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Phloem Metabolites of Prunus Sp. Rather than Infection with Candidatus Phytoplasma Prunorum Influence Feeding Behavior of Cacopsylla pruni Nymphs

Gallinger, Jannicke ; Gross, Jürgen (2024)
Phloem Metabolites of Prunus Sp. Rather than Infection with Candidatus Phytoplasma Prunorum Influence Feeding Behavior of Cacopsylla pruni Nymphs.
In: Journal of Chemical Ecology, 2020, 46 (8)
doi: 10.26083/tuprints-00023929
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Phloem Metabolites of Prunus Sp. Rather than Infection with Candidatus Phytoplasma Prunorum Influence Feeding Behavior of Cacopsylla pruni Nymphs
Language: English
Date: 17 December 2024
Place of Publication: Darmstadt
Year of primary publication: August 2020
Place of primary publication: New York
Publisher: Springer Science
Journal or Publication Title: Journal of Chemical Ecology
Volume of the journal: 46
Issue Number: 8
DOI: 10.26083/tuprints-00023929
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Phytoplasmas are specialized small bacteria restricted to the phloem tissue and spread by hemipterans feeding on plant sieve tube elements. As for many other plant pathogens, it is known that phytoplasmas alter the chemistry of their hosts. Most research on phytoplasma-plant interactions focused on the induction of plant volatiles and phytohormones. Little is known about the influence of phytoplasma infections on the nutritional composition of phloem and consequences on vector behavior and development. The plum psyllid Cacopsylla pruni transmits ‘Candidatus Phytoplasma prunorum’, the causing agent of European Stone Fruit Yellows (ESFY). While several Prunus species are susceptible for psyllid feeding, they show different responses to the pathogen. We studied the possible modulation of plant-insect interactions by bacteria-induced changes in phloem sap chemistry. Therefore, we sampled phloem sap from phytoplasma-infected and non-infected Prunus persica and Prunus insititia plants, which differ in their susceptibility to ESFY and psyllid feeding. Furthermore, the feeding behavior and development of C. pruni nymphs was compared on infected and non-infected P. persica and P. insititia plants. Phytoplasma infection did not affect phloem consumption by C. pruni nymphs nor their development time. In contrast, the study revealed significant differences between P. insititia and P. persica in terms of both phloem chemistry and feeding behavior of C. pruni nymphs. Phloem feeding phases were four times longer on P. insititia than on P. persica, resulting in a decreased development time and higher mortality of vector insects on P. persica plants. These findings explain the low infestation rates of peach cultivars with plum psyllids commonly found in field surveys.

Uncontrolled Keywords: Plant-insect interaction, European stone fruit yellows, Vector development, Phytobiome, Phloem composition, Electropenetrography, Phytoplasma
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-239292
Additional Information:

Special Issue on: Effect of Microbes on Insect-Plant Interactions

Classification DDC: 500 Science and mathematics > 570 Life sciences, biology
500 Science and mathematics > 580 Plants (botany)
500 Science and mathematics > 590 Animals (zoology)
Divisions: 10 Department of Biology > Chemical Plant Ecology
Date Deposited: 17 Dec 2024 12:52
Last Modified: 17 Dec 2024 12:53
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/23929
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