STUDY OF THE CYTOLOGICAL STRUCTURE OF THE BRANCH OF THE PLANT GOJI (LUCIUM CHINENSE) AND THE METHOD OF PROPAGATION ON THE BASIS OF INTENSIVE TECHNOLOGY

A.T.Merganov1, N.A.Tursunov1, A.Eshonturaev1. Namangan Institute of Engineering and Technology

Abstract

The article describes experiments on the use of cuttings made from ripe red and green twigs in the propagation of Goji plants, the timing and effectiveness of rooting using cuttings growing stimulants. Concentrations of 50 mg / l of the IAA (indole acetic acid) stimulant from growth stimulants were found to be acceptable for the Goji plant. The optimal concentration of maternal solution prepared from an IAA growth stimulator was studied experimentally. Recommendations were also made for the establishment of a Goji plantation.

Keywords:

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: : Lуcium chinense, plantation, growth stimulator, indole acetic acid, cuttings, mother solution, working solution, bud, concentration

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References


References: 1. Р.A.Мерганов, Н.A.Турсунов, А.Уматова “Goji ўсимлигини кўпайтириш усуллари ва технологияси бўйича илмий услубий қўлланма” Наманган 2021 й. 17 с 2. The influence of the substrate composition on rooting of hardwood cuttings of lycium barbarum. Marija MARKOVIĆ*, Mihailo GRBIĆ, Dragana SKOČAJIĆ, Matilda ĐUKIĆ, Danijela ĐUNISIJEVIĆ-BOJOVIĆ University of Belgrade, Faculty of Forestry, Serbia. 3. Asanica A., Tudor V., Teodorescu R.I., Iacob A., Zolotoi V, Tudor A.D. (2016). Results on Hardwood Cuttings Propagation of Some Lycium sp. Genotypes, Fruit Growing Research, vol. XXXII, 63-70. 4. Goji Who? Morphological and DNA Based Authentication of a “Superfood” Sascha Wetters*, Thomas Horn and Peter Nick. Molecular Cell Biology, Karlsruhe Institute of Technology, Karlsruhe, Germany 5. Fischer D.L.O., Fernandes G.W., Borges E.A., Piana C.F.B. Pasa M.S. (2016). Rooting of blueberry hardwood cuttings as affected by irrigation water pH and IBA. Acta Hortic. 1130, 431-436 DOI: 10.17660/ActaHortic.2016.1130.64 6. Gao Y., Wei Y., Wang Y., Gao F., Chen Z. (2017). Lycium barbarum: A Traditional Chinese Herb and A Promising Anti-Aging Agent. Aging and Disease, 8(6): 778–791. http://doi.org/10.14336/AD.2017.0725 7. Levin, R. A. & Miller, J. S. Relationships within tribe Lycieae (Solanaceae): paraphyly of Lycium and multiple origins of gender dimorphism. Am. J. Bot. 92, 2044–2053 (2005). 8. Zeng, S. et al. Identifcation and Validation of Reference Genes for Quantitative Real-Time PCR Normalization and Its Applications in Lycium. PLOS ONE 9, e97039 (2014). 9. Wang, H. et al. Lycium ruthenicum studies: Molecular biology, Phytochemistry and pharmacology. Food Chem. 240, 759–766 (2018). 10. Duan, Y. et al. Protective Efect of Lycium ruthenicum Murr. Against Radiation Injury in Mice. Int. J. Environ. Res. Public. Health 12, 8332–8347 (2015). 11. 11. Zeng, S. et al. Comparative analysis of anthocyanin biosynthesis during fruit development in two Lycium species. Physiol. Plant. 150, 505–516 (2014). 12. Zhang, G. et al. Transcriptomic and functional analyses unveil the role of long non-coding RNAs in anthocyanin biosynthesis during sea buckthorn fruit ripening. DNA Res. 25, 465–476 (2018). 13. Martin, M. Cutadapt removes adapter sequences from high-throughput sequencing reads. EMBnet.journal 17, 10 (2011). 14. Sayols, S., Scherzinger, D. & Klein, H. dupRadar: a Bioconductor package for the assessment of PCR artifacts in RNA-Seq data. BMC Bioinformatics 17, 428 (2016). 15. Mortazavi, A., Williams, B. A., McCue, K., Schaefer, L. & Wold, B. Mapping and quantifying mammalian transcriptomes by RNASeq. Nat. Methods 5, 621–8 (2008). 16. Grabherr, M. G. et al. Full-length transcriptome assembly from RNA-Seq data without a reference genome. Nat. Biotechnol. 29, 644–652 (2011).

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