Ishaq Nida, Bilal Muhammad, Iqbal Hafiz M N
School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
School of Life Science and Food Engineering, Huaiyin Institute of Technology, Huaian 223003, China.
Medicines (Basel). 2019 Feb 19;6(1):29. doi: 10.3390/medicines6010029.
Plant-based secondary metabolites with medicinal potentialities such as defensins are small, cysteine-rich peptides that represent an imperative aspect of the inherent defense system. Plant defensins possess broad-spectrum biological activities, e.g., bactericidal and insecticidal actions, as well as antifungal, antiviral, and anticancer activities. The unique structural and functional attributes provide a nonspecific and versatile means of combating a variety of microbial pathogens, i.e., fungi, bacteria, protozoa, and enveloped viruses. Some defensins in plants involved in other functions include the development of metal tolerance and the role in sexual reproduction, while most of the defensins make up the innate immune system of the plants. Defensins are structurally and functionally linked and have been characterized in various eukaryotic microorganisms, mammals, plants, gulls, teleost species of fish, mollusks, insect pests, arachnidan, and crustaceans. This defense mechanism has been improved biotechnologically as it helps to protect plants from fungal attacks in genetically modified organisms (GMO). Herein, we review plant defensins as secondary metabolites with medicinal potentialities. The first half of the review elaborates the origin, structural variations, and mechanism of actions of plant defensins. In the second part, the role of defensins in plant defense, stress response, and reproduction are discussed with suitable examples. Lastly, the biological applications of plant defensins as potential antimicrobial and anticancer agents are also deliberated. In summary, plant defensins may open a new prospect in medicine, human health, and agriculture.
具有药用潜力的植物次生代谢产物,如防御素,是一类富含半胱氨酸的小分子肽,是植物固有防御系统的重要组成部分。植物防御素具有广谱生物活性,如杀菌、杀虫作用,以及抗真菌、抗病毒和抗癌活性。其独特的结构和功能特性提供了一种非特异性且通用的手段来对抗多种微生物病原体,即真菌、细菌、原生动物和包膜病毒。植物中的一些防御素还参与其他功能,包括金属耐受性的发展和在有性生殖中的作用,而大多数防御素构成了植物的先天免疫系统。防御素在结构和功能上相互关联,已在各种真核微生物、哺乳动物、植物、海鸥、硬骨鱼类、软体动物、害虫、蜘蛛和甲壳类动物中得到表征。这种防御机制在生物技术上得到了改进,因为它有助于保护转基因生物中的植物免受真菌攻击。在此,我们综述了具有药用潜力的植物防御素次生代谢产物。综述的前半部分阐述了植物防御素的起源、结构变异和作用机制。在第二部分中,通过适当的例子讨论了防御素在植物防御、应激反应和繁殖中的作用。最后,还探讨了植物防御素作为潜在抗菌和抗癌剂的生物学应用。总之,植物防御素可能为医学、人类健康和农业开辟新的前景。