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探索土壤真菌生物多样性中的极端真菌以应对全球变化下的可持续农业

Exploring extremophilic fungi in soil mycobiome for sustainable agriculture amid global change.

机构信息

Carrera de Bioquímica y Farmacia. Grupo de Microbiología Molecular y Biotecnología (GI-M2YB). Unidad de Salud y Bienestar, Universidad Católica de Cuenca, Cuenca, Ecuador.

Tecnológico Nacional de México/IT de Tuxtla Gutiérrez, Tuxtla Gutiérrez, Chiapas, Mexico.

出版信息

Nat Commun. 2024 Aug 13;15(1):6951. doi: 10.1038/s41467-024-51223-x.

Abstract

As the Earth warms, alternatives to traditional farming are crucial. Exploring fungi, especially poly extremophilic and extremotolerant species, to be used as plant probiotics, represents a promising option. Extremophilic fungi offer avenues for developing and producing innovative biofertilizers, effective biocontrol agents against plant pathogens, and resilient enzymes active under extreme conditions, all of which are crucial to enhance agricultural efficiency and sustainability through improved soil fertility and decreased reliance on agrochemicals. Yet, extremophilic fungi's potential remains underexplored and, therefore, comprehensive research is needed to understand their roles as tools to foster sustainable agriculture practices amid climate change. Efforts should concentrate on unraveling the complex dynamics of plant-fungi interactions and harnessing extremophilic fungi's ecological functions to influence plant growth and development. Aspects such as plant's epigenome remodeling, fungal extracellular vesicle production, secondary metabolism regulation, and impact on native soil microbiota are among many deserving to be explored in depth. Caution is advised, however, as extremophilic and extremotolerant fungi can act as both mitigators of crop diseases and as opportunistic pathogens, underscoring the necessity for balanced research to optimize benefits while mitigating risks in agricultural settings.

摘要

随着地球变暖,传统农业的替代品至关重要。探索真菌,特别是多极端耐受和极端耐受物种,作为植物益生菌使用,是一个很有前途的选择。极端真菌为开发和生产创新的生物肥料、有效防治植物病原体的生物防治剂以及在极端条件下仍具有活性的弹性酶提供了途径,所有这些对于通过提高土壤肥力和减少对农用化学品的依赖来提高农业效率和可持续性都至关重要。然而,极端真菌的潜力仍未得到充分探索,因此需要进行全面的研究,以了解它们作为工具在气候变化中促进可持续农业实践的作用。研究重点应放在揭示植物-真菌相互作用的复杂动态以及利用极端真菌的生态功能来影响植物生长和发育上。值得深入探索的方面有很多,例如植物表观基因组重塑、真菌细胞外囊泡的产生、次生代谢物的调控以及对原生土壤微生物组的影响等。不过需要谨慎,因为极端真菌和极端耐受真菌既可以作为作物病害的缓解剂,也可以作为机会性病原体,这突显了在农业环境中进行平衡研究以优化效益同时降低风险的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5539/11322326/fdf480095778/41467_2024_51223_Fig1_HTML.jpg

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