Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata

Lemon seedlings inoculated with Alternaria alternata develop a hypersensitive response (HR) that includes the induction of Phenylalanine ammonia-lyase (PAL, E. C. 4.3.1.5) and the synthesis of scoparone. The signal transduction pathway involved in the development of this response is unknown. We used several inhibitors of the Phosphoinositide (PI) animal system to study a possible role of Inositol-1,4,5-triphosphate (IP3 ) in the transduction of the fungal conidia signal in Citrus limon. The HR was only partially inhibited by EGTA, suggesting that not only external but internal calcium as well are necessary for a complete development of the HR. In this plant system, Alternaria alternata induced an early accumulation of the second messenger IP3. When lemon seedlings were watered long term with LiCl, an inhibitor of the phosphoinositide cycle, the IP3 production was reduced, and the LiCl-watered plants could neither induce PAL nor synthesize scoparone in response to fungal conidia. Furthermore, neomycin, a Phospholipase C (PLC, E. C. 3.1.4.3) inhibitor, also inhibited PAL induction and scoparone synthesis in response to A. alternata. These results suggest that IP3 could be involved in the signal transduction pathway for the development of the HR of Citrus limon against A. alternata

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Main Authors: ORTEGA,XIMENA, PÉREZ,LUZ M.
Format: Digital revista
Language:English
Published: Sociedad de Biología de Chile 2001
Online Access:http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602001000100014
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spelling oai:scielo:S0716-976020010001000142001-09-27Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternataORTEGA,XIMENAPÉREZ,LUZ M. Citrus limon IP3 phosphoinositides Rutaceae signal transduction Lemon seedlings inoculated with Alternaria alternata develop a hypersensitive response (HR) that includes the induction of Phenylalanine ammonia-lyase (PAL, E. C. 4.3.1.5) and the synthesis of scoparone. The signal transduction pathway involved in the development of this response is unknown. We used several inhibitors of the Phosphoinositide (PI) animal system to study a possible role of Inositol-1,4,5-triphosphate (IP3 ) in the transduction of the fungal conidia signal in Citrus limon. The HR was only partially inhibited by EGTA, suggesting that not only external but internal calcium as well are necessary for a complete development of the HR. In this plant system, Alternaria alternata induced an early accumulation of the second messenger IP3. When lemon seedlings were watered long term with LiCl, an inhibitor of the phosphoinositide cycle, the IP3 production was reduced, and the LiCl-watered plants could neither induce PAL nor synthesize scoparone in response to fungal conidia. Furthermore, neomycin, a Phospholipase C (PLC, E. C. 3.1.4.3) inhibitor, also inhibited PAL induction and scoparone synthesis in response to A. alternata. These results suggest that IP3 could be involved in the signal transduction pathway for the development of the HR of Citrus limon against A. alternatainfo:eu-repo/semantics/openAccessSociedad de Biología de ChileBiological Research v.34 n.1 20012001-01-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602001000100014en10.4067/S0716-97602001000100014
institution SCIELO
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country Chile
countrycode CL
component Revista
access En linea
databasecode rev-scielo-cl
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libraryname SciELO
language English
format Digital
author ORTEGA,XIMENA
PÉREZ,LUZ M.
spellingShingle ORTEGA,XIMENA
PÉREZ,LUZ M.
Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
author_facet ORTEGA,XIMENA
PÉREZ,LUZ M.
author_sort ORTEGA,XIMENA
title Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
title_short Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
title_full Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
title_fullStr Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
title_full_unstemmed Participation of the phosphoinositide metabolism in the hypersensitive response of Citrus limon against Alternaria alternata
title_sort participation of the phosphoinositide metabolism in the hypersensitive response of citrus limon against alternaria alternata
description Lemon seedlings inoculated with Alternaria alternata develop a hypersensitive response (HR) that includes the induction of Phenylalanine ammonia-lyase (PAL, E. C. 4.3.1.5) and the synthesis of scoparone. The signal transduction pathway involved in the development of this response is unknown. We used several inhibitors of the Phosphoinositide (PI) animal system to study a possible role of Inositol-1,4,5-triphosphate (IP3 ) in the transduction of the fungal conidia signal in Citrus limon. The HR was only partially inhibited by EGTA, suggesting that not only external but internal calcium as well are necessary for a complete development of the HR. In this plant system, Alternaria alternata induced an early accumulation of the second messenger IP3. When lemon seedlings were watered long term with LiCl, an inhibitor of the phosphoinositide cycle, the IP3 production was reduced, and the LiCl-watered plants could neither induce PAL nor synthesize scoparone in response to fungal conidia. Furthermore, neomycin, a Phospholipase C (PLC, E. C. 3.1.4.3) inhibitor, also inhibited PAL induction and scoparone synthesis in response to A. alternata. These results suggest that IP3 could be involved in the signal transduction pathway for the development of the HR of Citrus limon against A. alternata
publisher Sociedad de Biología de Chile
publishDate 2001
url http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0716-97602001000100014
work_keys_str_mv AT ortegaximena participationofthephosphoinositidemetabolisminthehypersensitiveresponseofcitruslimonagainstalternariaalternata
AT perezluzm participationofthephosphoinositidemetabolisminthehypersensitiveresponseofcitruslimonagainstalternariaalternata
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