Oxylipins Other Than Jasmonic Acid Are Xylem-Resident Signals Regulating Systemic Resistance Induced by Trichoderma virens in Maize
Multiple long-distance signals have been identified for pathogen-induced systemic acquired resistance, but mobile signals for symbiont-induced systemic resistance (ISR) are less well understood. We used ISR-positive and -negative mutants of maize ( ) and the beneficial fungus and identified 12-oxo-p...
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Veröffentlicht in: | The Plant cell 2020-01, Vol.32 (1), p.166-185 |
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Sprache: | eng |
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Zusammenfassung: | Multiple long-distance signals have been identified for pathogen-induced systemic acquired resistance, but mobile signals for symbiont-induced systemic resistance (ISR) are less well understood. We used ISR-positive and -negative mutants of maize (
) and the beneficial fungus
and identified 12-oxo-phytodienoic acid (12-OPDA) and α-ketol of octadecadienoic acid (KODA) as important ISR signals. We show that a maize 13-lipoxygenase mutant,
, colonized by the wild-type
(TvWT) lacked ISR response against
but instead displayed induced systemic susceptibility. Oxylipin profiling of xylem sap from
-treated plants revealed that 12-OPDA and KODA levels correlated with ISR. Transfusing sap supplemented with 12-OPDA or KODA increased receiver plant resistance in a dose-dependent manner, with 12-OPDA restoring ISR of
plants treated with TvWT or
, a mutant unable to induce ISR. Unexpectedly, jasmonic acid (JA) was not involved, as the JA-deficient
mutant plants retained the capacity for
-induced ISR. Transcriptome analysis of TvWT-treated maize B73 revealed upregulation of 12-OPDA biosynthesis and OPDA-responsive genes but downregulation of JA biosynthesis and JA response genes. We propose a model that differential regulation of 12-OPDA and JA in response to
colonization results in ISR induction. |
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ISSN: | 1040-4651 1532-298X |
DOI: | 10.1105/tpc.19.00487 |