Nunes Moreira Costa Guilherme, Santos Ana Carolina Costa, Dos Santos Paschoal Tamires, Garcia Anna Paula Martins, Dos Santos Anderson Rodrigues, Ueira-Vieira Carlos
Laboratory of Genetics, Institute of Biotechnology, Federal University of Uberlândia, Uberlândia, Brazil.
Faculty of Computer Science, Federal University of Uberlândia, Uberlândia, Brazil.
J Nematol. 2025 Jun 21;57(1):20250028. doi: 10.2478/jofnem-2025-0028. eCollection 2025 Feb.
The plant-parasitic nematode causes significant financial losses in agriculture due to its wide range of host plants. Microbe-based biological control is increasingly being recognized as a viable and environmentally sustainable alternative to synthetic chemical nematicides. With this in mind, the present study evaluated the potential of microorganisms found in the larval food of stingless bees for the biological control of . Screening of these microorganisms revealed the presence of a bacterium with nematicidal activity against . Pot tests with soybean plants demonstrated that the bacterium Mq-MCK-07 reduced the population of , while tests confirmed its nematicidal effect on second-stage juveniles (J2) as well as its inhibitory effect on egg hatching. DNA sequencing identified the bacterium as strain mandacaium, and revealed potential genes of interest for the control of multiple pathogens. This study provides a theoretical foundation for strain mandacaium as a promising eco-friendly nematicide.
这种植物寄生线虫因其广泛的寄主植物范围而给农业造成重大经济损失。基于微生物的生物防治日益被视为一种可行且环境可持续的替代合成化学杀线虫剂的方法。考虑到这一点,本研究评估了无刺蜂幼虫食物中发现的微生物对[线虫名称未给出]进行生物防治的潜力。对这些微生物的筛选揭示了一种对[线虫名称未给出]具有杀线虫活性的细菌的存在。用大豆植株进行的盆栽试验表明,细菌Mq-MCK-07减少了[线虫名称未给出]的种群数量,而[具体试验未明确]试验证实了其对第二阶段幼虫(J2)的杀线虫作用以及对卵孵化的抑制作用。DNA测序将该细菌鉴定为曼达凯姆菌株,并揭示了控制多种病原体的潜在相关基因。本研究为曼达凯姆菌株作为一种有前景的环保型杀线虫剂提供了理论基础。