Venkatasai Neeharika Narisepalli, Shetty Devija N, Vinay Chigateri M, Sekar Mahendran, Muthusamy Annamalai, Rai Padmalatha S
Department of Biotechnology, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, India.
School of Pharmacy, Monash University Malaysia, Bandar Sunway, Selangor Darul Ehsan, Malaysia.
Planta. 2025 Jan 30;261(3):48. doi: 10.1007/s00425-025-04619-y.
Optimizing environmental factors can significantly increase the growth and secondary metabolite synthesis of hydroponically grown medicinal plants. This approach can help increase the quality and quantity of pharmacologically important metabolites to enhance therapeutic needs. Medicinal plants are key therapeutic sources for treating various ailments. The increasing demand for medicinal plants has resulted in the overharvesting of these plants in their natural habitat, which can lead to their extinction in the future. Soil-based cultivation faces challenges, such as a lack of arable land, drastic climatic changes, and attacks by soil-borne pathogens. To overcome these challenges, hydroponic cultivation, known as soilless cultivation, is a sustainable method. The yield and quality of medicinal plants depend on environmental factors, such as nutrients, pH, electrical conductivity, temperature, light, nanoparticles, phytohormones, and microorganisms. This article explores the impact of these environmental factors on the growth and secondary metabolite content of hydroponically grown medicinal plants. Our review reveals how environmental factors qualitatively and quantitatively influence the growth and secondary metabolites of medicinal plants grown in hydroponic systems and how these factors can be integrated into the enhancement of therapeutic compounds.
优化环境因素可显著提高水培药用植物的生长速度和次生代谢产物合成。这种方法有助于提高具有重要药理作用的代谢产物的质量和数量,以满足治疗需求。药用植物是治疗各种疾病的关键治疗来源。对药用植物需求的不断增加导致这些植物在其自然栖息地被过度采摘,这可能导致它们在未来灭绝。基于土壤的种植面临诸多挑战,如耕地短缺、剧烈的气候变化以及土壤传播病原体的侵袭。为克服这些挑战,水培种植,即无土栽培,是一种可持续的方法。药用植物的产量和质量取决于环境因素,如养分、pH值、电导率、温度、光照、纳米颗粒、植物激素和微生物。本文探讨了这些环境因素对水培药用植物生长和次生代谢产物含量的影响。我们的综述揭示了环境因素如何定性和定量地影响水培系统中生长的药用植物的生长和次生代谢产物,以及这些因素如何能够被整合到治疗性化合物的增强中。