Root Endosphere Extraction

Root endosphere extraction is a microbiological method for isolating microorganisms that live within plant root tissues, helping researchers characterize plant–microbe interactions in environmental systems. The procedure typically removes soil and surface-associated cells through washing and surface sterilization, then cuts or macerates the cleaned roots to release internal microbial communities for culture-based analysis or DNA extraction and sequencing. By separating endophytic microbes from the surrounding rhizosphere, this approach supports studies of microbial diversity, plant health, nutrient cycling, and stress tolerance. It can also identify potentially beneficial organisms for environmental monitoring, sustainable agriculture, and plant-assisted remediation.

Root Endosphere Extraction - Related Videos

Research

JoVE Journal - Genetics

Exploring the Root Microbiome: Extracting Bacterial Community Data from the Soil, Rhizosphere, and Root Endosphere

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Cited by 65 •

2018

Here, we describe a protocol to obtain amplicon sequence data of soil, rhizosphere, and root endosphere microbiomes. This information can be used to investigate the composition and diversity of plant-associated microbial communities, and is suitable for the use with a wide range of plant species.

Extracting Metrics for Three-dimensional Root Systems: Volume and Surface Analysis from In-soil X-ray Computed Tomography Data

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Cited by 2 •

2016

A methodology for obtaining visual and quantitative root structure information from X-ray computed tomography data acquired in-soil is presented.

Harvesting DRG from Rat Spine: A Procedure to Extract Dorsal Root Ganglion from the Spine of a Rat Model

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2023

In this video, we demonstrate the extraction of dorsal root ganglion or DRG from a harvested rat spine for downstream applications.

Full-root Aortic Valve Replacement by Stentless Aortic Xenografts in Patients with Small Aortic Roots

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Cited by 4 •

2017

Full-root aortic valve replacement by stentless aortic xenograft is a viable option in patients with small aortic roots. We describe, a technique for the full-root implantation of stentless aortic xenografts, with emphasis on the management of the proximal suture line and coronary anastomoses, and discuss its limitations and alternative options.

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.

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