Beitrag

ilvE as a potential RNAi target to inhibit amino acid synthesis to control the wheat aphid Sitobion miscanthi

Li, Qian; Fan, Jia; Chen, Yu; Hou, Maolin; Chen, Julian

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Entomologia Generalis Volume 43 Number 1 (2023), p. 177 - 185

veröffentlicht: Mar 22, 2023
Online veröffentlicht: Aug 29, 2022
Manuskript akzeptiert: Jun 15, 2022
Manuskript-Revision erhalten: Mar 30, 2022
Manuskript-Revision angefordert: Feb 9, 2022
Manuskript erhalten: Jan 2, 2022

DOI: 10.1127/entomologia/2022/1528

BibTeX Datei

ArtNo. ESP146004301016, Preis: 29.00 €

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Abstract

Aphids form a tight and mutually beneficial symbiosis with their primary symbiont Buchnera aphidicola, which plays a prominent role in aphid nutrition metabolism. Here, we sequenced the genome of B. aphidicola from the wheat aphid Sitobion miscanthi and performed KEGG analysis of amino acid synthesis pathways based on our previously published S. miscanthi genome. The genome of B. aphidicola from S. miscanthi contained almost all genes of the valine (Val), leucine (Leu) and isoleucine (Ile) synthesis pathways; however, it lacked a branched-chain amino acid aminotransferase (ilvE) required in the pathways, but this gene was present in the S. miscanthi genome. Sequence analysis showed that the ilvE gene was highly conserved in aphids. ilvE was highly expressed in the 3rd and 4th instars of S. miscanthi and showed higher expression in the bacteriocyte than in other parts. After RNAi-mediated ilvE knockdown, the result showed a significant mortality and body weight losses. Meanwhile, the B. aphidicola relative abundance and the Val, Leu and Ile production decreased significantly after ilvE gene interference. These results indicate that ilvE is a “bridge” gene in the aphid genome, linking the metabolic relay between aphids and B. aphidicola and significantly affecting the vital life parameters of aphids, potentially by affecting Val, Ile and Leu production. Our study may provide a future direction for using key junctions of the metabolic relay between insects and endosymbionts as RNAi target loci to develop new strategies for agricultural pest control.

Schlagworte


Sitobion miscanthi

Buchnera aphidicola

ilvE
metabolism relay • RNAi • pest control