Departamento de Microbiologia, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Avenida Antônio Carlos, 6627, Pampulha, Belo Horizonte, MG, CEP: 31270-901, Brazil.
Braz J Microbiol. 2024 Sep;55(3):2463-2471. doi: 10.1007/s42770-024-01440-9. Epub 2024 Jul 4.
Cryptococcus gattii, an environmental fungus, is one of the agents of cryptococcosis. The influence of agrochemicals on fungal resistance to antifungals is widely discussed. However, the effects of benomyl (BEN) on fungal interaction with different hosts is still to be understood. Here we studied the influence of adaptation to BEN in the interaction with a plant model, phagocytes and with Tenebrio molitor. First, the strain C. gattii L24/01 non-adapted (NA), adapted (A) to BEN, and adapted with further culture on drug-free media (10p) interact with Nicotiana benthamiana, with a peak in the yeast burden on the 7th day post-inoculation. C. gattii L24/01 A and 10p provided lower fungal burden, but these strains increased cell diameter and capsular thickness after the interaction, together with decreased fungal growth. The strains NA and A showed reduced ergosterol levels, while 10p exhibited increased activity of laccase and urease. L24/01 A recovered from N. benthamiana was less engulfed by murine macrophages, with lower production of reactive oxygen species. This phenotype was accompanied by increased ability of this strain to grow inside macrophages. Otherwise, L24/01 A showed reduced virulence in the T. molitor larvae model. Here, we demonstrate that the exposure to BEN, and interaction with plants interfere in the morphophysiology and virulence of the C. gattii.
隐球菌,一种环境真菌,是隐球菌病的病原体之一。农用化学品对真菌对抗真菌药物的耐药性的影响已被广泛讨论。然而,苯菌灵(BEN)对真菌与不同宿主相互作用的影响仍有待了解。在这里,我们研究了适应 BEN 对与植物模型、吞噬细胞和黄粉虫相互作用的影响。首先,未适应(NA)、适应(A)苯菌灵和适应后在无药培养基上培养(10p)的 C. gattii L24/01 菌株与 Nicotiana benthamiana 相互作用,在接种后第 7 天酵母负荷达到峰值。C. gattii L24/01 A 和 10p 提供了较低的真菌负荷,但这些菌株在相互作用后增加了细胞直径和荚膜厚度,同时降低了真菌生长。菌株 NA 和 A 表现出较低的麦角固醇水平,而 10p 则表现出漆酶和脲酶活性增加。从 Nicotiana benthamiana 中回收的 L24/01 A 被鼠巨噬细胞吞噬的能力降低,活性氧的产生减少。这种表型伴随着该菌株在巨噬细胞内生长能力的增加。另一方面,L24/01 A 在 T. molitor 幼虫模型中的毒力降低。在这里,我们证明了暴露于 BEN 并与植物相互作用会干扰 C. gattii 的形态生理学和毒力。