Lateral Root Growth

Lateral root growth is the developmental process by which plants form secondary roots from existing primary roots, expanding the root system and improving access to water and nutrients. It begins when pericycle cells, typically near the xylem poles, acquire founder-cell identity in response to localized auxin accumulation, then divide to form a lateral root primordium that emerges through surrounding tissues. In developmental biology, studying this process reveals how hormonal signaling, cell division, and tissue remodeling coordinate organ formation. Its regulation also informs research on root-system architecture, environmental plasticity, and crop traits linked to resource uptake and stress adaptation.

Lateral Root Growth - Related Videos

Research

JoVE Journal - Biology

Lateral Root Inducible System in Arabidopsis and Maize

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Cited by 8 •

2016

The Lateral Root Inducible System (LRIS) allows for synchronous induction of lateral roots and is presented for Arabidopsis thaliana and maize.

Research

JoVE Journal - Bioengineering
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Time-lapse Fluorescence Imaging of Arabidopsis Root Growth with Rapid Manipulation of The Root Environment Using The RootChip

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Cited by 43 •

2012

This article provides a protocol for cultivation of Arabidopsis seedlings in the RootChip, a microfluidic imaging platform that combines automated control of growth conditions with microscopic root monitoring and FRET-based measurement of intracellular metabolite levels.

Education

JoVE Core - Biology

Primary and Secondary Growth in Roots and Shoots

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2026

Vascular plants, which account for over 90% of the Earth’s vegetation, all undergo primary growth—which lengthens roots and shoots. Many land plants, notably woody plants, also undergo secondary growth—which thickens roots and shoots.Primary and secondary growth can occur simultaneously in a plant. While primary growth occurs in newer plant regions, secondary growth transpires in regions that have completed primary growth. There are overlaps and distinctions between root growth and shoot growth.

A Simple Chamber for Long-term Confocal Imaging of Root and Hypocotyl Development

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Cited by 25 •

2017

Presented here is a simple technique for high-resolution confocal time-lapse imaging of root and hypocotyl development for up to 3 days using high numerical-aperture objectives and perfluorodecalin as an immersion medium.

Full-Endoscopic Interlaminar Approach for Decompression of Lateral Recess Stenosis

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Cited by 1 •

2023

Technical advances and increased experience in full-endoscopic spinal surgeries enable these procedures to be performed with minimal incision, muscle retraction, and bone removal.

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