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蒽二酮和调味酚类在[植物名称]水甲醇提取物中对葡萄藤植物病原真菌的活性 。(你提供的原文中“against Grapevine Phytopathogenic Fungi.”前面缺少具体植物名称,翻译只能做到这样的程度了。)

Activity of Anthracenediones and Flavoring Phenols in Hydromethanolic Extracts of against Grapevine Phytopathogenic Fungi.

作者信息

Langa-Lomba Natalia, Sánchez-Hernández Eva, Buzón-Durán Laura, González-García Vicente, Casanova-Gascón José, Martín-Gil Jesús, Martín-Ramos Pablo

机构信息

Instituto Universitario de Investigación en Ciencias Ambientales de Aragón (IUCA), EPS, Universidad de Zaragoza, Carretera de Cuarte, s/n, 22071 Huesca, Spain.

Agrifood Research and Technology Centre of Aragón, Plant Protection Unit, Instituto Agroalimentario de Aragón-IA2 (CITA-Universidad de Zaragoza), Avda. Montañana 930, 50059 Zaragoza, Spain.

出版信息

Plants (Basel). 2021 Jul 26;10(8):1527. doi: 10.3390/plants10081527.

Abstract

In this work, the chemical composition of root hydromethanolic extract was analyzed by GC-MS, and over 50 constituents were identified. The main phytochemicals were alizarin-related anthraquinones and flavoring phenol compounds. The antifungal activity of this extract, alone and in combination with chitosan oligomers (COS) or with stevioside, was evaluated against the pathogenic taxa and , responsible for the so-called Botryosphaeria dieback of grapevine. In vitro mycelial growth inhibition tests showed remarkable activity for the pure extract, with EC and EC values as low as 66 and 88 μg·mL, respectively. Nonetheless, enhanced activity was attained upon the formation of conjugate complexes with COS or with stevioside, with synergy factors of up to 5.4 and 3.3, respectively, resulting in EC and EC values as low as 22 and 56 μg·mL, respectively. The conjugate with the best performance (COS- extract) was then assayed ex situ on autoclaved grapevine wood against , confirming its antifungal behavior on this plant material. Finally, the same conjugate was evaluated in greenhouse assays on grafted grapevine plants artificially inoculated with the three aforementioned fungal species, resulting in a significant reduction in the infection rate in all cases. This natural antifungal compound represents a promising alternative for developing sustainable control methods against grapevine trunk diseases.

摘要

在本研究中,采用气相色谱 - 质谱联用(GC - MS)分析法对根部水甲醇提取物的化学成分进行了分析,共鉴定出50多种成分。主要的植物化学物质为与茜素相关的蒽醌类和调味酚类化合物。评估了该提取物单独使用以及与壳寡糖(COS)或甜菊糖苷联合使用时,对导致葡萄藤所谓葡萄座腔菌属枝干溃疡病的致病类群和的抗真菌活性。体外菌丝生长抑制试验表明,纯提取物具有显著活性,其EC50和EC90值分别低至66和88μg·mL。尽管如此,与COS或甜菊糖苷形成共轭复合物后活性增强,协同因子分别高达5.4和3.3,导致EC50和EC90值分别低至22和56μg·mL。然后,对性能最佳的共轭物(COS - 提取物)在高压灭菌的葡萄藤木材上进行了异地测定,证实了其对这种植物材料的抗真菌性能。最后,在温室试验中对人工接种上述三种真菌的嫁接葡萄藤植物评估了相同的共轭物,结果在所有情况下感染率均显著降低。这种天然抗真菌化合物是开发针对葡萄藤树干病害的可持续防治方法的一个有前途的替代品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5299/8399478/86d8fa56bd79/plants-10-01527-g001.jpg

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