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菌根共生以及维生素B3处理的哈茨木霉HE24的应用可协同触发蚕豆植株对丝核菌根腐病的免疫反应,并促进植株生长和产量。

Mycorrhizal symbiosis and application of vitamin B3-treated Trichoderma Harzianum HE24 additively trigger immunity responses in faba bean plants against Rhizoctonia root rot and promote the plant growth and yield.

作者信息

El-Sharkawy Hany H A, Rashad Younes M, El-Blasy Salama S A, Amin Basma H, Youssef Mahmoud A A, Hafez Mohamed, Abd-ElGawad Ahmed, Bourouah Mohamed, Elsherbiny Elsherbiny A, Yousef Safaa A

机构信息

Mycology Research and Plant Diseases Survey Department, Plant Pathology Research Institute, Agricultural Research Center, Giza, Egypt.

Plant Protection and Biomolecular Diagnosis Department, Arid Lands Cultivation Research Institute (ALCRI), City of Scientific Research and Technological Applications (SRTA-City), New Borg El-Arab, Alexandria, 21934, Egypt.

出版信息

BMC Plant Biol. 2025 Jul 19;25(1):926. doi: 10.1186/s12870-025-06950-8.

Abstract

BACKGROUND

Faba bean is a valuable legume crop, known for its high nutritional value and nitrogen fixing ability. Rhizoctonia root rot of faba bean, caused by , severely affects the plant growth and yield. This study aimed to evaluate the effect of symbiosis with arbuscular mycorrhizal fungi (AMF) and application of vitamin B3-treated HE24 on plant immune responses against Rhizoctonia root rot under greenhouse conditions.

RESULTS

Results revealed that symbiosis with AMF and the application of vitamin B3-treated HE24 significantly upregulated the defense-related genes (50.2-fold), (13.3-fold), and (37.0-fold). Additionally, this combined treatment led to an increment in the enzymatic activity of peroxidase and polyphenol oxidase recording 23.7 and 14.6-unit ming fresh weight, respectivly. Furthermore, the phenolic content in faba bean plants was enhanced (1402.3 mg/g fresh weight) suggesting a strong activation of the plant’s biochemical defense mechanisms and metabolic activities. Rhizoctonia root rot severity in faba bean plants was reduced by 80.4% following this treatment. Moreover, the results demonstrated that AMF symbiosis notably improved plant growth, photosynthetic content, and yield, compared to the infected control, leading to enhanced overall plant performance and disease resistance.

CONCLUSIONS

These findings suggest that the additive interaction between AMF and vitamin B3-treated HE24 provides an effective, eco-friendly alternative for managing root rot of faba bean.

摘要

背景

蚕豆是一种重要的豆科作物,以其高营养价值和固氮能力而闻名。由[病原菌名称缺失]引起的蚕豆丝核菌根腐病严重影响植株生长和产量。本研究旨在评估在温室条件下,与丛枝菌根真菌(AMF)共生以及施用维生素B3处理的HE24对蚕豆植株抗丝核菌根腐病免疫反应的影响。

结果

结果表明,与AMF共生以及施用维生素B3处理的HE24显著上调了防御相关基因[基因名称缺失](50.2倍)、[基因名称缺失](13.3倍)和[基因名称缺失](37.0倍)。此外,这种联合处理使过氧化物酶和多酚氧化酶的酶活性分别增加,鲜重下记录为23.7和14.6单位/毫克。此外,蚕豆植株中的酚类含量增加(1402.3毫克/克鲜重),表明植物的生化防御机制和代谢活动得到了强烈激活。经过这种处理后,蚕豆植株的丝核菌根腐病严重程度降低了80.4%。此外,结果表明,与受感染的对照相比,AMF共生显著改善了植株生长、光合含量和产量,从而提高了植株的整体性能和抗病性。

结论

这些发现表明,AMF与维生素B3处理的HE24之间的加成相互作用为管理蚕豆根腐病提供了一种有效、环保的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdf7/12275348/58b67a457486/12870_2025_6950_Fig1_HTML.jpg

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