4.4 Article

Detoxification gene families in Phylloxera: Endogenous functions and roles in response to the environment

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbd.2021.100867

关键词

Adaptation; Detoxification; Daktulosphaira vitifoliae; Insect hormones; Omics

资金

  1. Inra (AIP Bioressources)
  2. BGI Biotech

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This study manually annotated 198 detoxification genes potentially involved in plant host manipulation by Phylloxera. The findings highlight the roles of the phylloxera detoxification gene repertoire in insect physiology and adaptation to plant secondary metabolites.
Phylloxera, Daktulosphaira vitifoliae, is an agronomic pest that feeds monophagously on grapevine, Vitis spp. host plants. Phylloxera manipulates primary and secondary plant metabolism to establish either leaf or root galls. We manually annotated 198 detoxification genes potentially involved in plant host manipulation, including cytochrome P450 (66 CYPs), carboxylesterase (20 CCEs), glutathione-S-transferase (10 GSTs), uridine diphosphateglycosyltransferase (35 UGTs) and ABC transporter (67 ABCs) families. Transcriptomic expression patterns of these detoxification genes were analyzed for root and leaf galls. In addition to these transcriptomic analyses, we reanalyzed recent data from L1 and L2-3 stages feeding on tolerant and resistant rootstock. Data from two agricultural pest aphids, the generalist Myzus persicae and the Fabaceae specialist Acyrthosiphon pisum, and from the true bug vector of Chagas disease, Rhodnius prolixus, were used to perform phylogenetic analyses for each detoxification gene family. We found expansions of several gene sub-families in the genome of D. vitifoliae. Phylogenetically close genes were found to be organized in clusters in the same genomic position and orientation suggesting recent successive duplications. These results highlight the roles of the phylloxera detoxification gene repertoire in insect physiology and in adaptation to plant secondary metabolites, and provide gene candidates for further functional analyses.

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