Effects of Biochar and Arbuscular Mycorrhizal Fungi on Soil Health in Chinese Kale (Brassica oleracea var. alboglabra L.) Cultivation

Kritsana Jatuwong, Worrawoot Aiduang, T. Kiatsiriroat, Wassana Kamopas, S. Lumyong
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Abstract

Biochar and arbuscular mycorrhizal fungi (AMF), a promising environmentally friendly soil enhancer and biostimulant, play a crucial role in sustainable agriculture by influencing soil properties and plant growth. This research investigates the chemical properties of three biochar types [bamboo (BB-char), corn cob (CC-char), and coffee grounds (CG-char)] derived from different biomass sources and their impact on soil quality and Chinese kale growth. The results reveal significant differences in chemical properties among different types of biochar. Particularly, CG-char showed the greatest pH value and phosphorus content, with an average of 10.05 and 0.44%, respectively. On the other hand, CC-char had the highest potassium content, with an average of 2.16%. Incorporating biochar into degraded soil enhances soil structure, promoting porosity and improved texture, as evidenced by scanning electron microscope images revealing distinct porous structures. Soil chemistry analyses in treatment T2–T14 after a 42-day cultivation demonstrate the impact of biochar on pH, electrical conductivity, organic matter, and organic carbon levels in comparison to the control treatment (T1). Furthermore, the research assesses the impact of biochar on Chinese kale growth and photosynthetic pigments. Biochar additions, especially 5% BB-char with AMF, positively influence plant growth, chlorophyll content, and photosynthetic pigment levels. Notably, lower biochar concentrations (5%) exhibit superior effects compared to higher concentrations (10%), emphasizing the importance of optimal biochar application rates. The study also delves into the total phenolic content in Chinese kale leaves, revealing that the synergistic effect of biochar and AMF enhances phenolic compound accumulation. The combination positively influences plant health, soil quality, and nutrient cycling mechanisms. Overall, the research indicates the multifaceted impact of biochar on soil and plant dynamics, emphasizing the need for tailored application strategies to optimize benefits in sustainable agriculture.
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生物碳和丛枝菌根真菌对甘蓝(Brassica oleracea var.
生物炭和丛枝菌根真菌(AMF)是一种前景广阔的环境友好型土壤改良剂和生物刺激剂,通过影响土壤性质和植物生长,在可持续农业中发挥着至关重要的作用。本研究调查了三种生物炭(竹炭(BB-炭)、玉米芯炭(CC-炭)和咖啡渣炭(CG-炭))的化学特性及其对土壤质量和甘蓝生长的影响。结果表明,不同类型的生物炭在化学性质上存在显著差异。其中,CG-炭的 pH 值和磷含量最高,平均值分别为 10.05%和 0.44%。另一方面,CC-炭的钾含量最高,平均为 2.16%。将生物炭掺入降解土壤中可改善土壤结构,提高孔隙度,改善质地,扫描电子显微镜图像显示了明显的多孔结构。与对照处理(T1)相比,经过 42 天栽培后的处理 T2-T14 的土壤化学分析表明,生物炭对 pH 值、电导率、有机质和有机碳水平都有影响。此外,研究还评估了生物炭对甘蓝生长和光合色素的影响。生物炭的添加,尤其是含有 AMF 的 5%BB-炭,对植物生长、叶绿素含量和光合色素水平有积极影响。值得注意的是,与较高浓度(10%)的生物炭相比,较低浓度(5%)的生物炭显示出更优越的效果,这强调了最佳生物炭施用率的重要性。该研究还深入研究了甘蓝叶片中的总酚含量,发现生物炭和 AMF 的协同作用增强了酚类化合物的积累。两者的结合对植物健康、土壤质量和养分循环机制产生了积极影响。总之,该研究表明生物炭对土壤和植物动态具有多方面的影响,强调需要制定有针对性的应用策略,以优化可持续农业的效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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