Relevance: supporting · Type: background
Confidence95%
Plants can release volatile organic compounds to attract natural enemies of herbivores like caterpillars.
Adam Steinbrenner, biologist at the University of Washington
Relevance: primary · Type: quote
Confidence100%
"[One] thing we didn’t know is how the plant detects the caterpillar in the first place," says Adam Steinbrenner, a biologist at the University of Washington.
Relevance: primary · Type: event
Confidence95%
Adam Steinbrenner’s team identified a single immune receptor in common bean plants that orchestrates anti-caterpillar defense.
Relevance: supporting · Type: background
Confidence95%
When caterpillars feed on plants, they introduce saliva containing herbivore-associated molecular patterns (HAMPs) into damaged plant tissues.
Relevance: supporting · Type: background
Confidence95%
Inceptin is a HAMP peptide derived from ATP synthase in chloroplasts, and an 11-amino acid fragment of it is called In11.
Relevance: supporting · Type: background
Confidence90%
Caterpillar gut enzymes break down plant proteins, and In11 is regurgitated onto the leaf surface in extremely small concentrations.
Relevance: primary · Type: background
Confidence95%
Common bean plants have evolved a cell-surface receptor called the inceptin receptor that specifically detects In11.
Relevance: primary · Type: background
Confidence95%
Activation of the inceptin receptor by In11 triggers a signaling cascade that initiates immune responses in the plant.
Adam Steinbrenner, biologist at the University of Washington
Relevance: supporting · Type: quote
Confidence100%
"We were excited to do that, but we needed the perfect comparison plants—plants lacking the receptor versus ones that have the intact receptor," says Adam Steinbrenner.
Relevance: supporting · Type: background
Confidence95%
Common bean plants are difficult to genetically modify, so gene silencing techniques were not feasible for this study.
Adam Steinbrenner, biologist at the University of Washington
Relevance: supporting · Type: quote
Confidence100%
"We were sort of limited to bean because this receptor we were studying is only present in certain bean species," says Adam Steinbrenner.
Relevance: primary · Type: action
Confidence95%
Researchers used selective breeding instead of genetic modification to create bean plants with and without a functional inceptin receptor.
Relevance: primary · Type: event
Confidence95%
Researchers screened 89 Mesoamerican bean varieties for inability to produce ethylene when exposed to In11 and identified two insensitive varieties.
Relevance: supporting · Type: action
Confidence95%
The researchers selected a Honduran bean strain called W6 13807 for further study.
Relevance: primary · Type: background
Confidence95%
The W6 13807 bean strain has a naturally occurring 103-base-pair deletion in the gene encoding the inceptin receptor.
Relevance: primary · Type: background
Confidence95%
The 103-base-pair deletion results in a truncated, non-functional inceptin receptor protein.
Relevance: primary · Type: action
Confidence95%
Through genetic crosses and backcrosses, researchers created sibling bean plants nearly identical except for the presence or absence of the functional inceptin receptor.
Adam Steinbrenner, biologist at the University of Washington
Relevance: supporting · Type: quote
Confidence100%
"We were just being breeders and that took several years," says Adam Steinbrenner.
Relevance: primary · Type: event
Confidence95%
Caterpillars feeding on mutant bean plants with inactive inceptin receptors grew over 70 percent more over five days than those feeding on plants with functional receptors.
Relevance: primary · Type: event
Confidence95%
Plants with functional inceptin receptors up-regulated 527 genes in response to caterpillar feeding, including those involved in anti-herbivore defenses.
Relevance: supporting · Type: event
Confidence90%
Mutant plants unable to detect In11 responded as if they were mechanically wounded rather than being eaten by an insect.
Relevance: primary · Type: event
Confidence95%
Plants with functional inceptin receptors emit a specific blend of volatile organic compounds when detecting In11.
Relevance: primary · Type: background
Confidence90%
This volatile blend specifically signals to predatory wasps that a caterpillar is actively feeding on the plant.
Relevance: primary · Type: event
Confidence95%
Mutant plants lacking the functional inceptin receptor failed to emit the volatile blend when exposed to synthetic In11 or caterpillar oral secretions.
Relevance: primary · Type: event
Confidence95%
Researchers conducted field experiments in Oaxaca, Mexico, using pairs of sibling bean plants—one with and one without a functional inceptin receptor.
Relevance: primary · Type: action
Confidence95%
In the field, plants were treated with water, caterpillar oral secretions, or In11, and live sentinel caterpillars were attached to their leaves.
Relevance: primary · Type: event
Confidence95%
Predatory wasps in the field disproportionately targeted plants with functional inceptin receptors that had been treated with In11 or caterpillar oral secretions.
Relevance: primary · Type: event
Confidence95%
Plants unable to detect In11 were largely ignored by predatory wasps in the field.
Adam Steinbrenner, biologist at the University of Washington
Relevance: supporting · Type: quote
Confidence100%
"There are other papers that show if you knock out all immune signaling, the caterpillars grow twice as big—they get enormous," says Adam Steinbrenner.
Relevance: supporting · Type: background
Confidence85%
The inceptin receptor system likely piggybacks on the plant’s general wound response and may trigger damage-associated molecular patterns (DAMPs).
Relevance: supporting · Type: background
Confidence90%
The exact mechanism by which inceptin receptor activation leads to production of volatile organic compounds is not fully understood.
Relevance: supporting · Type: background
Confidence95%
The study used Spodoptera exigua (beet armyworm), a generalist herbivore that feeds on many plants and is susceptible to botanical defenses.
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