Plate agrobacteria (A. tumefaciens C58C1) containing the subtilase (SBT3.8) expression construct in pART27 or the P19 silencing suppressor on LB plates with appropriate antibiotics (rifampicin, tetracyclin and spectinomycin for C58C1/pART27; kanamycin instead of spectinomycin for C58C1/p19).
Grow for 2 days at 28 °C.
Add 10 ml infiltration buffer to resuspend the colonies and wash them off the plates.
Mix the bacterial suspensions at an OD600 ratio of 0.7:0.1 for C58C1/pART27:C58C1/p19.
Add acetosyringone to a final concentration of 150 µM and incubate at room temperature for 3 to 4 hrs.
Use a 1 ml plastic syringe without needle to gently infiltrate the bacterial suspension into the abaxial side of N. benthamiana leaves. Use six-week-old plants grown at 25 °C with 12 hrs photoperiod for agro-infiltration.
Harvest infiltrated leaves and cut into pieces of 3-5 cm2.
Wash three times in ice cold ddH2O.
Transfer plant material into 200 ml ice cold extraction buffer and infiltrate twice for 1 min at 70 mbar in a desiccator.
Carefully blot the leaf pieces dry, be careful not to damage them. Place the leaf pieces into a syringe barrel plugged with glass wool.
Place the syringe barrel into a 50 ml Falcon tube.
Centrifuge for 7 min at 1.500 g and 4 °C.
Collect the wash fluid and spin for 10 min at 15.000 g and 4 °C to remove leaf debris.
Collect the supernatant containing the apoplastic proteins and store at -20 °C.
Solutions:
150 mM acetosyringone in DMSO
infiltration buffer: 10 mM MES pH 5.6, 10 mM MgCl2
extraction buffer: 50 mM NaH2PO4/Na2HPO4 pH 7.0, 300 mM NaCl
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How to cite:
Readers should cite both the Bio-protocol preprint and the original research article where this protocol was used:
Stührwohldt, N and Schaller, A(2021). Transient expression in N. benthamiana and extraction of SBT3.8. Bio-protocol Preprint. bio-protocol.org/prep1164.
Stührwohldt, N., Scholl, S., Lang, L., Katzenberger, J., Schumacher, K. and Schaller, A.(2020). The biogenesis of CLEL peptides involves several processing events in consecutive compartments of the secretory pathway. eLife. DOI: 10.7554/eLife.55580
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