OMIRZHAN TAUKEBAYEV
Space Technologies, and Remote Sensing Center, Al-Farabi Kazakh National University. 71 al-Farabi Ave., Almaty 050040, Kazakhstan

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Salt resistance of species of the Chenopodiaceae family (Amaranthaceae s.l.) in the desert part of the Syrdarya River Valley, Kazakhstan BEKTEMIR B. OSMONALI; POLINA V. VESSELOVA; GULMIRA M. KUDABAYEVA; SALAVAT DUISENBAYEV; OMIRZHAN TAUKEBAYEV; KANAT ZULPYKHAROV; SERIKBAY USSEN; DAULET SH. ABDIILDANOV
Biodiversitas Journal of Biological Diversity Vol. 25 No. 11 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d251115

Abstract

Abstract. Osmonali BB, Vesselova PV, Kudabayeva GM, Duisenbayev S, Taukebayev O, Zulpykharov K, Ussen S, Abdildanov DSH. 2024. Salt resistance of species of the Chenopodiaceae family (Amaranthaceae s.l.) in the desert part of the Syrdarya River Valley, Kazakhstan. Biodiversitas 25: 4162-4170. Salt tolerance is a complex ecological strategy: halophytes have adaptive physiological and anatomical modifications to ‘combat’ the damaging effects of osmotic and metabolic stress that cause impaired growth and reproduction. Halophytes are represented in many angiosperm families that are distributed worldwide. Halophytes represent a heterogeneous group of plants that combine representatives of different taxa, life forms, ecological types, and floras. The family Chenopodiaceae belongs to the largest and oldest families in arid territories of the globe. It occupies the leading position in the spectrum of families of the desert floras of Kazakhstan. The choice of the study region—the desert part of the Syrdarya River Valley within Kyzylorda oblast, Republic of Kazakhstan—is conditioned by a wide distribution of saline territories within its limits, to which the overwhelming majority of species of the studied family are confined. The objects of the study are phytocenoses (communities) located in saline and non-saline areas with the participation or dominance of Chenopodiaceae (Amaranthaceae s.l.) species in the desert part of the Syrdarya River Valley. Distribution of studied taxa on preference to one or another degree of salinity at genus level showed certain peculiarities. In particular, it was revealed that species of genera Atriplex, Caroxylon, and Bassia grow, as a rule, on soils from non-saline to slightly saline. In turn, species of the Suaeda genus prefer to settle on soils of medium and high saline. Finally, the species categorized as hyperhalophytes (preferring a high degree of salinity) belong exclusively to one subfamily, Salicornioideae. This indicates a certain direction of evolution of the adaptive characteristics of representatives of this family.
Weed species in plant communities as indicators of degradation of vegetation cover and fertile soil layer in desert regions BEKTEMIR OSMONALI; AIGUL TOKBERGENOVA; OMIRZHAN TAUKEBAYEV; KANAT ZULPYKHAROV; RUSLAN SALMURZAULY; ZHASSULAN SMANOV; SERIKBAY USSEN
Biodiversitas Journal of Biological Diversity Vol. 25 No. 12 (2024)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d251230

Abstract

Abstract. Osmonali B, Tokbergenova A, Taukebayev O, Zulpykharov K, Salmurzauly R, Smanov Z, Ussen S. 2024. Weed species in plant communities as indicators of degradation of vegetation cover and fertile soil layer in desert regions. Biodiversitas 25: 4930-4938. The geographical position of Kazakhstan on the continent of Eurasia determines its special role in solving problems of conservation of biodiversity of natural biological and land resources. One of the numerous factors of anthropogenic desertification is overgrazing. Under long-term unsystematic grazing, fodder lands of sandy massifs are more exposed to various types of soil deflation and vegetation changes. In desert regions, weeds can be an important indicator of degradation of vegetation cover and fertile soil layer. Some weed species may indicate soil moisture deficiency, salt degradation or lack of fertile substances. The purpose of our work is to identify soil changes, depending on the dominance of weed species and the degree of disturbance. On the example of the following weed species: Peganum harmala, Pseudosophora alopecuroides, Alhagi pseudalhagi, Suaeda linifolia, Karelinia caspia. Suaeda linifolia and K. caspia are indicator plants of salinisation by toxic salts. The study of weed species in desert regions can help to determine the level of degradation of soil and vegetation cover and to develop measures for their restoration and improvement. The study of weed species in plant communities of desert regions can help to determine the degree of degradation of vegetation cover and fertile soil layer, as well as to develop measures for their restoration and protection. Peganum harmala and A. pseudalhagi are indicators of overgrazing and degradation of vegetation cover. Pseudosophora alopecuroides, also known as indicator shrub, is a plant species that is often used as an indicator of land cover degradation. This species typically grows on soils with low nutrient content and can tolerate dry and unfavourable conditions. Thus, observing the presence of P. alopecuroides in a particular area can be a useful indicator to determine the level of vegetation degradation and the need for measures to restore and protect soil and vegetation.