da Silva Manuela Vitoria Nascimento, Alexandre Andrei da Silva, Nunez Cecilia Veronica
Bioprospecting and Biotechnology Laboratory, Technology and Innovation Coordination, National Institute of Amazonian Research, Manaus 69067-375, AM, Brazil.
Graduate Program in Biotechnology and Natural Resources of the Amazon, School of Health Sciences, Amazonas State University (UEA), Manaus 69050-010, AM, Brazil.
Microorganisms. 2025 Aug 5;13(8):1826. doi: 10.3390/microorganisms13081826.
The genus is widely known for its phytopathological significance, especially as the causative agent of anthracnose in diverse agricultural crops. However, recent studies have unveiled its ecological versatility and biotechnological potential, particularly among endophytic species. These fungi, which asymptomatically colonize plant tissues, stand out as high-yielding producers of bioactive secondary metabolites. Given their scientific and economic relevance, this review critically examines endophytic species, focusing on the chemical diversity and biological activities of the metabolites they produce, including antibacterial, antifungal, and cytotoxic activity against cancer cells, and antioxidant properties. This integrative review was conducted through a structured search of scientific databases, from which 39 relevant studies were selected, highlighting the chemical and functional diversity of these compounds. The analyzed literature emphasizes their potential applications in pharmaceutical, agricultural, and industrial sectors. Collectively, these findings reinforce the promising biotechnological potential of endophytes not only as sources of bioactive metabolites but also as agents involved in ecological regulation, plant health promotion, and sustainable production systems.
该属因其植物病理学意义而广为人知,尤其是作为多种农作物炭疽病的病原体。然而,最近的研究揭示了其生态多功能性和生物技术潜力,特别是在内生菌物种中。这些真菌无症状地定殖于植物组织中,是生物活性次生代谢产物的高产生产者。鉴于它们在科学和经济方面的相关性,本综述批判性地研究了内生菌物种,重点关注它们产生的代谢产物的化学多样性和生物活性,包括抗菌、抗真菌以及对癌细胞的细胞毒性活性和抗氧化特性。本综合综述通过对科学数据库的结构化搜索进行,从中选择了39项相关研究,突出了这些化合物的化学和功能多样性。分析的文献强调了它们在制药、农业和工业领域的潜在应用。总体而言,这些发现强化了内生菌不仅作为生物活性代谢产物来源,而且作为参与生态调节、促进植物健康和可持续生产系统的因子所具有的有前景的生物技术潜力。