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β-谷甾醇与生物炭协同施用对热胁迫下百里香植物生长的促进作用。

Synergistic effect of β-sitosterol and biochar application for improving plant growth of Thymus vulgaris under heat stress.

作者信息

Alharbi Khadiga, Khan Amir Abdullah, Sakit Alhaithloul Haifa Abdulaziz, Al-Harbi Nadi Awad, Al-Qahtani Salem Mesfir, Aloufi Saeedah Sallum, Abdulmajeed Awatif M, Muneer Muhammad Atif, Alghanem Suliman M S, Zia-Ur-Rehman Muhammad, Usman Muhammad, Soliman Mona H

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh, 11671, Saudi Arabia.

Department of Plant Biology and Ecology, Nankai University, Tianjin, 300071, China.

出版信息

Chemosphere. 2023 Nov;340:139832. doi: 10.1016/j.chemosphere.2023.139832. Epub 2023 Aug 15.

Abstract

Climate change has become the global concern due to its drastic effects on the environment. Agriculture sector is the backbone of food security which remains at the disposal of climate change. Heat stress is the is the most concerning effect of climate change which negatively affect the plant growth and potential yields. The present experiment was conducted to assess the effects of exogenously applied β-sitosterol (Bs at 100 mg/L) and eucalyptus biochar (Eb at 5%) on the antioxidants and nutritional status in Thymus vulgaris under heat stressed conditions. The pot experiment was conducted in completely randomize design in which thymus plants were exposed to heat stress (33 °C) and as a result, plants showed a substantial decline in morpho-physiological and biochemical parameters e.g., a reduction of 59.46, 75.51, 100.00, 34.61, 22.65, and 38.65% was found in plant height, shoot fresh weight, root fresh weight, dry shoot weight, dry root weight and leaf area while in Bs + Eb + heat stress showed 21.16, 56.81, 67.63, 23.09, 12.84, and 35.89% respectively as compared to control. In the same way photosynthetic pigments, transpiration rate, plant nutritional values and water potential increased in plants when treated with Bs and Eb in synergy. Application of Bs and Eb significantly decreased the electrolytic leakage of cells in heat stressed thymus plants. The production of reactive oxygen species was significantly decreased while the synthesis of antioxidants increased with the application of Bs and Eb. Moreover, the application Bs and Eb increased the concentration of minerals nutrients in the plant body under heat stress. Our results suggested that application of Bs along with Eb decreased the effect of heat stress by maintaining nutrient supply and enhanced tolerance by increasing the production of photosynthetic pigments and antioxidant activity.

摘要

气候变化因其对环境的剧烈影响已成为全球关注的问题。农业部门是粮食安全的支柱,但仍受气候变化的影响。热胁迫是气候变化最令人担忧的影响,它会对植物生长和潜在产量产生负面影响。本实验旨在评估在热胁迫条件下,外源施加β-谷甾醇(100 mg/L的Bs)和桉树生物炭(5%的Eb)对百里香抗氧化剂和营养状况的影响。盆栽实验采用完全随机设计,将百里香植物置于热胁迫(33°C)条件下,结果显示,植物的形态生理和生化参数大幅下降,例如,株高、地上部鲜重、根部鲜重、地上部干重、根部干重和叶面积分别减少了59.46%、75.51%、100.00%、34.61%、22.65%和38.65%,而与对照相比,Bs + Eb + 热胁迫条件下分别减少了21.16%、56.81%、67.63%、23.09%、12.84%和35.89%。同样,当协同使用Bs和Eb处理植物时,光合色素、蒸腾速率、植物营养价值和水势均有所增加。在热胁迫的百里香植物中,Bs和Eb的施用显著降低了细胞的电解质渗漏。随着Bs和Eb的施用,活性氧的产生显著减少,而抗氧化剂的合成增加。此外,在热胁迫下,Bs和Eb的施用增加了植物体内矿质营养元素的浓度。我们的结果表明,Bs与Eb一起施用可通过维持养分供应降低热胁迫的影响,并通过增加光合色素的产生和抗氧化活性来增强耐受性。

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