QUYON QO‘SHIMCHA MAHSULOTLARINING MINERAL TARKIBINI O‘RGANISH

##plugins.themes.bootstrap3.article.main##

Mamatov Zafar Mamadjanovich
Ibragimov Alidjan Aminovich
Nazarov Otabek Mamadaliyevich

Annotatsiya

Ushbu maqolada Farg‘ona viloyatida yetishtiriladigan quyonning terisi; juni; jigar, buyrak va yuragining mineral tarkibi induktiv bog‘langan plazmali optik emission spektrometriya usuli bilan tadqiq qilish natijalari keltirilgan. Tahlil natijalariga ko‘ra tadqiq qilingan 30 ta elementdan teri va jigar, buyrak va yurak tarkibida 21 ta hamda junida 20 ta  elementning miqdori aniqlangan. Quyon jigar, buyrak va yuragi makroelementlarga boy ekanligi aniqlanib, terisiga nisbatan 1,58 va juniga nibatan 2,65 marta ko‘proq miqdorda makroelementlarga egadir. Makroelementlardan fosfor, kaliy va magniy quyon jigar, buyrak va yuragi tarkibida, natriy terisida hamda oltingugurt va kaltsiy junida eng ko‘p miqdorda aniqlangan. Mikroelementlardan litiy, bor, alyuminiy, kremniy, vanadiy, xrom, marganets, temir. kobalt, nikel, mis, rux, strontsiy, molibdenlarning miqdori aniqlandi. Quon jigar, buyrak va yuragida temir miqdori qolgan namunalarga qaraganda 1,86-1,97 marta hamda junida rux miqdori 7,6-8 marta ko‘proq ekanligi namoyon bo‘ldi. Tadqiq qilngan namunalar tarkibida toksik elementlardan faqat oz miqdorda kadmiy aniqlandi.

##plugins.themes.bootstrap3.article.details##

Bo‘lim
Ilmiy axborot
Mualliflar biografiyasi

Mamatov Zafar Mamadjanovich, Farg‘ona davlat universiteti

Farg‘ona davlat universiteti, doktorant

Ibragimov Alidjan Aminovich, Farg‘ona davlat universiteti

Farg‘ona davlat universiteti, k.f.d., professor

Nazarov Otabek Mamadaliyevich, Farg‘ona davlat universiteti

Fargona davlat universiteti, k.f.f.d.,(PhD), dotsent

Foydalaniladigan adabiyotlar

Ding H., Zhao H., Cheng G., Yang Y., Wang X., Zhao X., Qi Y.Huang D. (2019). Analyses of histological and transcriptome differences in the skin of short-hair and long-hair rabbits. BMC Genomics. 20,140.

Zhao B., Chen J., Yan X., Zhu J.,Weng Q., Wu X. (2017). Gene expression profiling analysis reveals fur development in Rex rabbits (Oryctolagus cuniculus). Genome. 60, 1060–1067.

Dorożyńska, K.; Maj, D. (2021). Rabbits – their domestication and molecular genetics of hair coat development and quality. Animal Genetics. 52(1),10–20.

Grădinaru A. (2017). The Transylvanian Giant rabbit: an efficient selection for qualitative and quantitative genetic traits. Rabbit Genetics. 7,1.

Carneiro M., Afonso S., Geraldes A., Garreau H., Bolet G., Boucher S., Tircazes A., Queney G., Nachman M. W. Ferrand N. (2011). The genetic structure of domestic rabbits. Molecular biology and evolution. Molecular Biology and Evolution. 28,1801–1816.

Carneiro M., Afonso S., Geraldes A., Garreau H., Bolet G., Boucher S., Tircazes A., Queney G., Nachman M. W. Ferrand N. (2011). The genetic structure of domestic rabbits. Molecular Biology and Evolution. 28,1801–1816.

Gutterres M. (2003). Efeito do Curtimento sobre a Microestrutura Dérmica. Revista do Couro Abqtic, Estância Velha, 26,56-59.

Souza M.L.R. (2008). Tecnologia para processamento das peles de peixe. Maringá: Eduem. 3 Ed.

Souza M.L.R., Hoch A.L., Gasparino E., Scapinello C., Mesquita Dourado D., Claudino Da Silva S.C., Lala B. (2016). Compositional analysis and physicochemical and mechanical testing of tanned rabbit skins. World Rabbit Sci. 24,233-238.

Herman Brow(1926). The mineral content of human, dog, and rabbit skin. Journal of Biological Chemistry. 68(3),729-736.

Ushbu muallif(lar)ning maqolalari, eng ko‘p o‘qilgan

<< < 1 2