Defense peptides are part of plants' innate immune system and show widespread occurrence across the plant kingdom. Most of them belong to the category of antimicrobial peptides (AMPs) and act as strong chemical weapons against the biotic stresses that plants encounter. Plant AMP families exhibit remarkably conserved topology, being cysteine-rich with a conserved number of disulfide bridges stabilizing their three-dimensional structure, cationic in nature, and having hydrophobic surfaces. However, specific structural properties like amino acid sequence, distribution of charged and hydrophobic residues, secondary conformations, and polar angle play significant roles in fine-tuning their natural functions and their interactions with biological membranes. Considering their vital role in plant defense and strong structure-function relationships, these peptides have been explored for huge potential in human health and therapeutics. Owing to the structural flexibilities, cyclotides are considered promising scaffolds as drug design frameworks toward various targets and applications in therapeutics. To elaborate on this idea, we discuss the functional heterogeneity within the much-conserved cyclotide subfamilies. We discuss Möbius, bracelet, and trypsin inhibitor family cyclotides with respect to their membrane binding affinities pivoting on the surface charge and hydrophobicity. The decrease of peptide hydrophobicity and increase of electrostatic surface are associated with more specific antimicrobial selectivity and less toxicity to eukaryotic cells, widening their range of intracellular targets. We also discuss the application of AMPs in therapeutics and recent advances in the delivery of AMPs using nanosystems as vehicles.
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http://dx.doi.org/10.1021/acsomega.4c11339 | DOI Listing |
Metab Brain Dis
March 2025
Department of Biochemistry, Faculty of Sciences, University of Uyo, Uyo, Nigeria.
Kindling is an experimental-induced seizure consistent with epilepsy disease, a chronic neurological disorder characterised by spontaneous and repeated seizures. This disease is associated with oxidative stress, and most therapeutic strategies against epilepsy aim at improving the antioxidant defence mechanism in the brain. However, prolonged usage and associated adverse side effects limit antiepileptics, warranting natural antioxidant patronage.
View Article and Find Full Text PDFJ Chem Ecol
March 2025
International Centre of Insect Physiology and Ecology, P. O. Box 30772-00100, Nairobi, Kenya.
The fall armyworm (FAW), Spodoptera frugiperda, is a serious invasive crop pest and threat to food security. Conventional pest control approaches using chemical pesticides can lead to adverse environmental and human health problems calling for safer alternative pest management options. Volatile organic compounds (VOCs) released by plants constitutively and in response to herbivory have been shown to enhance ecologically benign biocontrol alternatives to chemical insecticides for pest management.
View Article and Find Full Text PDFPlant Biol (Stuttg)
March 2025
School of Biological Sciences, Monash University, Melbourne, Victoria, Australia.
Moderately saline water has been proposed as a potential irrigation resource for crops such as forage sorghum (Sorghum bicolor × Sorghum bicolor nothosubsp. drummondii) in drought-prone regions. However, it is not yet fully understood how salinity affects growth and potential toxicity of sorghum.
View Article and Find Full Text PDFAdv Mater
March 2025
Université de Bretagne Sud, IRDL UMR CNRS 6027, BIONICS group, Lorient, 56100, France.
Biological structures provide inspiration for developing advanced materials from sustainable resources, enabling passive structural morphing. Despite an increasing interest for parsimony-oriented innovation, sustainable shape-changing materials based on renewable resources remain underexplored. In this work, the architecture of a single plant fiber cell wall (S, for instance) is simplified to design novel concepts of 4D printed tubular moisture-driven structural actuators, using the hygromorphic properties of continuous flax fiber (cFF) reinforced materials.
View Article and Find Full Text PDFPest Manag Sci
March 2025
Departamento de Entomologia, Universidade Federal de Lavras (UFLA), Campus Universitário, Lavras, Brazil.
Background: Silicon (Si) fertilization has been well-documented to enhance plant resistance against insect pests by increasing the abrasiveness and toughness of leaf tissues. Additionally, Si also interacts with the jasmonic acid pathway, which modulates antiherbivore induced defenses, including the emission of herbivore-induced plant volatiles (HIPVs) that attract natural enemies. In this study, we examined the influence of Si fertilization on the attractiveness of nocturnal HIPVs from maize plants infested with the fall armyworm (FAW), Spodoptera frugiperda (JE Smith), to the predatory earwig Doru luteipes (Scudder).
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