Saleem Sana, Sekara Agnieszka, Pokluda Robert
Department of Vegetable Sciences and Floriculture, Faculty of Horticulture, Mendel University in Brno, Valticka 337, 691 44 Lednice, Czech Republic.
Department of Horticulture, Faculty of Biotechnology and Horticulture, University of Agriculture, 31-120 Krakow, Poland.
Plants (Basel). 2022 Dec 7;11(24):3417. doi: 10.3390/plants11243417.
Fulfilling the food demand of a fast-growing population is a global concern, resulting in increased dependence of the agricultural sector on various chemical formulations for enhancing crop production. This leads to an overuse of chemicals, which is not only harmful to human and animal health, but also to the environment and the global economy. Environmental safety and sustainable production are major responsibilities of the agricultural sector, which is inherently linked to the conservation of the biodiversity, the economy, and human and animal health. Scientists, therefore, across the globe are seeking to develop eco-friendly and cost-effective strategies to mitigate these issues by putting more emphasis on the use of beneficial microorganisms. Here, we review the literature on , a beneficial endophytic fungus, to bring to the fore its properties of cultivation, the ability to enhance plant growth, improve the quality of produced crops, mitigate various plant stresses, as well as protect the environment. The major points in this review are as follows: (1) Although various plant growth promoting microorganisms are available, the distinguishing character of being axenically cultivable with a wide range of hosts makes it more interesting for research. (2) has numerous functions, ranging from promoting plant growth and quality to alleviating abiotic and biotic stresses, suggesting the use of this fungus as a biofertiliser. It also improves the soil quality by limiting the movement of heavy metals in the soil, thus, protecting the environment. (3) 's modes of action are due to interactions with phytohormones, metabolites, photosynthates, and gene regulation, in addition to enhancing nutrient and water absorption. (4) Combined application of and nanoparticles showed synergistic promotion in crop growth, but the beneficial effects of these interactions require further investigation. This review concluded that has a great potential to be used as a plant growth promoter or biofertiliser, ensuring sustainable crop production and a healthy environment.
满足快速增长的人口的粮食需求是一个全球关注的问题,这导致农业部门越来越依赖各种化学制剂来提高作物产量。这导致了化学物质的过度使用,这不仅对人类和动物健康有害,而且对环境和全球经济也有害。环境安全和可持续生产是农业部门的主要责任,而农业部门与生物多样性保护、经济以及人类和动物健康有着内在联系。因此,全球的科学家都在寻求制定生态友好且具有成本效益的策略,通过更加强调有益微生物的使用来缓解这些问题。在此,我们回顾了关于一种有益内生真菌的文献,以突出其培养特性、促进植物生长的能力、提高所产作物的品质、减轻各种植物胁迫以及保护环境的能力。本综述的要点如下:(1)尽管有多种促进植物生长的微生物,但能够在无菌条件下与多种宿主一起培养这一独特特性使得该真菌在研究中更具吸引力。(2)该真菌具有众多功能,从促进植物生长和品质提升到缓解非生物和生物胁迫,这表明可以将这种真菌用作生物肥料。它还通过限制土壤中重金属的移动来改善土壤质量,从而保护环境。(3)该真菌的作用方式是由于与植物激素、代谢物、光合产物以及基因调控相互作用,此外还能增强养分和水分吸收。(4)该真菌与纳米颗粒的联合应用在作物生长方面显示出协同促进作用,但这些相互作用的有益效果需要进一步研究。本综述得出结论,该真菌具有巨大潜力可被用作植物生长促进剂或生物肥料,确保可持续的作物生产和健康的环境。