Pushparaj Karthika, Meyyazhagan Arun, Bhotla Haripriya Kuchi, Arumugam Vijaya Anand, Pappuswamy Manikantan, Vadivalagan Chithravel, Hakeem Khalid Rehman, Balasubramanian Balamuralikrishnan, Liu Wenchao, Mousavi Khaneghah Amin
Department of Zoology, School of Biosciences, Avinashilingam Institute for Home Science and Higher Education for Women, Coimbatore, 641 043, Tamil Nadu, India.
Department of Life Science, CHRIST (Deemed to Be University), Bengaluru, Karnataka, 560076, India.
Toxicon. 2023 Feb;223:107007. doi: 10.1016/j.toxicon.2022.107007. Epub 2022 Dec 20.
Fungi are ubiquitous in distribution and are found in grasses to hot springs. Their mode of nutrition provides sustenance for living and propagation. Ironically, varied fungal species have developed customized strategies for protection and survival by producing diverse secondary metabolites. The review aimed to project the contrasting potential features of the endophytic and thermophilic fungi groups. The metabolites and the enzymes of endophytic and thermophilic fungi served as the backbone to thrive and adapt within-host and in extreme conditions like higher pH, heat, and salinity, respectively. Identification, knowledge of their biochemistry and pathway, exploration, production, and utilization of these bioactive molecules in various commercial, industrial, and pharmaceutical domains were briefly discussed. The uniqueness of endophytes includes stress management and improved biomass production of the host, green fuel production, omnipresence, selected triple-symbiosis with the virus, synthesis of polyketides, and other active metabolites are widely used in biomedical applications and agriculture management. This review attempted to limelight the specific applications of thermophilic fungal metabolites and the roles of thermo-stable enzymes in bioprospecting. Moreover, probing the metabolites of thermophiles rendered novel antibiotic compounds, which were proven effective against multi-drug resistant bacteria and harboured the potential to curtail infectious diseases.
真菌分布广泛,从草地到温泉都有它们的身影。它们的营养方式为生存和繁殖提供了养分。具有讽刺意味的是,不同的真菌物种通过产生各种次生代谢产物,制定了定制化的保护和生存策略。本综述旨在突出内生真菌和嗜热真菌群体截然不同的潜在特征。内生真菌和嗜热真菌的代谢产物及酶分别是它们在宿主内以及在诸如高pH值、高温和高盐度等极端条件下茁壮成长和适应的支柱。简要讨论了这些生物活性分子在各种商业、工业和制药领域的鉴定、生物化学及途径知识、探索、生产和利用。内生菌的独特之处包括应激管理、提高宿主的生物量产量、绿色燃料生产、无处不在、与病毒形成特定的三重共生关系、聚酮化合物的合成以及其他活性代谢产物,这些在生物医学应用和农业管理中被广泛使用。本综述试图突出嗜热真菌代谢产物的具体应用以及热稳定酶在生物勘探中的作用。此外,对嗜热菌代谢产物的探索产生了新型抗生素化合物,这些化合物已被证明对多重耐药细菌有效,并且具有减少传染病的潜力。