Balance de sal de halófitos prometedores Climacoptera lanata L. y Tamarix hispida L. en el desierto de Kyzylkum

Autores/as

  • Tura Rakhimova National University of Uzbekistan named after Mirzo Ulugbek
  • Tura Rakhimova National University of Uzbekistan named after Mirzo Ulugbek
  • Rustamjon Allaberdiev National University of Uzbekistan named after Mirzo Ulugbek
  • Manzura Kamalova National University of Uzbekistan named after Mirzo Ulugbek
  • Nurbek Kuchkarov National University of Uzbekistan named after Mirzo Ulugbek
  • Vafabay Sherimbetov National University of Uzbekistan named after Mirzo Ulugbek
  • Dilfuza Arifxanova National University of Uzbekistan named after Mirzo Ulugbek

DOI:

https://doi.org/10.15649/2346075X.3604

Palabras clave:

Salinity, Salt tolerance, Euhalophytes, Xerophytes, Phreatophytes, Soil сomposition

Resumen

Introduction: The relevance of the investigated problem lies in the problem of improving the condition of degraded and saline soils, on which plants of representatives of Chenopodeaceae and Tamaricaceae families grow, adapted to life in such conditions. In this regard, the aim of this article is to study the ecology, salinity accumulation and salt excretion of Climacoptera lanata and Tamarix hispida, determining the adaptation abilities of Climacoptera lanata and Tamarix hispida in Kyzylkum Desert conditions. Material and Methods: The main methods that were used to achieve the goal: generally accepted methods of soil determination – spectrophotometric, potentiometric, manometric. Results and Discussion: The main results that were achieved in this study: salt balance of halophytes was revealed on the example of C. lanata and T. hispida species, groups on plant resistance, on the quality of salt accumulator and salt extractor, on dry residue (2-3.4; Cl- 0.1-0.3, SO42- 1.5-1.9%) were identified, saline soils were determined. Leaf respiration intensity ranged from 111-323 mm3 O2. Bioecological features of C. lanata and T. hispida, as well as chemical composition of soil and water in Central Kyzylkum and mineral composition of biomass of the studied plants, were revealed. Conclusion: The main ecological problems in the conditions of Uzbekistan were determined. The practical significance of the study is that methods of adaptation of Climacoptera and Tamarix species to saline soils in areas with low water level (2-3.5 m) can be used for similar biotypes in order to reduce damage from soil salinity.

Referencias

Toderich K, Khujanazarov T, Ibraeva M, Toreshev P, Bozayeva Zh, Konyushkova MV, Krenke AN. Training manual: Innovative approaches and technologies to manage salinization of marginal lands in Central Asia. Astana: FAO; 2022.

Wang Y, Liu Z, Wang P, Jiang B, Lei X, Wu J, Dong W, Gao C. A 2-Cys peroxiredoxin gene from Tamarix hispida improved salt stress tolerance in plants. BMC Plant Biol. 2020;20(1):360. https://doi.org/10.1186/s12870-020-02562-6

Allaberdiev R, Rakhimova T, Komilova N, Kamalova M, Kuchkarov N. Study of plant adaptation to the arid zone of Uzbekistan based on system analysis. Scientific Horiz. 2021;24(10):52-57. https://doi.org/10.48077/scihor.24(10).2021.52-57

Dukhovny VA, Stulina GV, Kenjabayev ShM. Monitoring the dried seabed of the Aral Sea. Tashkent: United Nations Development Programme; Scientific-Information Center of the Interstate Coordination Water Commission of Central Asia; 2020.

Sadullayeva SB. Effects of the Aydar-Arnasoy lake system on changes in the vegetation of the Kyzylkum desert. Econ Society. 2023;106(3):266-269.

Wang R, Zhang Y, Wang C, Wang YC, Wang LQ. ThNAC12 from Tamarix hispida directly regulates ThPIP2;5 to enhance salt tolerance by modulating reactive oxygen species. Plant Physiol Biochem. 2021;163:27-35. https://doi.org/10.1016/j.plaphy.2021.03.042

Kuchkarov NYu, Duschanova GM. The anatomical structure of the leaf species Inula helenium L. and Inula salicina L. growing in Uzbekistan. In: Proceedings of VIII International Scientific and Practical Conference (pp. 119-128). Boston: ISPC; 2021.

