An effector from cotton bollworm oral secretion impairs host plant defense signaling.
basic_science · Level V
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- Record sourced from PubMed, PMID 31221756.
- Also identified by DOI 10.1073/pnas.1905471116 and PMC identifier 6628814.
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Abstract
Insects have evolved effectors to conquer plant defense. Most known insect effectors are isolated from sucking insects, and examples from chewing insects are limited. Moreover, the targets of insect effectors in host plants remain unknown. Here, we address a chewing insect effector and its working mechanism. Cotton bollworm (<i>Helicoverpa armigera</i>) is a lepidopteran insect widely existing in nature and severely affecting crop productivity. We isolated an effector named HARP1 from <i>H. armigera</i> oral secretion (OS). HARP1 was released from larvae to plant leaves during feeding and entered into the plant cells through wounding sites. Expression of HARP1 in <i>Arabidopsis</i> mitigated the global expression of wounding and jasmonate (JA) responsive genes and rendered the plants more susceptible to insect feeding. HARP1 directly interacted with JASMONATE-ZIM-domain (JAZ) repressors to prevent the COI1-mediated JAZ degradation, thus blocking JA signaling transduction. HARP1-like proteins have conserved function as effectors in noctuidae, and these types of effectors might contribute to insect adaptation to host plants during coevolution.
Medical subject headings
- Gossypium
- Host-Parasite Interactions
- Moths
- Plant Diseases