СОДЕРЖАНИЕ АМИНОКИСЛОТЫ ПРОЛИНА В УСЛОВИЯХ РАЗНОЙ ВОДООБЕСПЕЧЕННОСТИ У СОРТОВ И ЛИНИЙ МАША (VIGNA RADIATA L.)
Maqola haqida umumiy ma'lumotlar
Глобальные изменения климата, наблюдаемые в мире, вызывают повышение температуры воздуха в биосфере, а горячие ветры, возникающие из-за резкого снижения относительной влажности в летние месяцы, вызывают атмосферную и почвенную засуху. Повышение содержания аминокислоты пролина на дефицит водообеспеченности, являются надежными показателями реакции растений на водный стресс. у местного сорта Зилола маша (Vigna radiata L.) в условиях водного дефицита содержание аминокислоты пролина выше, чем у того же сорта в условиях оптимального водоснабжения, что в свою очередь доказывает наличие стресса водного дефицита протекающий в растениях маша.
1. Bohnert H.J., Nelson D.E., and Jensen R.G. Adaptations to environmental stress// Plant Cell. 1995. -№ 7. -P. 1099-1111
2. Koheil M.A.H., Hilal S.H., El-Alfy T.S., and Leistner E. Quaternary ammonium compounds in intact plants and cell suspension cultures of Atriplex semibaccata and A. halinus during osmotic stress// Phytochemistry. 1992. -№ 31. -P. 2003-2008
3. Alishah O., and Ahmadikhah A. The effects of drought stress on improved cotton varieties in Golesatn Province of Iran// Int. J. Plant Prod. 2009. -№ 3(1). -P. 17-26
4. Sperdouli I., and Moustakas M. Differential response of photosystem-II photochemistry in young and mature leaves of Arabidopsis thaliana to the onset of drought stress. Acta Physiol. Plantarum. 2012. -№ 34(4). -P. 1267-1276.
5. Hare PD, Cress WA, Van Staden J. Dissecting the roles of osmolyte accumulation during stress. Plant Cell Environ 1998; 21:535-53; http://dx.doi.org/10.1046/j.13653040.1998.00309.x.
6. Munns R. Genes and salt tolerance: bringing them together. New Phytol 2005; 167:645-63; PMID:16101905; http://dx.doi.org/10.1111/j.1469-8137.2005.01487.x.
7. Rhodes D, Nadolska-Orczyk A, Rich PJ. Salinity, osmolytes and compatible solutes In: Lauchli A, Luttge U, eds. Salinity, Environment, Plant, Molecules. Netherlands: Al-Kluwer Academic Publishers, 2002:181-204.
8. Naidu BP, Paleg LG, Aspinall D, Jennings AC, Jones GP. Amino acid and glycine betaine accumulation in cold-stressed wheat seedlings. Phytochem 1991; 30:407-9; http://dx.doi.org/10.1016/0031-9422(91)83693-F.
9. Ashraf M, Foolad MR. Roles of glycine betaine and proline in improving plant abiotic stress resistance. Environ Exp Bot 2007; 59:206-16; http://dx.doi.org/10.1016/j.envexpbot.2005.12.006
10. Sekhar PN, Amrutha RN, Sangam S, Verma DP, Kishor PB. Biochemical characterization, homology modeling and docking studies of ornithine deltaaminotransferase--an important enzyme in proline biosynthesis of plants. J Mol Graph Model 2007; 26:709-19; PMID:17604199; http://dx.doi.org/10.1016/j.jmgm.2007.04.006.
11. Strizhov N, Abrahбm E, Okrйsz L, Blickling S, Zilberstein A, Schell J, et al. Differential expression of two P5CS genes controlling proline accumulation during salt-stress requires ABA and is regulated by ABA1, ABI1 and AXR2 in Arabidopsis. Plant J 1997; 12:557-69; PMID:9351242; http://dx.doi.org/10.1046/j.1365313X.1997.00557.x.
12. Armengaud P, Thiery L, Buhot N, Grenier-De March G, Savoure A. Transcriptional regulation of proline biosynthesis in Medicago truncatula reveals developmental and environmental specific features. Physiol Plant 2004; 120:442-50; PMID:15032841; http://dx.doi.org/10.1111/j.0031-9317.2004.00251.x.
