Al-Ani Laith Khalil Tawfeeq, Soares Filippe Elias de Freitas, Sharma Ashutosh, de Los Santos-Villalobos Sergio, Valdivia-Padilla Ana Victoria, Aguilar-Marcelino Liliana
Department of Plant Protection, College of Agriculture, University of Baghdad, Baghdad, Iraq.
School of Biology Science, Universiti Sains Malaysia, Kubang Kerian, Malaysia.
Front Fungal Biol. 2022 May 16;3:863198. doi: 10.3389/ffunb.2022.863198. eCollection 2022.
In this review, we supply a framework for the importance of nematophagous fungi (nematophagous fungi [NF]) and their role in agricultural ecosystems. We characterize the taxonomy, diversity, ecology, and type of NF, depending on their interaction with plant-parasitic nematodes (PPNs). We described potential mechanisms of NF in the control of PPNs, the efficiency and methods of utilization, and the use of nematicides in sustainable agriculture. We explain the utilization of NF in nanotechnology as a new approach. NF are significant in the soil for having the effective potential for use in sustainable agriculture. These types of fungi belong to wide taxa groups, such as Ascomycota, Basidiomycota, and other groups. Diverse NF are available in different kinds of soil, especially in soils that contain high densities of nematodes. There is a relationship between the environment of nematodes and NF. NF can be divided into two types according to the mechanisms that affect nematodes. These types are divided into direct or indirect effects. The direct effects include the following: ectoparasites, endoparasites, cyst, or egg parasites producing toxins, and attack tools as special devices. However, the indirect effect comprises two groups: paralyzing toxins and the effect on the life cycle of nematodes. We explained the molecular mechanisms for determining the suitable conditions in brief and clarified the potential for increasing the efficacy of NF to highly impact sustainable agriculture in two ways: directly and indirectly.
在本综述中,我们提供了一个框架,阐述了食线虫真菌(食线虫真菌[NF])的重要性及其在农业生态系统中的作用。我们根据食线虫真菌与植物寄生线虫(PPN)的相互作用,对其分类学、多样性、生态学和类型进行了描述。我们描述了食线虫真菌控制植物寄生线虫的潜在机制、利用效率和方法,以及杀线虫剂在可持续农业中的应用。我们解释了将食线虫真菌用于纳米技术这一新型方法。食线虫真菌在土壤中具有用于可持续农业的有效潜力,因而意义重大。这类真菌属于广泛的分类群,如子囊菌门、担子菌门和其他类群。不同种类的土壤中都存在多样的食线虫真菌,尤其是在含有高密度线虫的土壤中。线虫的生存环境与食线虫真菌之间存在关联。根据影响线虫的机制,食线虫真菌可分为两类。这两类分为直接影响或间接影响。直接影响包括:外寄生、内寄生、包囊或卵寄生产生毒素,以及作为特殊装置的攻击工具。然而,间接影响包括两组:麻痹毒素和对线虫生命周期的影响。我们简要解释了确定适宜条件的分子机制,并从直接和间接两个方面阐明了提高食线虫真菌功效以对可持续农业产生重大影响的潜力。