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PME-mediated pectin modifications promote haustoria initiation and xylem bridge development in the parasitic plant Phtheirospermum japonicum

Leso, M.; Feng, M.; Kokla, A.; Melnyk, C. W.

2023-02-01 plant biology
10.1101/2023.01.30.526340 bioRxiv
Show abstract

O_LIParasitic plants produce cell wall modifying enzymes that are thought to be important for efficient host infection. Here, we investigated the role of pectin methylesterases (PMEs) and their inhibitors (PMEIs) during haustorium development in the facultative parasitic plant Phtheirospermum japonicum infecting Arabidopsis thaliana. C_LIO_LIWe employed immunohistochemistry to characterise tissue-specific changes in pectin methylesterification during haustorium development. We found putative PME and PMEI genes in P. japonicum and used genetic and transcriptomic approaches to identify those involved in haustorium development. C_LIO_LIOur results show tissue-specific changes in pectin methylesterification during haustorium development. De-methylesterified pectin correlated with haustorial intrusive cells whereas highly methylated pectin correlated with vascular tissues. We also found that inhibition of PME activity delayed haustoria development and xylem connectivity. Several PjPME and PjPMEI genes increased expression specifically during haustorium development but such increases did not occur when haustorium initiation or xylem connections were blocked by chemical treatment. C_LIO_LIThis study describes the importance of pectin modifications in parasitic plants during host infection. Our results suggest a dynamic regulation of PMEs and PMEIs contributes to haustoria initiation and to the establishment of xylem connections between parasite and host. C_LI

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