Insects (Jan 2023)

An <i>LW-Opsin</i> Mutation Changes the Gene Expression of the Phototransduction Pathway: A <i>Cryptochrome1</i> Mutation Enhances the Phototaxis of Male <i>Plutella xylostella</i> (Lepidoptera: Plutellidae)

  • Shao-Ping Chen,
  • Xiao-Lu Lin,
  • Rong-Zhou Qiu,
  • Mei-Xiang Chi,
  • Guang Yang

DOI
https://doi.org/10.3390/insects14010072
Journal volume & issue
Vol. 14, no. 1
p. 72

Abstract

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Plutella xylostella is a typical phototactic pest. LW-opsin contributes to the phototaxis of P. xylostella, but the expression changes of other genes in the phototransduction pathway caused by the mutation of LW-opsin remain unknown. In the study, the head transcriptomes of male G88 and LW-opsin mutants were compared. A GO-function annotation showed that DEGs mainly belonged to the categories of molecular functions, biological processes, and cell composition. Additionally, a KEGG-pathway analysis suggested that DEGs were significantly enriched in some classical pathways, such as the phototransduction-fly and vitamin digestion and absorption pathways. The mRNA expressions of genes in the phototransduction-fly pathway, such as Gq, ninaC, and rdgC were significantly up-regulated, and trp, trpl, inaD, cry1, ninaA and arr1 were significantly down-regulated. The expression trends of nine DEGs in the phototransduction pathway confirmed by a RT-qPCR were consistent with transcriptomic data. In addition, the influence of a cry1 mutation on the phototaxis of P. xylostella was examined, and the results showed that the male cry1 mutant exhibited higher phototactic rates to UV and blue lights than the male G88. Our results indicated that the LW-opsin mutation changed the expression of genes in the phototransduction pathway, and the mutation of cry1 enhanced the phototaxis of a P. xylostella male, providing a basis for further investigation on the phototransduction pathway in P. xylostella.

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