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亚致死剂量农药暴露对瓢虫飞行和运动性能、呼吸代谢及转录组表达的影响

Modification of Flight and Locomotion Performances, Respiratory Metabolism, and Transcriptome Expression in the Lady Beetle through Sublethal Pesticide Exposure.

作者信息

Xiao Da, Tan Xiaoling, Wang Wenjuan, Zhang Fan, Desneux Nicolas, Wang Su

机构信息

Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry Sciences Beijing, China.

Institute of Plant and Environment Protection, Beijing Academy of Agriculture and Forestry SciencesBeijing, China; Institute of Plant Protection, Chinese Academy of Plant ProtectionBeijing, China.

出版信息

Front Physiol. 2017 Feb 10;8:33. doi: 10.3389/fphys.2017.00033. eCollection 2017.

Abstract

Biological control is usually used in combination with chemical control for practical agricultural applications. Thus, the influence of insecticides on the natural predators used for biological control should be investigated for integrated pest management. The ladybird is an effective predator on aphids and coccids. Beta-cypermethrin is a broad-spectrum insecticide used worldwide for controlling insect pests. is becoming increasingly threatened by this insecticide. Here, we investigated the effect of a sublethal dose of beta-cypermethrin on flight, locomotion, respiration, and detoxification system of . After exposure to beta-cypermethrin, succinic female adults flew more times, longer distances, and during longer time periods. Exposure to a sublethal dose of beta-cypermethrin also promoted an increase in walking rate, walking distance, walking duration, and also an increase in respiratory quotient and respiratory rate. To investigate the effects of beta-cypermethrin on detoxification system, we analyzed the transcriptome of adults, focusing on genes related to detoxification systems. assembly generated 65,509 unigenes with a mean length of 799 bp. From these genes, 26,020 unigenes (40.91% of all unigenes) exhibited clear homology to known genes in the NCBI non-redundant database. In addition, 10,402 unigenes were annotated in the Cluster of Orthologous Groups database, 12,088 unigenes were assigned to the Gene Ontology database and 12,269 unigenes were in the Kyoto Encyclopedia of Genes and Genome (KEGG) database. Exposure to beta-cypermethrin had significant effects on the transcriptome profile of adult. Based on uniquely mapped reads, 3,296 unigenes were differentially expressed, 868 unigenes were up-regulated and 2,248 unigenes were down-regulated. We identified differentially-expressed unigenes related to general detoxification systems in . This assembled, annotated transcriptome provides a valuable genomic resource for further understanding the molecular basis of detoxification mechanisms in .

摘要

在实际农业应用中,生物防治通常与化学防治结合使用。因此,为了进行综合虫害管理,应研究杀虫剂对用于生物防治的自然天敌的影响。瓢虫是蚜虫和蚧虫的有效捕食者。高效氯氟氰菊酯是一种在全球范围内用于控制害虫的广谱杀虫剂。瓢虫正日益受到这种杀虫剂的威胁。在此,我们研究了亚致死剂量的高效氯氟氰菊酯对瓢虫飞行、运动、呼吸和解毒系统的影响。暴露于高效氯氟氰菊酯后,未交配的雌性成虫飞行次数更多、距离更远、持续时间更长。暴露于亚致死剂量的高效氯氟氰菊酯还促使步行速度、步行距离、步行持续时间增加,同时呼吸商和呼吸速率也增加。为了研究高效氯氟氰菊酯对瓢虫解毒系统的影响,我们分析了瓢虫成虫的转录组,重点关注与解毒系统相关的基因。组装产生了65,509个单基因,平均长度为799 bp。在这些基因中,26,020个单基因(占所有单基因的40.91%)与NCBI非冗余数据库中的已知基因具有明显的同源性。此外,10,402个单基因在直系同源簇数据库中得到注释,12,088个单基因被分配到基因本体数据库,12,269个单基因在京都基因与基因组百科全书(KEGG)数据库中。暴露于高效氯氟氰菊酯对瓢虫成虫的转录组图谱有显著影响。基于唯一映射的 reads,3,296个单基因差异表达,868个单基因上调,2,248个单基因下调。我们鉴定了瓢虫中与一般解毒系统相关的差异表达单基因。这个组装并注释的转录组为进一步了解瓢虫解毒机制的分子基础提供了有价值的基因组资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db6f/5300995/9a951c9a4be5/fphys-08-00033-g0001.jpg

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