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通过从头组装对(鞘翅目:叶甲科)幼虫转录组进行分子特征分析,以发现与水下环境适应性相关的基因。

Molecular Characterization of (Coleoptera: Chrysomelidae) Larval Transcriptome by De Novo Assembly to Discover Genes Associated with Underwater Environmental Adaptations.

作者信息

Zhan Haixia, Dewer Youssef, Qu Cheng, Yang Shiyong, Luo Chen, Li Liangjun, Li Fengqi

机构信息

Beijing Key Laboratory of Environment Friendly Management on Fruit Diseases and Pests in North China, Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences, Beijing 100097, China.

Bioassay Research Department, Central Agricultural Pesticide Laboratory, Agricultural Research Center, Dokki, Giza 12618, Egypt.

出版信息

Insects. 2021 Mar 25;12(4):281. doi: 10.3390/insects12040281.

Abstract

(Fairmaire, 1885) is a major pest of aquatic crops. It has been widely distributed in the world causing extensive damage to lotus and rice plants. Changes in gene regulation may play an important role in adaptive evolution, particularly during adaptation to feeding and living habits. However, little is known about the evolution and molecular mechanisms underlying the adaptation of to its lifestyle and living habits. To address this question, we generated the first larval transcriptome of . A total of 20,692 unigenes were annotated from the seven public databases and around 18,536 protein-coding genes have been predicted from the analysis of transcriptome. About 5036 orthologous cutlers were identified among four species and 494 unique clusters were identified from larvae including the visual perception. Furthermore, to reveal the molecular difference between and the Colorado potato beetle , a comparison between CDS of the two beetles was conducted and 6627 orthologous gene pairs were identified. Based on the ratio of nonsynonymous and synonymous substitutions, 93 orthologous gene pairs were found evolving under positive selection. Interestingly, our results also show that there are 4 orthologous gene pairs of the 93 gene pairs were associated with the "mTOR signaling pathway", which are predicted to be involved in the molecular mechanism of adaptation to the underwater environment. This study will provide us with an important scientific basis for building effective prevention and control system of the aquatic leaf beetle

摘要

(费尔迈尔,1885年)是水生作物的主要害虫。它已在世界范围内广泛分布,对莲藕和水稻作物造成了广泛损害。基因调控的变化可能在适应性进化中起重要作用,特别是在适应取食和生活习性的过程中。然而,关于其适应生活方式和生活习性的进化及分子机制知之甚少。为解决这个问题,我们生成了首个该物种幼虫转录组。从七个公共数据库中注释了总共20,692个单基因,通过对该物种转录组的分析预测了约18,536个蛋白质编码基因。在四个物种中鉴定出约5036个直系同源基因,从该物种幼虫中鉴定出494个独特的基因簇,包括视觉感知相关基因簇。此外,为揭示该物种与科罗拉多马铃薯甲虫之间的分子差异,对两种甲虫的编码序列进行了比较,鉴定出6627对直系同源基因对。基于非同义替换与同义替换的比率,发现93对直系同源基因对在正选择下进化。有趣的是,我们的结果还表明,这93对基因对中有4对与“mTOR信号通路”相关,预计它们参与了该物种适应水下环境的分子机制。本研究将为建立有效的水生叶甲防控体系提供重要的科学依据 。

需注意,原文中“ of ”表述不完整,推测这里应该是指某个物种,但不太明确具体所指,翻译时保留了这种不完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/554f/8064349/e8573d060dad/insects-12-00281-g001.jpg

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