Journal Article

·2024

Scanning electron microscopic investigation on Chicory tribe (Compositae) botanical sources and their antimicrobial potential

Saleh AlNadhari , Wahidah H. Al‐Qahtani , Farooque Ali Bughio , Rabia Asma Memon , Muhammad Kamran , Ömer Said Toker YTU , Erta Dodona , Jonida Biturku , Adrian Maho , Nidal Jaradat ,

Microscopy Research and Technique

Abstract

This study discusses the micro-level structural details of Cichorieae pollen sources elucidated by scanning electron microscopy (SEM) and explains their symmetry and morphometry. The in-depth knowledge from the electron ultrastructure of Asteraceae pollen has provided insights into enhanced pollen morphology, and the antimicrobial significance of species under study presents novel avenues for their natural defense mechanisms in the development of antimicrobial agents. In this research, both quantitative and qualitative features of pollen were examined. The pollen grains are prolate-spheroidal and oblate-spheroidal in shape, characterized by a maximum polar diameter of 55.6-61.0 μm and a maximum equatorial distance of 68.3-74.4 μm. SEM reveals various configurations such as echinate perforate-tectate, psilate, and echino-lophate perforate. The Cichorieae species have significant antimicrobial efficacy and are promising sources for the development of novel antimicrobial drugs with potential implications in pharmaceutical and healthcare industries. SEM analysis of Cichorieae pollens has provided remarkable insights into their unique structures, revealing diverse shapes and surface ornamentations, which can be used for accurate Asteraceae species identification. RESEARCH HIGHLIGHTS: SEM provides unique pollen surface structures and patterns of Chicory pollen grains. Chemical composition of Chicory botanical sources provides valuable information on their potential as antimicrobial agents. SEM imaging reveals specialized fenestrate grain structures of taxonomic importance.

Keywords

Pollen Antimicrobial Scanning electron microscope Biology Asteraceae Ultrastructure Botany Microbiology Physics Optics

Subject Areas

Natural product bioactivities and synthesis ·Molecular Biology ·Life Sciences
Sesquiterpenes and Asteraceae Studies ·Cancer Research ·Life Sciences
Plant Toxicity and Pharmacological Properties ·Molecular Biology ·Life Sciences