在 Thevetia peruviana 种子提取物的影响下番茄(Lycopersicon esculentum)交链孢属(Alternaria solani)病原菌两种菌株的体外发育情况

L. N. Ngata, E. L. M. Ngonkeu, A. Ndogho, C. K. Ntongo, F. C. Gbaporo, P. Z. Ngatsi, S. L. L. Dida, L. T. V. Dongmo, T. S. Atindo, W. Kuaté, Z. Ambang
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引用次数: 0

摘要

Alternaria solani 是一种真菌,会导致番茄田间产量损失高达 80%。合成杀菌剂是最广泛使用的防治方法,但会产生有害后果。这项工作的目的是在体外测试 Thevetia peruviana 种子提取物对两种 A. solani 分离物的抗真菌潜力。实验使用了水提取物、甲醇提取物、乙酸乙酯提取物和丙酮提取物,浓度分别为 12.5、25、50 和 100 µL/mL。两种合成杀菌剂 Maneb(5.33 µg/mL)和 Dimethomorph + Clorothalonil(3.75 µg/mL)以及对照(0 µL/mL)也在两种 A. solani 分离物(Mbal 和 Foum)上进行了测试。调查重复了三次。测定了植物化学筛选、菌丝生长、孢子萌发和最低抑菌浓度(MIC50 和 MIC90)。结果表明,T. peruviana 提取物富含多种生物活性化合物,如生物碱、酚类化合物和糖类。在最高浓度(100 µL/mL)下,所有测试提取物对两种菌株的菌丝生长(100%)和孢子萌发(100%)都有很强的抑制作用。丙酮提取物浓度为 50 µL/mL 时,对 Mbal 和 Foum 分离物的菌丝生长抑制率分别为 88.45% 和 86.55%,孢子萌发抑制率分别为 88.33% 和 80.33%。丙酮提取物对 Mbal 分离物的 MIC50(16.63 µL/mL)和 MIC90(54.6 µL/mL)最低,而乙酸乙酯提取物对 Foum 分离物的 MIC50(27.5 µL/mL)和 MIC90(61.7 µL/mL)最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro Development of Two Alternaria solani Strains, Causal Agent of Alternariose in Tomato (Lycopersicon esculentum) under the Influence of Thevetia peruviana Seeds Extracts
Alternaria solani is a fungus that causes yield losses of up to 80 % in tomato production in field. Synthetic fungicides are the most widely used for its controbl, but have harmful consequences. The objective of this work was to test in vitro the antifungal potential of Thevetia peruviana seed extracts against two A. solani isolates. Aqueous, methanol, ethyl acetate and acetone extracts, at concentrations 12.5, 25, 50 and 100 µL/mL were used. Two synthetic fungicides Maneb (5.33 µg/mL) and Dimethomorph + Clorothalonil (3.75 µg/mL) and control (0 µL/mL) were also tested on two A. solani isolates (Mbal and Foum). The investigation was repeated three times. Phytochemical screening, mycelial growth, spore germination and minimum inhibitory concentrations (MIC50 and MIC90) were determined. The results showed that T. peruviana extracts are rich in many families of bioactive compounds such as alkaloids, phenolic compounds and sugars. All extracts tested show high inhibition of mycelial growth (100%) and spore germination (100%) of the two strains at highest concentration (100 µL/mL). Acetone extract at a concentration of 50 µL/mL inhibited mycelial growth by 88.45 and 86.55% and spore germination by 88.33 and 80.33%, respectively for the Mbal and Foum isolates. The lowest MIC50 (16.63 µL/mL) and MIC90 (54.6 µL/mL) were obtained with the acetone extract on the Mbal isolate while the highest MIC50 (27.5 µL/mL) and MIC90 (61.7 µL/mL) were observed with ethyl acetate on the Foum isolate These extracts can therefore be used in the biological control against Alternariose in tomato.
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