Interference of AHL signal production in the phytophatogen Pantoea agglomerans as a sustainable biological strategy to reduce its virulence

IF 6.1 1区 生物学 Q1 MICROBIOLOGY
Alba Amaro-da Cruz , Mónica Cabeo , Ana Durán-Viseras , Inmaculada Sampedro , Inmaculada Llamas
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Abstract

Pantoea agglomerans is considered one of the most ubiquitous and versatile organisms that include strains that induce diseases in various crops and occasionally cause opportunistic infections in humans. To develop effective strategies to mitigate its impact on plant health and agricultural productivity, a comprehensive investigation is crucial for better understanding its pathogenicity. One proposed eco-friendly approach involves the enzymatic degradation of quorum sensing (QS) signal molecules like N-acylhomoserine lactones (AHLs), known as quorum quenching (QQ), offering potential treatment for such bacterial diseases. In this study the production of C4 and 3-oxo-C6HSL was identified in the plant pathogenic P. agglomerans CFBP 11141 and correlated to enzymatic activities such as amylase and acid phosphatase. Moreover, the heterologous expression of a QQ enzyme in the pathogen resulted in lack of AHLs production and the attenuation of the virulence by mean of drastically reduction of soft rot disease in carrots and cherry tomatoes. Additionally, the interference with the QS systems of P. agglomerans CFBP 11141 by two the plant growth-promoting and AHL-degrading bacteria (PGP-QQ) Pseudomonas segetis P6 and Bacillus toyonensis AA1EC1 was evaluated as a potential biocontrol approach for the first time. P. segetis P6 and B. toyonensis AA1EC1 demonstrated effectiveness in diminishing soft rot symptoms induced by P. agglomerans CFBP 11141 in both carrots and cherry tomatoes. Furthermore, the virulence of pathogen notably decreased when co-cultured with strain AA1EC1 on tomato plants.

干扰植食性泛函菌(Pantoea agglomerans)中 AHL 信号的产生,作为降低其毒性的可持续生物策略
泛变形菌(Pantoea agglomerans)被认为是最普遍、最多变的生物之一,其菌株可诱发多种作物病害,偶尔也会导致人类机会性感染。为了制定有效的策略来减轻其对植物健康和农业生产率的影响,全面的调查对于更好地了解其致病性至关重要。一种拟议的生态友好型方法是通过酶降解法定量感应(QS)信号分子(如 N-酰基高丝氨酸内酯(AHL)),即法定量淬灭(QQ),为此类细菌疾病提供潜在的治疗方法。本研究确定了植物致病菌 P. agglomerans CFBP 11141 产生的 C4 和 3-氧代-C6HSL,并将其与淀粉酶和酸性磷酸酶等酶活性相关联。此外,在病原体中异源表达 QQ 酶会导致缺乏 AHLs 的产生,并通过大幅减少胡萝卜和樱桃番茄的软腐病来削弱其毒力。此外,首次评估了两种植物生长促进和 AHL 降解细菌(PGP-QQ)Pseudomonas segetis P6 和 Bacillus toyonensis AA1EC1 对 P. agglomerans CFBP 11141 QS 系统的干扰,将其作为一种潜在的生物防治方法。P. segetis P6 和 B. toyonensis AA1EC1 在减轻胡萝卜和樱桃番茄中由 P. agglomerans CFBP 11141 诱导的软腐病症状方面表现出了有效性。此外,在番茄植株上与菌株 AA1EC1 共同培养时,病原体的毒力明显降低。
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来源期刊
Microbiological research
Microbiological research 生物-微生物学
CiteScore
10.90
自引率
6.00%
发文量
249
审稿时长
29 days
期刊介绍: Microbiological Research is devoted to publishing reports on prokaryotic and eukaryotic microorganisms such as yeasts, fungi, bacteria, archaea, and protozoa. Research on interactions between pathogenic microorganisms and their environment or hosts are also covered.
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