Rapid green leaf volatile sensing allows intact plants to release induced volatiles earlier than wounded emitters
Cofer, T. M.; Hu, L. M.; Glauser, G.; Erb, M.
Show abstract
Organisms in the vicinity of attacked neighbors can respond to danger cues by activating their own defenses. However, the temporal dynamics of these interactions remain poorly resolved, despite their importance for the ensuing effects. Here, we investigated defense responses of maize plants that are exposed to induced volatiles from herbivory-induced neighbors in real time. These experiments revealed a surprising temporal paradox: Intact neighbors start emitting most induced volatiles 15-80 min earlier than the attacked plants themselves. This earlier responsiveness was not associated with earlier induction of defense hormones, volatile biosynthesis genes or within-leaf volatile accumulation. Instead, receiver plants kept their stomata open, while attacked sender plants rapidly closed them to combat water loss. Using different volatile deficient mutants, we demonstrate that the rapid responses in receivers are triggered by green leaf volatiles, which are released from the wound sites of sender plants within minutes independently of stomatal aperture. Thus, non-attacked neighbors can act as "unhindered observers" that activate some defenses more quickly than attacked organisms themselves, as they do not have to deal with wound trauma. The resulting plant volatile concatenation patterns expand our understanding of volatile signaling and have the potential to shape population-level multitrophic interactions.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- The genetic architecture of an allosteric hormone receptor 94%
- Temporal control of inhibition via muscarinic acetylcholine receptor signaling generates ON and OFF selectivity in a simple visual circuit 94%
- Dissociation of fear initiation and maintenance by breathing-driven prefrontal oscillations 94%
Similar papers in this journal
- Dynamical structure of cortical taste responses revealed by precisely-timed optogenetic perturbation 93%
- Herbivorous insects independently evolved salivary effectors to regulate plant immunity by destabilizing the malectin-LRR RLP NtRLP4 93%
- The STROBE: a system for closed-looped optogenetic control of freely feeding flies 93%
Similar papers in this journal
- Plant and prokaryotic TIR domains generate distinct cyclic ADPR NADase products 93%
- Hibiscus bullseyes reveal mechanisms controlling petal pattern proportions that influence plant-pollinator interactions 93%
- NtLLG4-mediated unconventional polar exocytosis of NtPPME1 coordinates cell wall rigidity and membrane dynamics to control pollen tube integrity 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.