ASEM TASTANBEKOVA
Department of Biodiversity and Bioresources, Al-Farabi Kazakh National University. Al-Farabi Ave 71, Almaty 050040, Kazakhstan

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Implications of population size, structure, and soil parameters for the conservation of Allochrusa gypsophiloides in Kazakhstan ASEM TASTANBEKOVA; KANAT KULYMBET; MERUYERT KURMANBAYEVA; MARIA HÖHN; MOLDIR ZHUMAGUL; OZODBEK ABDURAIMOV; GANI I. ISSAYEV; ORYNBASSAR ALSHYNBAYEV; MURAT TOKTAR; ZHASSULAN SMANOV
Biodiversitas Journal of Biological Diversity Vol. 26 No. 5 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d260504

Abstract

Abstract. Tastanbekova A, Kulymbet K, Kurmanbayeva M, Höhn M, Zhumagul M, Abduraimov O, Issayev GI, Alshynbayev O, Toktar M, Smanov Z. 2025. Implications of population size, structure, and soil parameters for the conservation of Allochrusa gypsophiloides in Kazakhstan. Biodiversitas 26: 2051-2064. The study examines the distribution, population size, and ecological conditions of Allochrusa gypsophiloides in the Karatau Mountain Range, Kazakhstan. This rare species, listed in the Red Data Book, was found in four populations (P1-P4): Sayasu Gorge (P1), Kuyuk Pass (P2), and The Vicinity of Birlik (P3) and Kenestobe Villages (P4). Geobotanical research assessed species composition, plant communities, and ontogenetic structure using Uranov’s classification. Soil properties, including humus content, nutrient levels, and pH, were analyzed. The total number of A. gypsophiloides individuals across all sites was 91, with low population densities (0.15-0.29 individuals/m²). Age structure analysis revealed no senile individuals, with generative individuals predominating in two populations. Generative (g1) individuals accounted for 20.0% in P1 and 18.52%, 24.14%, and 33.34% in P2-P4, respectively. Post-generative (sub-senile) individuals were rare (0-13.34%). Despite a relatively stable age composition, low population density remains a concern. Soils across populations shared similar characteristics: low humus and nutrient content, moderately to strongly alkaline pH, and sandy loam to medium loam textures. The species' restricted distribution, low density, and specific soil requirements make it highly vulnerable to environmental changes and human activities. Conservation efforts of A. gypsophiloides should be aimed at protecting key habitats (Sayasu Gorge, Kuyuk Pass, and The Vicinity of Birlik and Kenestobe) with limited economic activity, introducing a system for long-term monitoring of the number and age structure of populations using standardized techniques, as well as assessing opportunities for reintroduction of the species to suitable sites. Further research on reproductive biology and ecological interactions is essential for ensuring the species' long-term survival in the Syrdarya Karatau Mountain Range.
Soil properties drive population abundance of the rare, endemic Euphorbia yaroslavii in the Zailiyskiy Alatau, Kazakhstan ZHANSAYA ТURGARA; ABIBULLA AMETOV; KANAT KULYMBET; ASSEL CHILDIBAYEVA; SALTANAT NAZARBEKOVA; TOLGANAY RYSKALI; ULZHAN EREZHETOVA; ASEM TASTANBEKOVA
Biodiversitas Journal of Biological Diversity Vol. 26 No. 11 (2025)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d261144

Abstract

Abstract. ?urgara Z, Ametov A, Kulymbet K, Childibayeva A, Nazarbekova S, Ryskali T, Erezhetova U, Tastanbekova A. 2025. Soil properties drive population abundance of the rare, endemic Euphorbia yaroslavii in the Zailiyskiy Alatau, Kazakhstan. Biodiversitas 26: 5881-5890. This study investigates the ecological and soil-chemical factors influencing the population abundance of the rare herbaceous perennial geophyte Euphorbia yaroslavii in the Zailiyskiy Alatau Mountains, Southeastern Kazakhstan. Field surveys were conducted across three gorges - Ushkonyr, Shamalgan, and Kaskelen - comprising nine cenopopulations. A total of 337 individuals were recorded, with the highest abundance observed in Ushkonyr (188 individuals) and the lowest in Kaskelen (56 individuals). Soil texture, structure, and chemistry were analyzed in detail, including granulometry, humus content, pH, CO?, available N, P?O?, K?O, exchangeable cations (Ca²?, Mg²?, Na?, K?), and total soluble salts. Pearson correlation analysis revealed very strong positive correlations between population abundance and sand (r = +0.95), clay (r = +0.87), humus (r = +0.80), mobile nitrogen (r = +0.93), and with exchangeable magnesium among key base cations (r = +0.92). A strong negative correlation was found with silt content (r = -0.88), indicating that excess silt may limit aeration. Correlations were computed at the cenopopulation level (n = 9), pairing abundance with co-located soil measurements from the 0-20 cm layer. The most favorable soil conditions for E. yaroslavii are loamy calcareous soils with 40-50% sand, 20-30% clay, slightly alkaline pH (7.4-7.9), humus ? 2.5%, and high base saturation with dominance of Ca²? and Mg²?. These findings suggest that population abundance is primarily determined by soil texture and organic matter, with magnesium acting as an important component of an overall balanced base-cation regime. Sites meeting these criteria should be prioritized for in situ conservation and habitat restoration, with recommended practices including organic amendment and liming to improve soil fertility and structure.