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土壤盐分对物种遗传多样性和系统发育关系的影响:来自电导率分析、反转录转座子间扩增多态性标记及DNA条形码的见解

Influence of Soil Salinity on Genetic Diversity and Phylogenetic Relationships in Species: Insights from Electrical Conductivity Analysis, Inter-retrotransposon Amplified Polymorphism Markers, and DNA Barcoding.

作者信息

Alsanie Sumayah I, Abd-Elgawad Magda Elsayed

机构信息

Department of Biology, College of Science, Imam Abdulrahman Bin Faisal University, Dammam 31441, Saudi Arabia.

Biotechnology Department, Research Institute of Medicinal and Aromatic Plants, Beni-Suef University, Beni-Suef 62511, Egypt.

出版信息

ACS Omega. 2025 May 5;10(18):18629-18640. doi: 10.1021/acsomega.4c11662. eCollection 2025 May 13.

Abstract

Soil salinity is a significant environmental stressor that impacts species distribution, plant development, and genetic diversity. Conservation and ecological management depend on an understanding of how species respond to salinity. The genus , which includes several species of succulent shrubs native to arid regions, is of significant interest for studying plant adaptation mechanisms. The study aims to evaluate the genetic diversity and ecological characteristics of eight groups of species in Saudi Arabia using inter-retrotransposon amplified polymorphism (IRAP) markers, ycf5 and trnH gene sequences, as well as soil pH and electrical conductivity (EC). Soil pH indicated slightly alkaline conditions, while electrical conductivity (EC) ranged from 822 μS/cm in the population at Al Thumama Road (population 8) to 23,800 μS/cm in the population at Al Jawhara-Dammam Road (population 2). The genetic relationships were determined by analyzing IRAP marker polymorphism, generated using 10 primers. Clustering through principal component analysis and biostatistical methods distinguished the populations of subsp. (6, 7, and 8) from the populations of T. hamiensis var. qatarensis (1, 3), (4, 5), and (2). Ten primers had high polymorphism (60.5%) according to IRAP analysis between and . The evolutionary trees of and cluster together. Analysis of conserved motifs revealed common motifs that support the use of ycf5 and trnH as barcodes. The genetic diversity and population clustering of and are influenced by environmental salinity and species-specific genetic adaptations. While has more differentiation, maybe as a result of historical separation or localized adaptations, exhibits strong genetic similarities. These results demonstrate that common environmental stresses and species-specific characteristics are the main drivers of genetic diversity. Future studies should explore adaptive genetic mechanisms at the molecular level and assess the functional roles of salinity-responsive genes in support conservation efforts.

摘要

土壤盐碱化是一种重要的环境压力因素,会影响物种分布、植物发育和遗传多样性。保护和生态管理依赖于对物种如何应对盐碱化的理解。该属包括几种原产于干旱地区的肉质灌木物种,对于研究植物适应机制具有重要意义。本研究旨在利用反转录转座子间扩增多态性(IRAP)标记、ycf5和trnH基因序列以及土壤pH值和电导率(EC)来评估沙特阿拉伯八组该属物种的遗传多样性和生态特征。土壤pH值表明为微碱性条件,而电导率(EC)范围从位于图马马路的该属种群(种群8)的822 μS/cm到位于贾瓦哈拉 - 达曼路的该属种群(种群2)的23,800 μS/cm。通过分析使用10种引物产生的IRAP标记多态性来确定遗传关系。通过主成分分析和生物统计学方法进行聚类,区分了该种下的种群(6、7和8)与哈米该变种卡塔尔变种的种群(1, 出3)、(4, 5)和(2)。根据该属与该属之间的IRAP分析,10种引物具有高多态性(60.5%)。该属和该属的进化树聚类在一起。对保守基序的分析揭示了支持使用ycf5和trnH作为条形码的共同基序。该属和该属的遗传多样性和种群聚类受环境盐碱化和物种特异性遗传适应的影响。虽然该属有更多分化,可能是由于历史隔离或局部适应的结果,但该属表现出很强的遗传相似性。这些结果表明,常见的环境压力和物种特异性特征是遗传多样性的主要驱动因素。未来的研究应在分子水平上探索适应性遗传机制,并评估盐碱化响应基因在支持保护工作中的功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e88c/12079606/3a4905763dbf/ao4c11662_0001.jpg

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