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A heterozygous moth genome provides insights into herbivory and detoxification

Authors :
Yunkai Zheng
Kai Cui
Bo Wang
Lu Peng
Xiaoli Ma
Yanchun You
Younan Zhang
Dong-Liang Zhan
Liying Yu
John W. Davey
Yong Liang
Min Hu
Xin Zhou
Xinhua Yang
Minsheng You
Liette Vasseur
Guang Yang
Miao Xie
Yuanyuan Liu
Weiyi He
Fushi Ke
Weiqi Tang
Xiaofeng Xia
Xiaojing Li
Ming-Shun Chen
Jing Wang
Zhangyan Wu
Chunhui Liu
Sandy M. Smith
Jianlin Bai
Jun Wang
Yulan Hu
Qing Zhou
Carl J. Douglas
Simon W. Baxter
Dandan Zheng
Huanming Yang
Yadan Luo
Ping Wang
Zhen Yue
Qilin Chen
Shiguo Huang
Junyi Wang
Lin Fang
Fengqin Song
Geoff M. Gurr
Changxin Lu
Caiyun Gou
Yaqiong Chen
Xiufeng Xu
Guoqing Li
Xianchun Li
Jingxiang Li
Source :
Nature genetics. 45(2)
Publication Year :
2012

Abstract

How an insect evolves to become a successful herbivore is of profound biological and practical importance. Herbivores are often adapted to feed on a specific group of evolutionarily and biochemically related host plants, but the genetic and molecular bases for adaptation to plant defense compounds remain poorly understood. We report the first whole-genome sequence of a basal lepidopteran species, Plutella xylostella, which contains 18,071 protein-coding and 1,412 unique genes with an expansion of gene families associated with perception and the detoxification of plant defense compounds. A recent expansion of retrotransposons near detoxification-related genes and a wider system used in the metabolism of plant defense compounds are shown to also be involved in the development of insecticide resistance. This work shows the genetic and molecular bases for the evolutionary success of this worldwide herbivore and offers wider insights into insect adaptation to plant feeding, as well as opening avenues for more sustainable pest management.

Details

ISSN :
15461718
Volume :
45
Issue :
2
Database :
OpenAIRE
Journal :
Nature genetics
Accession number :
edsair.doi.dedup.....d80fb744d609ee79160f70db4a667cfd