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赤霉素 GA3、量子点生物炭和根际细菌对铅胁迫下胡芦巴植物生长和胁迫响应的影响。

Impact of gibberellic acid GA3, quantum dot biochar, and rhizosphere bacteria on fenugreek plant growth and stress responses under lead stress.

机构信息

Botany Department, The Islamia University of Bahawalpur, Rahim Yar Khan Campus, Rahim Yar Khan, Pakistan.

Department of Soil Science, Faculty of Agricultural Sciences and Technology, Bahauddin Zakariya University, Multan, 60000, Punjab, Pakistan.

出版信息

Sci Rep. 2024 Nov 28;14(1):29612. doi: 10.1038/s41598-024-81072-z.

Abstract

Lead (Pb) is a stress that can cause problems with several aspects of a plant's metabolism, potentially impeding the plant's ability to grow and develop. The use of gibberellic acid (GA3), quantum dot biochar (QDBC), and rhizobacteria (RB) can be effective methods to overcome this problem. Gibberellic acid is a crucial plant hormone that regulates plant growth, cell division, tissue differentiation, flowering, photosynthesis, and transpiration rate. It also significantly impacts crop resilience to stress, affecting plant morphology, enzymatic activity, and physiology. Biochar, a soil supplement, enhances plant development soil health, and reduces stress effects. Due to its large surface area and porosity, it increases soil water-holding capacity, nutrient retention, and microbial activity. Quantum dots, semiconductor nanoparticles, have been proposed as a potential method to alleviate plant stress by acting as antioxidants, reducing oxidative stress, and controlling nutrient and growth regulators. Rhizobacteria, soil bacteria in plant roots, stimulate plant growth, nutrient absorption, and harvesting capacity. They produce phytohormones, increase mineral and nitrogen accessibility, and can induce systemic resistance (ISR), affecting plant defense. This study investigates the effects of combining GA3, QDBC, and RB as amendments to fenugreek, both with 500 Pb stress and without Pb stress. Treatments (control, 0.25 GA3mg/L-QDBC, 0.5 GA3mg/L-QDBC, 0.25 GA3mg/L-QDBC + RB, and 0.5 GA3mg/L-QDBC + RB) were applied in six replications using a completely randomized design. Results demonstrate that the combination of 0.5 GA3mg/L-QDBC + RB with 500 Pb stress led to significant enhancements in fenugreek shoot fresh weight (15.62%), root fresh weight (73.53%), shoot dry weight (24.00%), and root dry weight (36.53%) compared to the control. Additionally, there were notable improvements in chlorophyll a (57.23%), chlorophyll b (19.21%), and total chlorophyll (36.23%) compared to the control under Pb stress, also showing the potential of 0.5 GA3mg/L-QDBC + RB with 500 Pb stress. The study suggests that combining 0.5 GA3mg/L-QDBC + RB with 500 Pb stress can effectively mitigate Pb stress in fenugreek.

摘要

铅(Pb)是一种应激源,会对植物代谢的多个方面造成问题,可能会阻碍植物的生长和发育。使用赤霉素(GA3)、量子点生物炭(QDBC)和根际细菌(RB)可以是克服这个问题的有效方法。赤霉素是一种关键的植物激素,它调节植物的生长、细胞分裂、组织分化、开花、光合作用和蒸腾速率。它还显著影响作物对胁迫的抵抗力,影响植物的形态、酶活性和生理学。生物炭是一种土壤补充剂,可以增强植物发育和土壤健康,减少胁迫的影响。由于其较大的表面积和孔隙率,它增加了土壤的持水能力、养分保持和微生物活性。量子点是半导体纳米粒子,已被提议作为一种通过充当抗氧化剂、减少氧化应激和控制营养物质和生长调节剂来缓解植物应激的潜在方法。根际细菌是植物根部的土壤细菌,可以刺激植物生长、养分吸收和收获能力。它们产生植物激素,增加矿物质和氮的可及性,并可以诱导系统抗性(ISR),影响植物防御。本研究调查了将 GA3、QDBC 和 RB 组合作为胡芦巴的改良剂,同时施加 500Pb 胁迫和无 Pb 胁迫的效果。处理(对照、0.25GA3mg/L-QDBC、0.5GA3mg/L-QDBC、0.25GA3mg/L-QDBC+RB 和 0.5GA3mg/L-QDBC+RB)在完全随机设计中使用六个重复进行应用。结果表明,与对照相比,在 500Pb 胁迫下,将 0.5GA3mg/L-QDBC+RB 组合处理可使胡芦巴茎鲜重(15.62%)、根鲜重(73.53%)、茎干重(24.00%)和根干重(36.53%)显著增加。此外,与 Pb 胁迫下的对照相比,Pb 胁迫下的叶绿素 a(57.23%)、叶绿素 b(19.21%)和总叶绿素(36.23%)也有显著提高,也显示出 0.5GA3mg/L-QDBC+RB 在 500Pb 胁迫下的潜力。该研究表明,在 500Pb 胁迫下,将 0.5GA3mg/L-QDBC+RB 组合处理可以有效减轻胡芦巴的 Pb 胁迫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c36/11604958/3c4e823cae0e/41598_2024_81072_Fig1_HTML.jpg

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