INFLUENCE OF CLADOSPORIUM CLADOSPORIOIDES METABOLITES ON VIRAL INFECTION DYNAMICS IN POTATO PLANTS UNDER CONDITION OF NATURAL AND ARTIFICIAL PHYTOVIRAL INFECTION

L. Reshotko, I. Volkova
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Abstract

Objective. Study the influence of Cladosporium cladosporioides metabolites on viral infection dynamics in potato plants under conditions of artificial and natural infection. Methods. Laboratory (virological, immunological, electron microscopic), field, statistical. Results. The influence of microbial metabolites on the development of viral infection in potato plants was studied in 2021 and 2022 under the conditions of a small field experiment. In 2021, under the conditions of protection against re-infection in the variants artificially infected with potato virus X (PVX), visual and immunological methods did not reveal any plants with symptoms of viral damage, the electron microscopic examination showed a low concentration of virus particles in plants, which probably caused due to abnormally high temperature during the vegetation of micro-plants. Treatment of plants with C. cladosporioides metabolites did not significantly affect the accumulation of PVX. In the experiments of 2022, tubers from healthy and artificially infected microplants from variants with and without treatment of plants with C. cladosporioides metabolites were used. The analysis of the viral infection dynamics under the conditions of natural infection with phytopathogenic viruses and previous artificial infection with PVX showed that C. cladosporioides metabolites affect the development of viral infection. In most variants using microbial metabolites, the rate of visual manifestation of the viral disease was 3 % to 5 % lower compared to the control. The frequency of detection of viruses by the immunological method was higher in the control variant and was equal to 40 %, the lowest number of detected infected plants was reported in the variant when the plants were treated with C. cladosporioides metabolites for two consecutive years and was equal to 22.5 %. The greatest decrease in the viral protein content, which indicates a decrease in virus reproduction, was reported when C. cladosporioides metabolites were applied in the first and second years in the variants artificially infected with PVX in 2021 — the difference to the control was 38 %. We believe that the influence of C. cladosporioides metabolites on the viral infection dynamics in potato plants is caused by exohormonal substances included in their composition. Conclusion. The results of two-year studies show that C. cladosporioides metabolites influence the viral infection dynamics. A decrease in the rate of visual manifestations of viral disease is registered. The lowest number of infected plants was found in the variant when the plants were treated with C. cladosporioides metabolites for consecutive two years. Also, the action of microbial metabolites reduces the concentra tion of viral protein in potato plants. Such a reaction of the “plant-virus” system indicates the inhibitory activity of C. cladosporioides metabolites against viruses.
自然和人工侵染条件下枝孢子菌代谢物对马铃薯病毒侵染动态的影响
目标。研究自然侵染和人工侵染条件下枝孢子菌代谢物对马铃薯病毒侵染动态的影响。方法。实验室(病毒学、免疫学、电镜)、野外、统计学。结果。在2021年和2022年的小型田间试验条件下,研究了微生物代谢物对马铃薯植株病毒感染发展的影响。2021年,人工感染马铃薯X病毒(PVX)的变异体在防止再感染的条件下,目视和免疫学方法未发现任何植物出现病毒损害症状,电镜检查显示植物中病毒颗粒浓度低,可能是由于微植物生长期间温度异常高所致。枝孢霉代谢物处理植株对PVX积累无显著影响。在2022年的实验中,使用了健康和人工感染的微型植物的块茎,这些植物来自经过和未经过枝孢梭菌代谢物处理的植物。对植物病原性病毒自然感染和之前人工感染PVX条件下的病毒感染动态分析表明,枝孢子虫代谢物影响病毒感染的发展。在大多数使用微生物代谢物的变异中,病毒性疾病的目视表现率比对照组低3%至5%。免疫检出率在对照变异中较高,为40%,连续2年用枝孢子虫代谢物处理的变异检出率最低,为22.5%。据报道,在2021年人工感染PVX的变异体中,在第一年和第二年施用cladosporioides代谢物时,病毒蛋白质含量下降幅度最大,这表明病毒繁殖减少,与对照组相比差异为38%。我们认为枝孢霉代谢物对马铃薯病毒侵染动态的影响是由其组成中的外激素物质引起的。结论。两年的研究结果表明,枝孢子虫代谢物影响病毒感染动态。病毒性疾病的目视表现率有所下降。以枝孢霉代谢物连续处理2年时,变异株的侵染数量最少。此外,微生物代谢产物的作用降低了马铃薯植株中病毒蛋白的浓度。这种“植物-病毒”系统的反应表明枝孢子虫代谢物对病毒具有抑制活性。
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