G‘O‘ZАNING YOVVOYI АVSTRАLIYA HАMDА АFRO-OSIYO TURLАRI TURICHI XILMА-XILLIKLАRINI TURLАRАRO DURАGАYLАSH
##submission.downloads##
Genetika – selektsiyaviy tadqiqotlarda foydalanish hamda qimmatli xo‘jalik belgilar potensialiga ega boshlang‘ich manbalar
olish maqsadida, g‘o‘za germoplazmasidagi mavjud yovvoyi avstraliya diploid turlari bilan afro-osiyo turiga mansub turichi
xilma-xilliklari asosida genomlararo duragaylash ishlari olib borilgan. Turlararo duragaylash tadqiqotlarining dastlabki natijalari,
o‘rganilgan G genomga mansub avstraliya yovvoyi g‘o‘zalari А 1 genomli G.herbaceum L. kenja tur va shakllaridan uzoqligini,
shu bilan birga, ruderal shakllariga (sub.sp pseudoarboreum, sub.sp pseudoarboreum f. harga) filogenetik jixatdan nisbatan
yaqinligini ko‘rsatdi. G genomga mansub avstraliya yovvoyi g‘o‘zalari А 1 genomli G.herbaceum L. kenja tur va shakllari
o‘rtasidagi genetik polimorfizmni aniqlash, qimmatli xo‘jalik xossalariga javob beruvchi belgilar bilan genetik birikkan DNK
markerlari ishtirokida PZR (polimeraza zanjir reaksiyasi) tahlillari olib borish natijasida, ABI5, SAPK2, BNL 1604, BNL 1122,
NAU 3478, JESPR156 DNK markerlarida o‘rganilgan tur va shakllar o‘rtasida polimorfizm mavjudligi aniqlangan.
1. Campbell BT, Saha S, Percy R, Frelichowski J, Jenkind JN, et al. (2010) Status of the global cotton germplasm resource.
Crop Sci 50: 1161-1179.
2. Abdurakhmonov I.Y, Buriev Z.T, Shermatov S.E, Abdullaev A.A, Urmonov K, et al. (2012) Genetic diversity in
Gossypium genus. In: Caliksan M (ed.). Genetic diversity in plants. InTech, Uzbekistan, Central Asia.
3. Khush G, Brar DS (2017) Alien introgression in rice. Nucleus 60: 251-261.
4. Benkang, G. and Cun, M. (1996) China Cotton Breeding resistant to Disease. Nanjing: Jiangsu Science and Technology
Publishing Press.
5. Wang, C., Ulloa, M., Duong, T. and Roberts, P.A. (2018a) Quantitative trait loci mapping of multiple independent loci for
resistance to Fusarium oxysporum f. sp. vasinfectum races 1 and 4 in an interspecific cotton population. Phytopathology,
108, 759-767.
6. Wang, Y., Feng, S., Li, S., Tang, D., Chen, Y., Chen, Y. and Zhou, B. (2018c) Inducement and identification of
chromosome introgression and translocation of Gossypium australe on Gossypium hirsutum. BMC Genom. 19, 15.
7. Benbouza, H., Lognay, G., Scheffler, J., Baudoin, J.P. and Mergeai, G. (2009) Expression of the ‘glanded-plant and
glandless-seed’ trait of Australian diploid cottons in different genetic backgrounds. Euphytica, 165, 211–221.
8. Chen, Y., Wang, Y., Wang, K., Zhu, X., Guo, W., Zhang, T. and Zhou, B. (2014) Construction of a complete set of alien
chromosome addition lines from G. australe in G.hirsutum: morphological, cytological, and genotypic characterization.
Theor. Appl. Genet. 127, 1105–1121.
9. Wendel, J.F., Stewart, J.M. and Rettig, J.H. (1991) Molecular evidence for homoploid reticulate evolution in Australian
species of Gossypium. Evolution, 45, 694-711.
10. He, J. X., and S. W. Sun, 1994: A Scheme for introgression of delayed gland morphogenesis gene from wild G.bickii into
cultivated upland cotton (G. hirsutum). Acta Genet. Sin. (Chinese Journal of Genetics) 21, 52-58.
11. Yin X, Zhan R, He Y, Song S, Wang L, Ge Y, et al. (2020) Morphological description of a novel synthetic allotetraploid
(A1A1G3G3) of G. herbaceum L. and G.nelsonii Fryx. Suitable for disease-resistant breeding applications. PLoS ONE
15(12): e0242620. https://doi.org/ 10.1371/journal.pone.0242620.
12. Доспехов Б.А. Методика полевого опыта // Москва: Агропромиздат, 1985. – 351 с.
Mulkiiyat (c) 2026 «O‘zMU XABARLARI»

Ushbu ish quyidagi litsenziya asosida ruxsatlangan Kreativ Commons Attribution-NonCommercial-ShareAlike 4.0 International litsenziyasi asosida bu ish ruxsatlangan..




.jpg)

.png)




