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评估F9对黄瓜生长促进和病害抑制的作用。

Evaluation of F9 for Cucumber Growth Promotion and Suppression of Disease.

作者信息

Ta Yongquan, Fu Shaowei, Liu Hui, Zhang Caiyun, He Mengru, Yu Hang, Ren Yihua, Han Yunfei, Hu Wenqiong, Yan Zhiqiang, Wang Yonghong

机构信息

Key Laboratory of Plant Protection Resources and Pest Management of Ministry of Education, Key Laboratory of Integrated Pest Management on the Loess Plateau of Ministry of Agriculture and Rural Affairs, College of Plant Protection, Northwest A&F University, Yangling 712100, China.

Provincial Center for Bio-Pesticide Engineering, Northwest A&F University, Yangling 712100, China.

出版信息

Microorganisms. 2024 Sep 12;12(9):1882. doi: 10.3390/microorganisms12091882.

Abstract

Cucumber wilt, caused by . sp. (FOC), is a soilborne disease that poses a significant threat to cucumber production, resulting in substantial yield losses. This study aimed to evaluate the biocontrol and growth-promoting effects of , a highly active bacterial strain. In vitro assays revealed that F9 exhibited broad-spectrum antifungal activity against eight plant pathogenic fungi, with inhibition ratio ranging from 62.66% to 88.18%. Additionally, the strain displayed the ability to produce IAA (5.97 ± 1.75 µg/mL), fix nitrogen, produce siderophores, and form biofilms. In vitro growth promotion assays demonstrated that different concentrations of F9 significantly promoted cucumber seedling growth. Furthermore, two pot experiments revealed that the strain exhibited biocontrol efficacy against cucumber wilt, with disease control rates ranging from 42.86% to 67.78%. Notably, the strain significantly increased the plant height, fresh weight, and dry weight, with increases ranging from 20.67% to 60.04%, 40.27% to 75.51%, and 22.07% to 52.54%, respectively. Two field trials confirmed the efficacy of F9 in controlling cucumber wilt, with disease control rates of 44.95% and 33.99%, respectively. The strain effectively alleviated the dwarfing and wilting symptoms caused by the pathogen. Compared with the FOC treatment, the F9 + FOC treatment significantly increased the plant height, fresh weight, and dry weight, with increases of 43.85% and 56.28%, 49.49% and 23.70%, and 36.25% and 73.63%, respectively. Enzyme activity assays indicated that inoculation significantly increased SOD activity in cucumber leaves and neutral phosphatase, sucrase, and urease activity in rhizosphere soil. Correlation analysis revealed a negative correlation between the disease index and plant height, fresh weight, dry weight, and peroxidase activity, with correlation coefficients of -0.53, -0.60, -0.38, and -0.45, respectively. These findings suggest that plant height, fresh weight, and dry weight are significantly negatively correlated with the cucumber disease index, highlighting their importance as indicators for evaluating the biocontrol efficacy of F9. In conclusion, F9 is a highly effective plant growth-promoting rhizobacterium with excellent biocontrol potential, showcasing promising applications in agricultural production.

摘要

黄瓜枯萎病由尖孢镰刀菌(Fusarium oxysporum f. sp. cucumerinum,FOC)引起,是一种土传病害,对黄瓜生产构成重大威胁,导致产量大幅损失。本研究旨在评估高活性菌株F9的生物防治和促生长效果。体外试验表明,F9对8种植物病原真菌具有广谱抗真菌活性,抑制率在62.66%至88.18%之间。此外,该菌株具有产生吲哚-3-乙酸(IAA,5.97±1.75μg/mL)、固氮、产生铁载体和形成生物膜的能力。体外促生长试验表明,不同浓度的F9显著促进黄瓜幼苗生长。此外,两个盆栽试验表明,该菌株对黄瓜枯萎病具有生物防治效果,病害防治率在42.86%至67.78%之间。值得注意的是,该菌株显著增加了株高、鲜重和干重,增幅分别为20.67%至60.04%、40.27%至75.51%和22.07%至52.54%。两个田间试验证实了F9对黄瓜枯萎病的防治效果,病害防治率分别为44.95%和33.99%。该菌株有效缓解了病原菌引起的矮化和枯萎症状。与FOC处理相比,F9+FOC处理显著增加了株高、鲜重和干重,增幅分别为43.85%和56.28%、49.49%和23.70%、36.25%和73.63%。酶活性测定表明,接种显著提高了黄瓜叶片中的超氧化物歧化酶(SOD)活性以及根际土壤中的中性磷酸酶、蔗糖酶和脲酶活性。相关性分析表明,病情指数与株高、鲜重、干重和过氧化物酶活性之间呈负相关,相关系数分别为-0.53、-0.60、-0.38和-0.45。这些结果表明,株高、鲜重和干重与黄瓜病情指数显著负相关,突出了它们作为评估F9生物防治效果指标的重要性。总之,F9是一种高效的植物促生根际细菌,具有优异的生物防治潜力,在农业生产中展现出广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c24c/11434287/262d3ad1295a/microorganisms-12-01882-g001.jpg

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