Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella
Abstract Background Eye pigmentation genes have been utilized as visible markers for constructing genetic control prototypes in several insect vectors of human disease. Here, orthologs of two ommochrome pathway genes, kynurenine 3-hydroxylase (kmo) and cardinal, were investigated in Plutella xyloste...
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doaj-7be48ae2b17e43b282d6c5f68dd323a22020-11-25T03:33:32ZengBMCBMC Molecular and Cell Biology2661-88502020-09-0121111110.1186/s12860-020-00308-8Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostellaXuejiao Xu0Tim Harvey-Samuel1Jie Yang2Luke Alphey3Minsheng You4State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Institute of Applied Ecology, Fujian Agriculture and Forestry UniversityArthropod Genetics Group, The Pirbright Institute, WokingState Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Institute of Applied Ecology, Fujian Agriculture and Forestry UniversityArthropod Genetics Group, The Pirbright Institute, WokingState Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Institute of Applied Ecology, Fujian Agriculture and Forestry UniversityAbstract Background Eye pigmentation genes have been utilized as visible markers for constructing genetic control prototypes in several insect vectors of human disease. Here, orthologs of two ommochrome pathway genes, kynurenine 3-hydroxylase (kmo) and cardinal, were investigated in Plutella xylostella, a globally distributed, economically important pest of Brassica crops. Results Both somatic mosaic and germline mutations were efficiently created using the CRISPR/Cas9 system, and null mutant strains of Pxkmo and Pxcardinal were obtained. A frame-shift mutation in Pxkmo caused yellow compound eyes at adult stage while an in-frame mutation lacking two amino acids resulted in a hypomorphic red eye phenotypes. In contrast, Pxcardinal-deficient moths with a frame-shift mutation exhibited yellow eye pigmentation in newly emerged adults which turned to red as the adults aged. Additionally, differences were observed in the coloration of larval ocelli, brains and testes in Pxkmo and Pxcardinal yellow-eye mutant lines. Conclusions Our work identifies the important roles of Pxkmo and Pxcardinal in P. xylostella eye pigmentation and provides tools for future genetic manipulation of this important crop pest.http://link.springer.com/article/10.1186/s12860-020-00308-8CRISPR/Cas9Kynurenine 3-hydroxylaseCardinalPlutella xylostellaEye pigmentationGene drive |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xuejiao Xu Tim Harvey-Samuel Jie Yang Luke Alphey Minsheng You |
spellingShingle |
Xuejiao Xu Tim Harvey-Samuel Jie Yang Luke Alphey Minsheng You Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella BMC Molecular and Cell Biology CRISPR/Cas9 Kynurenine 3-hydroxylase Cardinal Plutella xylostella Eye pigmentation Gene drive |
author_facet |
Xuejiao Xu Tim Harvey-Samuel Jie Yang Luke Alphey Minsheng You |
author_sort |
Xuejiao Xu |
title |
Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella |
title_short |
Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella |
title_full |
Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella |
title_fullStr |
Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella |
title_full_unstemmed |
Ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in Plutella xylostella |
title_sort |
ommochrome pathway genes kynurenine 3-hydroxylase and cardinal participate in eye pigmentation in plutella xylostella |
publisher |
BMC |
series |
BMC Molecular and Cell Biology |
issn |
2661-8850 |
publishDate |
2020-09-01 |
description |
Abstract Background Eye pigmentation genes have been utilized as visible markers for constructing genetic control prototypes in several insect vectors of human disease. Here, orthologs of two ommochrome pathway genes, kynurenine 3-hydroxylase (kmo) and cardinal, were investigated in Plutella xylostella, a globally distributed, economically important pest of Brassica crops. Results Both somatic mosaic and germline mutations were efficiently created using the CRISPR/Cas9 system, and null mutant strains of Pxkmo and Pxcardinal were obtained. A frame-shift mutation in Pxkmo caused yellow compound eyes at adult stage while an in-frame mutation lacking two amino acids resulted in a hypomorphic red eye phenotypes. In contrast, Pxcardinal-deficient moths with a frame-shift mutation exhibited yellow eye pigmentation in newly emerged adults which turned to red as the adults aged. Additionally, differences were observed in the coloration of larval ocelli, brains and testes in Pxkmo and Pxcardinal yellow-eye mutant lines. Conclusions Our work identifies the important roles of Pxkmo and Pxcardinal in P. xylostella eye pigmentation and provides tools for future genetic manipulation of this important crop pest. |
topic |
CRISPR/Cas9 Kynurenine 3-hydroxylase Cardinal Plutella xylostella Eye pigmentation Gene drive |
url |
http://link.springer.com/article/10.1186/s12860-020-00308-8 |
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