Wu Fangfang, Wang Haibo, Lin Yankun, Feng Shun, Li Xinguo
National Key Laboratory of Tropical Crop Breeding, School of Tropical Agriculture and Foresty, Hainan University, Haikou 570228, Hainan, China.
National Key Laboratory of Tropical Crop Breeding, School of Tropical Agriculture and Foresty, Hainan University, Haikou 570228, Hainan, China; Sanya Nanfan Research Institute, Hainan University, Haikou 570228, Hainan, China.
Int J Food Microbiol. 2025 Feb 16;430:111038. doi: 10.1016/j.ijfoodmicro.2024.111038. Epub 2024 Dec 27.
During storage and transportation, fruits and vegetables are susceptible to various pathogens, leading to quality degradation and significant economic losses. Currently, chemical pesticides are primarily used for control; however, their overuse poses serious threats to human health and causes environmental pollution. Biocontrol, known for its environmentally friendly characteristics, has been extensively studied. Among biocontrol agents, yeasts are widely distributed and possesses strong antagonistic abilities, making them crucial agents against numerous pathogenic fungi. Despite their considerable promise, the full potential of antagonistic yeasts for broader application remains untapped. Therefore, this paper reviews the mechanisms of antagonistic yeasts as biocontrol agents for postharvest diseases, including space and nutrients competition, competition for scarce iron resources, parasitism, production of soluble and volatile antifungal compounds, and induction of host systemic resistance. The paper also introduces research on the combined application of antagonistic yeasts with physical, chemical, and other microbial methods. Ultimately, this review provides a potential pathway to enhance the biocontrol effectiveness of antagonistic yeasts and expand their application prospects.
在储存和运输过程中,水果和蔬菜易受各种病原体的侵害,导致品质下降和重大经济损失。目前,化学农药主要用于防治;然而,其过度使用对人类健康构成严重威胁并造成环境污染。以环境友好为特点的生物防治已得到广泛研究。在生物防治剂中,酵母分布广泛且具有强大的拮抗能力,使其成为对抗众多致病真菌的关键因素。尽管具有相当大的潜力,但拮抗酵母在更广泛应用方面的全部潜力仍未得到开发。因此,本文综述了拮抗酵母作为采后病害生物防治剂的作用机制,包括空间和营养竞争、对稀缺铁资源的竞争、寄生作用、可溶性和挥发性抗真菌化合物的产生以及诱导宿主系统抗性。本文还介绍了拮抗酵母与物理、化学和其他微生物方法联合应用的研究。最终,本综述为提高拮抗酵母的生物防治效果和扩大其应用前景提供了一条潜在途径。