Sustainable and innovative biological control strategies against Pseudomonas syringae pv. tomato, Pseudomonas savastanoi pv. phaseolicola and Xanthomonas spp. affecting vegetable crops: a review.

IF 4.1 2区 生物学 Q1 PLANT SCIENCES
Frontiers in Plant Science Pub Date : 2025-04-30 eCollection Date: 2025-01-01 DOI:10.3389/fpls.2025.1536152
Davide Giovanardi, Enrico Biondi, Nina Biondo, Nicolás Quiroga, Francesco Modica, Gerardo Puopolo, Set Pérez Fuentealba
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引用次数: 0

Abstract

Genera Pseudomonas and Xanthomonas include bacterial species that are etiological agents of several diseases of major vegetable crops, such as tomato, pepper, bean, cabbage and cauliflower. The bacterial pathogens of those genera may cause severe crop damage, leading to symptoms like leaf spots, wilting, blights, and rotting. These plant pathogens can affect propagation materials and spread rapidly through plant tissues, contaminated soils, or water sources, making them challenging to control using conventional chemical products alone. Biopesticides, such as essential oils (EOs), are nowadays studied, tested and formulated by employing nano- and micro-technologies as innovative biological control strategies to obtain more sustainable products using less heavy metal ions. Moreover, there is a growing interest in exploring new biological control agents (BCAs), such as antagonistic bacterial and fungal species or bacteriophages and understanding their ecology and biological mechanisms to control bacterial phytopathogens. These include direct competition for nutrients, production of antimicrobial compounds, quorum quenching and indirect induction of systemic resistance. Optimisation of the biocontrol potential goes through the development of nanoparticle-based formulations and new methods for field application, from foliar sprays to seed coatings and root inoculation, aimed to improve microbial stability, shelf life, controlled release and field performance. Overall, the use of biological control in horticultural crops is an area of research that continues to advance and shows promising potential. This review aims to provide an in-depth exploration of commercially accessible biocontrol solutions and innovative biocontrol strategies, with a specific focus on the management of bacterial diseases in vegetable crops caused by Pseudomonas and Xanthomonas species. In this article, we highlighted the advancements in the development and use of EOs and other BCAs, emphasizing their potential or shortcomings for sustainable disease management. Indeed, despite the reduced dependence on synthetic pesticides and enhanced crop productivity, variable regulatory frameworks, compatibility among different BCAs, and consistent performance under field conditions are among the current challenges to their commercialization and use. The review seeks to contribute valuable insights into the evolving landscape of biocontrol in vegetable crops and to provide guidance for more effective and eco-friendly solutions against plant bacterial diseases.

丁香假单胞菌可持续创新生物防治策略。番茄假单胞菌;影响蔬菜作物的菜豆菌和黄单胞菌研究进展
假单胞菌属和黄单胞菌属是番茄、辣椒、豆类、卷心菜和花椰菜等主要蔬菜作物几种疾病的病原细菌。这些属的细菌病原体可能会对作物造成严重损害,导致叶斑、枯萎、枯萎和腐烂等症状。这些植物病原体可以影响繁殖材料,并通过植物组织、受污染的土壤或水源迅速传播,这使得仅使用传统化学产品难以控制它们。生物农药,如精油(EOs),目前正在研究、测试和配制,采用纳米和微技术作为创新的生物防治策略,以获得使用较少重金属离子的更可持续的产品。此外,人们对探索新的生物防治剂(bca)越来越感兴趣,如拮抗细菌和真菌物种或噬菌体,并了解其生态学和生物学机制,以控制细菌植物病原体。这包括对营养物质的直接竞争、抗菌化合物的产生、群体猝灭和间接诱导系统性耐药性。优化生物防治潜力是通过开发纳米颗粒配方和田间应用的新方法,从叶面喷洒到种子包衣和根接种,旨在提高微生物稳定性、保质期、控释和田间性能。总的来说,在园艺作物中使用生物防治是一个不断推进并显示出良好潜力的研究领域。本文旨在深入探索商业上可获得的生物防治解决方案和创新的生物防治策略,特别关注由假单胞菌和黄单胞菌引起的蔬菜作物细菌性疾病的管理。在本文中,我们重点介绍了EOs和其他bca的开发和使用进展,强调了它们在可持续疾病管理方面的潜力或缺点。事实上,尽管减少了对合成农药的依赖并提高了作物生产力,但监管框架的变化、不同bca之间的兼容性以及在田间条件下的一致性能是目前对其商业化和使用的挑战。该综述旨在为蔬菜作物生物防治的发展前景提供有价值的见解,并为更有效和环保的植物细菌性病害防治方案提供指导。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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