Related Experiment Video
Updated: Oct 12, 2025

Hybrid-Cut: An Improved Sectioning Method for Recalcitrant Plant Tissue Samples
Published on: November 23, 2016
Multifaceted roles of silicon in mitigating environmental stresses in plants
M L Ahire1, P S Mundada2, T D Nikam3
1Department of Botany, Yashavantrao Chavan Institute of Science, Satara, 415 001, Maharashtra, India.
Abstract:
Food security relies on plant productivity and plant's resilience to climate change driven environmental stresses. Plants employ diverse adaptive mechanisms of stress-signalling pathways, antioxidant defense, osmotic adjustment, nutrient homeostasis and phytohormones. Over the last few decades, silicon has emerged as a beneficial element for enhancing plant growth productivity. Silicon ameliorates biotic and abiotic stress conditions by regulating the physiological, biochemical and molecular responses. Si-uptake and transport are facilitated by specialized Si-transporters (Lsi1, Lsi2, Lsi3, and Lsi6) and, the differential root anatomy has been shown to reflect in the varying Si-uptake in monocot and dicot plants. Silicon mediates a number of plant processes including osmotic, ionic stress responses, metabolic processes, stomatal physiology, phytohormones, nutrients and source-sink relationship. Further studies on the transcriptional and post-transcriptional regulation of the Si transporter genes are required for better uptake and transport in spatial mode and under different stress conditions. In this article, we present an account of the availability, uptake, Si transporters and, the role of Silicon to alleviate environmental stress and improve plant productivity.
Related Concept Videos
Responses to Salt Stress
Responses to Drought and Flooding
Introduction to Plant Diversity
Responses to Heat and Cold Stress
Adaptations that Reduce Water Loss
Plant Hormones

