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Plant Physiol, January 2003, Vol. 131, pp. 93-101
Elicitor Activity of a Fungal Endopolygalacturonase in Tobacco
Requires a Functional Catalytic Site and Cell Wall Localization
Georges
Boudart,*
Myriam
Charpentier,
Claude
Lafitte,
Yves
Martinez,
Alain
Jauneau,
Elodie
Gaulin,
Marie-Thérèse
Esquerré-Tugayé, and
Bernard
Dumas
Unité Mixte de Recherche Centre National de la
Recherche Scientifique/Université Paul Sabatier 5546, Signaux et
Messages Cellulaires chez les Végétaux (G.B., M.C., C.L.,
E.G., M.-T.E.-T., B.D.) and Institut Fédératif de Recherche
40 Signalisation Cellulaire et Biotechnologie
Végétale (Y.M., A.J.), Pôle de Biotechnologie
Végétale, 24 Chemin de Borde Rouge, Boite Postale 17, Auzeville-31326 Castanet Tolosan, France
CLPG1, an endopolygalacturonase
(endoPG) gene of Colletotrichum lindemuthianum, was
transferred to tobacco (Nicotiana tabacum) leaves by
using the Agrobacterium tumefaciens transient delivery system. The following four constructs were prepared:
CLPG1, with or without its signal peptide (SP; PG1,
PG1 SP); CLPG1 with the tobacco
expansin1 SP instead of its own SP
(Exp::PG1 SP); and a mutated version of the latter on two
amino acids potentially involved in the catalytic site of CLPG1
(D202N/D203N). Chlorotic and necrotic lesions appeared 5 to 7 d
postinfiltration, exclusively in response to CLPG1 fused to the
expansin SP. The lesions were correlated to the production of an active
enzyme. Necrosis-inducing activity, as well as endoPG activity, were
completely abolished by site-directed mutagenesis. Ultrastructural
immunocytolocalization experiments indicated that the expansin SP
addressed CLPG1 to the cell wall. Staining of parenchyma cells revealed
the progressive degradation of pectic material in junction zones and
middle lamella as a function of time after infiltration, ultimately
leading to cell separation. A 30% decrease in the GalUA content of the
cell walls was simultaneously recorded, thereby confirming the
hydrolytic effect of CLPG1 on pectic polysaccharides, in planta. The
elicitor activity of CLPG1 was further illustrated by the induction of defense responses comprising active oxygen species and
-1,3-glucanase activity, before leaf necrosis. Altogether, the data
demonstrate that an appropriate SP and a functional catalytic site are
required for the proper expression and elicitor activity of the fungal endoPG CLPG1 in tobacco.
*
Corresponding author; e-mail
boudart{at}smcv.ups-tlse.fr; fax 33-05-62-19-35-25.
© 2003 American Society of Plant Biologists
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