Phosphatidic acid synthesis, octadecanoic pathway and fatty acids content as lipid markers of exogeneous salicylic acid-induced elicitation in wheat

2016 ◽  
Vol 43 (6) ◽  
pp. 512
Author(s):  
Christine Tayeh ◽  
Béatrice Randoux ◽  
Frédéric Laruelle ◽  
Natacha Bourdon ◽  
Philippe Reignault

Activators of plant defence responses against pathogens are a potential alternative to fungicides, and the well-known resistance inducer salicylic acid (SA) protects wheat (Triticum aestivum L.) against powdery mildew. The aim of our work was to investigate through biochemical and molecular approaches whether lipid metabolism alteration could be considered as a characteristic feature of induced resistance in wheat upon SA infiltration. Expression levels of lox, PI-PLC2 and ltp genes encoding for a lipoxygenase (LOX), a phospholipase C2 and a lipid-transfer protein, respectively, were investigated. Increase of phosphatidic acid (PA) content 48 h after SA infiltration in wheat leaves, upregulation of PI-PLC2 gene expression and increased diacylglycerol content were recorded, indicating the involvement of the PLC pathway in the PA synthesis. The wheat octadecanoid pathway was shown to be highly responsive to SA infiltration through simultaneous increases in lox gene expression and LOX activity, as well as a reduction in the content of linolenic acid. Changes in several FA contents and increases of the ltp gene expression were also recorded during the latest hours after SA infiltration. The status of lipid metabolism, as well as the connections between its components as markers of SA-induced resistance in wheat, are discussed.


1996 ◽  
Vol 8 (5) ◽  
pp. 783 ◽  
Author(s):  
Casper W. Vroemen ◽  
Sandra Langeveld ◽  
Ulrike Mayer ◽  
Gabriela Ripper ◽  
Gerd Jurgens ◽  
...  


Science ◽  
2012 ◽  
Vol 338 (6108) ◽  
pp. 815-818 ◽  
Author(s):  
M. Connerth ◽  
T. Tatsuta ◽  
M. Haag ◽  
T. Klecker ◽  
B. Westermann ◽  
...  


1996 ◽  
pp. 783-791 ◽  
Author(s):  
C. W. Vroemen ◽  
S. Langeveld ◽  
U. Mayer ◽  
G. Ripper ◽  
G. Jurgens ◽  
...  


2014 ◽  
Vol 104 (3) ◽  
pp. 293-305 ◽  
Author(s):  
Christine Tayeh ◽  
Béatrice Randoux ◽  
Dorothée Vincent ◽  
Natacha Bourdon ◽  
Philippe Reignault

Powdery mildew would be one of the most damaging wheat diseases without the extensive use of conventional fungicides. Some of the alternative control strategies currently emerging are based on the use of resistance inducers. The disacharride trehalose (TR) is classically described as an inducer of defenses in plants to abiotic stress. In this work, the elicitor or priming effect of TR was investigated in wheat both before and during a compatible wheat–powdery mildew interaction through molecular, biochemical, and cytological approaches. In noninoculated conditions, TR elicited the expression of genes encoding chitinase (chi, chi1, and chi4 precursor), pathogenesis-related protein 1, as well as oxalate oxidase (oxo). Moreover, lipid metabolism was shown to be altered by TR spraying via the upregulation of lipoxygenase (lox) and lipid-transfer protein (ltp)-encoding gene expression. On the other hand, the protection conferred by TR to wheat against powdery mildew is associated with the induction of two specific defense markers. Indeed, in infectious conditions following TR spraying, upregulations of chi4 precursor and lox gene expression as well as an induction of the LOX activity were observed. These results are also discussed with regard to the impact of TR on the fungal infectious process, which was shown to be stopped at the appressorial germ tube stage. Our findings strongly suggest that TR is a true inducer of wheat defense and resistance, at least toward powdery mildew.



2002 ◽  
pp. 237-243 ◽  
Author(s):  
A. Botton ◽  
M. Begheldo ◽  
A. Rasori ◽  
C. Bonghi ◽  
P. Tonutti


2008 ◽  
Vol 17 (9) ◽  
pp. 1522-1530 ◽  
Author(s):  
Marie-Bernard Lascombe ◽  
Bénédicte Bakan ◽  
Nathalie Buhot ◽  
Didier Marion ◽  
Jean-Pierre Blein ◽  
...  


FEBS Letters ◽  
2001 ◽  
Vol 509 (1) ◽  
pp. 27-30 ◽  
Author(s):  
N. Buhot ◽  
J.-P. Douliez ◽  
A. Jacquemard ◽  
D. Marion ◽  
V. Tran ◽  
...  


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