A - Papers appearing in refereed journals
Michereff, M., Grynberg, P. P., Togawa, R. C., Costa, M. M. C., Laumann, R. A., Zhou, J-J., Schimmelpfeng, P. H. C., Borges, M., Pickett, J. A., Birkett, M. A. and Blassioli-Moraes, C. 2021. Priming of indirect defence responses in maize is shown to be genotype-specific. Arthropod-Plant Interactions. 15, p. 313–328. https://doi.org/10.1007/s11829-021-09826-4
Authors | Michereff, M., Grynberg, P. P., Togawa, R. C., Costa, M. M. C., Laumann, R. A., Zhou, J-J., Schimmelpfeng, P. H. C., Borges, M., Pickett, J. A., Birkett, M. A. and Blassioli-Moraes, C. |
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Abstract | Priming is an induced defence mechanism in which plants that have been exposed to elicitors, such as herbivore-induced plant volatiles (HIPVs), go into an alert state with faster and stronger responses against a future biotic challenge. This study evaluated whether HIPVs emitted by maize genotypes after herbivory by fall armyworm (Spodoptera frugiperda) larvae could prime neighbouring maize plants for an enhanced indirect defence response, and if priming was consistent across different genotypes. Two genotypes were selected based on their differences in HIPV emission: Sintético Spodoptera (SS), a relatively high emitter of HIPVs, and L3, a relatively low emitter of HIPVs. SS plants that were previously exposed to SS HIPVs initiated earlier and enhanced volatile production upon larval challenge, compared to SS plants that were previously exposed to SS undamaged plant volatiles. In addition, SS plants exposed to SS HIPVs and then to larval challenge attracted an egg parasitoid, Telenomus remus, at an earlier stage than SS plants that were only subjected to larval challenge, indicating a priming effect. There was no evidence of a priming response by L3 plants that were previously exposed to L3 or SS HIPVs. When comparing the gene expression of HIPV-exposed and undamaged plant volatile (UDV)-exposed plants, jasmonate-induced protein GRMZM2G05154 and UDP-glucosyltransferase bx8 genes related to the biosynthesis of DIBOA-Glu were upregulated. These data indicate that priming by HIPVs enhances indirect defence in maize plants as reported by other studies, and provide new information showing that the priming effect can be genotype-specific. |
Keywords | Plant-plant communication ; Natural enemies; Plant defence; Plant genotypes; Spodoptera frugiperda; Volatile compounds |
Year of Publication | 2021 |
Journal | Arthropod-Plant Interactions |
Journal citation | 15, p. 313–328 |
Digital Object Identifier (DOI) | https://doi.org/10.1007/s11829-021-09826-4 |
Open access | Published as green open access |
Funder | Biotechnology and Biological Sciences Research Council |
Brazilian Corporation of Agricultural Research (EMBRAPA) | |
Funder project or code | BBSRC Strategic Programme in Smart Crop Protection |
14CONFAP: Brazil-UK Partnership on Delivering Pest Resilience in Brazilian Smallholder Maize Crops | |
Output status | Published |
Publication dates | |
Online | 13 Apr 2021 |
Publication process dates | |
Accepted | 26 Mar 2021 |
Publisher | Springer |
ISSN | 1872-8855 |
Permalink - https://repository.rothamsted.ac.uk/item/9844w/priming-of-indirect-defence-responses-in-maize-is-shown-to-be-genotype-specific
Publisher's version
Accepted author manuscript