Grigore MN, Vicente O. Wild halophytes: Tools for understanding salt tolerance mechanisms of plants and for adapting agriculture to climate change. Plants. 2023;12(2):221. https://doi.org/10.3390/plants12020221

Duan Q, Zhu Z, Wang B, Chen M. Recent progress on the salt tolerance mechanisms and application of tamarisk. Int J Mol Sci. 2022;23(6):3325. https://doi.org/10.3390/ijms23063325

Yang H, Xia J, Cui Q, Liu J, Wei S, Feng L, Dong K. Effects of different Tamarix chinensis-grass patterns on the soil quality of coastal saline soil in the Yellow River Delta, China. Sci Total Environ. 2021;772:145501. https://doi.org/10.1016/j.scitotenv.2021.145501

Negacz K, Malek Z, de Vos A, Vellinga P. Saline soils worldwide: Identifying the most promising areas for saline agriculture. J Arid Environ. 2022;203:104775. https://doi.org/10.1016/j.jaridenv.2022.104775

Esov RA, Kamalova MD. Chemical composition of soils of the remnant mountains of Kyzylkum. Glob Sci Innov 2021: Central Asia. 2021;4(15):55-60.

Vineeth TV, Kumar S, Shukla M, Chinchmalatpure A, Sharma PC. Ecological and economic potential of major halophytes and salt tolerant vegetation in India. In: Abiotic Stress in Plants. 2020. Available from: https://www.intechopen.com/chapters/73439 Accessed June 22, 2023.

Hassani A, Azapagic A, Shokri N. Predicting long-term dynamics of soil salinity and sodicity on a global scale. PNAS, 2020;117(52):33017-33027. https://doi.org/10.1073/pnas.2013771117

Kotula L, Caparros PG, Zörb C, Colmer TD, Flowers TJ. Improving crop salt tolerance using transgenic approaches: An update and physiological analysis. Plant Cell Environ. 2020;43(12):2932-2956. https://doi.org/10.1111/pce.13865

Ghanem AFM, Mohamed E, Kasem AMMA, El-Ghamery AA. Differential salt tolerance strategies in three halophytes from the same ecological habitat: Augmentation of antioxidant enzymes and compounds. Plants. 2021;10(6):1100. https://doi.org/10.3390/plants10061100

Wang Y, Wang S, Zhao Z, Zhang K, Tian C, Mai W. Progress of euhalophyte adaptation to arid areas to remediate salinized soil. Agric. 2023;13(3):704. https://doi.org/10.3390/agriculture13030704

Liu Z, Xie Q, Tang F, Wu J, Dong W, Wang C, Gao C. The ThSOS3 gene improves the salt tolerance of transgenic Tamarix hispida and Arabidopsis thaliana. Front Plant Sci. 2021;11:597480. https://doi.org/10.3389/fpls.2020.597480

Li J, Yuan F, Liu Y, Zhang M, Liu Y, Zhao Y, Wang B, Chen M. Exogenous melatonin enhances salt secretion from salt glands by upregulating the expression of ion transporter and vesicle transport genes in Limonium bicolor. BMC Plant Biol. 2020;20(1):493. https://doi.org/10.1186/s12870-020-02703-x

Rakhmonov I, Tashbekov U. Phytomelioration of salted soils by liquorice root (Glycyrrhiza glabra). Vladimir Agricolist. 2020;92(2):33-39.

Descargas

Publicado

2023-12-01

Cómo citar

Rakhimova, T., Rakhimova, T., Allaberdiev, R., Kamalova, M., Kuchkarov, N., Sherimbetov, V., & Arifxanova, D. (2023). Balance de sal de halófitos prometedores Climacoptera lanata L. y Tamarix hispida L. en el desierto de Kyzylkum. Innovaciencia, 11(1). https://doi.org/10.15649/2346075X.3604

Número

Sección

Artículo de investigación científica y tecnológica

Altmetrics

Descargas

Los datos de descargas todavía no están disponibles.