Y. Genetic diversity and population structure of the primary malaria vector
Anopheles sinensis (Diptera: Culicidae) in China inferred by cox1 gene. Parasit Vectors. 2017;10(1):75.
8. Gao B., Fang Y., Zhang J., Wu R., Xu B., Xie L. A DNA barcoding based study to identify Main mosquito species in
Taiwan and its difference from those in mainland China. Comb Chem High Throughput Screen. 2017;20(2):147–52.
9. Habirov Z., Kadamov D., Iskandarov F., Komilova S., Cook S., Mc. Alister E.and Harbach R.E. 2012. Malaria and the
Anopheles mosquitoes of Tajikistan. Vector Ecol J. 37: 419 Ð 427.
10. Harbach R.E. The phylogeny and classifcation of Anopheles. In: Manguin S., editor. Anopheles mosquitoes-new insights
into malaria vectors. Rijeka: InTech; 2013. p. 3–55.
11. Jeong K.Y., Un S., Lee J., Lee I.Y., Yong T.S., Ree H.I. Population dynamics of fve Anopheles species of the Hyrcanus
group in northern Gyeonggi-do, Korea. Korean J. Parasitol. 2010;48(4):351-3. https://doi.org/10.3347/kjp. 2010.48.4.351.
12. Jung J., Jung Y., Min G.S., Kim W. Analysis of the population genetic structure of the malaria vector Anopheles sinensis in
South Korea based on mitochondrial sequences. Am J. Trop Med Hyg. 2007;77(2):310 -5.
13. Kadamov D.S., Zvantsov A.B., Karimov S.S., Gordeyev M.I., Goryacheva I.I., Ezhov M.N. and Todzhiboyev A. 2012.
Malaria mosquitoes (Diptera, Culicidae, Anopheles) of North Tajikistan, their ecology and role in the transmission of
malaria pathogens. Med. Parazitol. Parazit. Bolezni 2012 (3): 30 Ð34.
14. Kadamov D.S., and Zvantsov A.B. 2010. Teaching module for entomologists on the malaria vectors of Tajikistan and their
control methods. Ministry of Health of Tajikistan, Dushanbe, Tajikistan.
15. Lobo N.F., Laurent B.S., Sikaala C.H., Hamainza B., Chanda J., Chinula D. Et al. Unexpected diversity of Anopheles
species in eastern Zambia: implications for evaluating vector behavior and interventions using molecular tools. Sci Rep.
2015; 5:17952.
16. Makhawi A.M., Liu X.B., Yang S.R., Liu Q.Y. Genetic variations of ND5 gene of mtDNA in populations of Anopheles
sinensis (Diptera: Culicidae) malaria vector in China. Parasit Vectors. 2013; 6:290.
17. Андреева Ю.В. Морфологический анализ палеарктических видов малярийных комаров комплекса "Anopheles
maculipennis" (Diptera, Culicidae) // Дисс. на соис. учён. степ. канд. биол. наук. Томск, 2007. -160с. С. 75, 142-160.
18. Гуцевич А.В. и др. Фауна СССР. Комары / авторы: Гуцевич А.В., Мончадский А.С., Штакельберг А.А. Ленинград.
«Наука». 1970. 384 с. С. 210.
19. Жахонгиров Ш.М. Безгак чивинлари ва уларга қарши кураш: Ўқув қўлланма. - Самарканд. - 2013. – 180-б.
Библ.“Безгакка қарши курашда энтомологик кузатувлар” боб.
20. Жаҳонгиров Ш.М., Нурмаматов Ш., Ҳамзаев Р.А. Тиббий энтомология. /Ўқув қўлланма. Ўзбекистон соғлиқни
сақлаш вазирлиги Исаев Л.М. номидаги тиббий паазитология илмий текшириш институти. Самарқанд, «Navro‘z
poligraf» МЧЖ. 2016. – 292-б. С. 21, 56.
21. Павловский Е.Н. Методы изучения кровососущих комаров (Сulicidae) / Сост. Павловский Е.Н. - 2-е изд., расш. и
перераб. - Москва; Ленинград: Изд-во Акад. наук СССР, 1935. 176 с.
22. Штакельберг А.А. Фауна СССР: Насекомые двукрылые. Т.III. Вып. 4. Сем. Culicidae. Кровососущие комары.
(Подсем. Culicinae). Новая серия № 11. Издат. АН СССР. М.-Л., 1937. - 260 с. С. 90-93, 96-99.
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