Jan 10, 2023

Public workspacePreparation of 1L of Nematode Growth Medium (NGM)

  • 1Research Centre on Animal Cognition (CRCA), Centre for Integrative Biology (CBI), Toulouse III University, CNRS, Toulouse, France
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Protocol CitationAlfonso Pérez Escudero, gabrielmadirolas, Alid Al-Asmar 2023. Preparation of 1L of Nematode Growth Medium (NGM). protocols.io https://dx.doi.org/10.17504/protocols.io.81wgby1jnvpk/v1
License: This is an open access protocol distributed under the terms of the Creative Commons Attribution License,  which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited
Protocol status: Working
We use this protocol and it's working
Created: September 19, 2022
Last Modified: January 10, 2023
Protocol Integer ID: 70233
Funders Acknowledgement:
Human Frontier Science Program
Grant ID: LT000537/2015
CNRS Momentum Program
Fyssen Foundation Research Grant
Gore Family Foundation start-up grant
SEVAB PhD School (Toulouse III University)
Abstract
Original source of the protocol: WormBook Methods http://www.wormbook.org/chapters/www_strainmaintain/strainmaintain.html.
This protocol is for making Nematode Growth Medium (NGM), a standard agar-based medium to grow C. elegans in petri dishes. It describes both medium preparation and pouring.
Materials
Agar powder: ReagentAgarSigmaCatalog #A1296-10KG
Cholesterol: ReagentCholesterol powderSigmaCatalog #C3045-5G
Absolute ethanol: ReagentEthanol absolute ≥99.8% AnalaR NORMAPUR® ACS Reag. Ph. Eur. Analytical ReagentVWR ChemicalsCatalog #20821.310-1L
Sodium chloride (NaCl): ReagentSodium chlorideSigmaCatalog #S5886-1KG
Peptone: ReagentPeptone (Bacto)BdCatalog #211677-500G
Tissue culture dishes (100x20mm): ReagentFalcon® 100 mm TC-treated Cell Culture DishCorningCatalog #353003
In order to perform this protocol, you will need the following solutions:
Add Amount16 g ±0.2 of agar powder to a clean 1L bottle.

Add Amount2.32 g ±0.02 of sodium chloride (NaCl).
Add Amount2 g ±0.02 of peptone.

Add Amount780 mL of milliQ water.

Add a clean magnet (for stirring) and autoclave.
Put the bottle on a stirrer, and wait until it cools down to around 60°C. At this temperature, the bottle should feel very hot to the touch, but one can hold it for a while without feeling too uncomfortable. The agar should still be liquid.
While the mix is being stirred, do the following steps in that order, dispensing the reagents right above the surface (to avoid bubbles) with a sterile pipette:
Add Amount20 mL of phosphate buffer as prepared in https://www.protocols.io/view/preparation-of-0-5l-of-phosphate-buffer-ph-6-0-n2bvj8r7bgk5/v1. This should be added first to prevent any unnecessary precipitation of the next reagents. Wait for ~20 seconds after adding the buffer to give it time to mix well and stabilize the pH.
Add Amount0.8 mL of 1M magnesium sulfate (MgSO4) solution as prepared in https://www.protocols.io/view/preparation-of-1m-magnesium-sulfate-solution-mgso4-ca4rsgv6.

For this step only, you can put the pipette right below the surface of the agar, otherwise cholesterol tends to stick to the surface.
Add Amount0.8 mL of cholesterol (5mg/mL in ethanol, stored in freezer).
Add Amount0.8 mL of 1M calcium chloride (CaCl) solution as prepared in https://www.protocols.io/view/preparation-of-1m-calcium-chloride-solution-cacl2-b8parvie.
This step should make the medium a bit cloudier, but remain translucent.
Pour in petri dishes before it solidifies, using a pipette and trying to have the same volume in all dishes. We usually pour the plates on the bench, but to minimize the chance of contamination one can pour them in a microbiology hood.
We typically use 100x20mm (diameter x height) petri dishes, pouring 18 mL in each.

We store our NGM plates at room temperature for 3-4 days. We then flip them to avoid condensation in the lid, and store them at 4°C with a cover on each stack to limit evaporation.