13. Verbruggen N, Villarroel R, Van Montagu M. Osmoregulation of a pyrroline-5carboxylate reductase gene in Arabidopsis thaliana. Plant Physiol 1993; 103:771-81; PMID:8022935; http://dx.doi.org/10.1104/pp.103.3.771.
14. Verbruggen N, Hermans C. Proline accumulation in plants: a review. Amino Acids 2008; 35:753-9; PMID:18379856; http://dx.doi.org/10.1007/s00726-008-00616.
15. Armengaud P, Thiery L, Buhot N, Grenier-De March G, Savoure A. Transcriptional regulation of proline biosynthesis in Medicago truncatula reveals developmental and environmental specific features. Physiol Plant 2004; 120:442-50; PMID:15032841; http://dx.doi.org/10.1111/j.0031-9317.2004.00251.x.
16. Roosens NH, Thu TT, Iskandar HM, Jacobs M. Isolation of the ornithine-deltaaminotransferase cDNA and effect of salt stress on its expression in Arabidopsis thaliana. Plant Physiol 1998; 117:263-71; PMID:9576796; http://dx.doi.org/10.1104/pp.117.1.263.
17. Xue X, Liu A, Hua X. Proline accumulation and transcriptional regulation of proline biosynthesis and degradation in Brassica napus. BMB Rep 2009; 42:28-34; PMID:19192390; http://dx.doi.org/10.5483/BMBRep.2009.42.1.028.
18. Rajendrakumar CSV, Suryanarayana T, Reddy AR. DNA helix destabilization by proline and betaine: possible role in the salinity tolerance process. FEBS Lett 1997; 410:201-5; PMID:9237629; http://dx.doi.org/10.1016/S0014-5793(97)00588-7.
19. Matysik J. Alia., Bhalu B, Mohanty P. Molecular mechanisms of quenching of reactive oxygen species by proline under stress in plants. Curr Sci 2002; 82:525-32.
20. Smirnoff N, Cumbes QJ. Hydroxyl radical scav-enging activity of compatible solutes. Phytochem 1989; 28:1057-60; http://dx.doi.org/10.1016/00319422(89)80182-7.
21. Shavkiev J., Azimov A., Nabiev S., Khamdullaev S., Amanov B., Kholikova M.Comparative performance and genetic attributes of upland cotton genotypes for yield-related traits under optimal and deficit irrigation conditions. SABRAO Journal of Breeding and Genetics 2021. -53 (2), – P. 57-162.
22. Bates, L.S. Rapid determination of free proline for water stress studies / L.S. Bates, R.P. Waldeen, I.D. Teare / Plant Soil. – 1973. – 39 (1). – P. 205–207.
Саитжанов, Ш. A., Азимов, A. A., & Зияев, З. M. (2022). СОДЕРЖАНИЕ АМИНОКИСЛОТЫ ПРОЛИНА В УСЛОВИЯХ РАЗНОЙ ВОДООБЕСПЕЧЕННОСТИ У СОРТОВ И ЛИНИЙ МАША (VIGNA RADIATA L.). Academic Research in Educational Sciences, 3(10), 917–923. https://doi.org/
Саитжанов, Ш, et al. “СОДЕРЖАНИЕ АМИНОКИСЛОТЫ ПРОЛИНА В УСЛОВИЯХ РАЗНОЙ ВОДООБЕСПЕЧЕННОСТИ У СОРТОВ И ЛИНИЙ МАША (VIGNA RADIATA L.).” Academic Research in Educational Sciences, vol. 10, no. 3, 2022, pp. 917–923, https://doi.org/.
Саитжанов, A., Азимов, A., and Зияев, M. 2022. СОДЕРЖАНИЕ АМИНОКИСЛОТЫ ПРОЛИНА В УСЛОВИЯХ РАЗНОЙ ВОДООБЕСПЕЧЕННОСТИ У СОРТОВ И ЛИНИЙ МАША (VIGNA RADIATA L.). Academic Research in Educational Sciences. 10(3), pp.917–923.