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利用高通量测序技术首次报道棕榈蓟马(Thrips palmi Karny)这一缨翅目昆虫中的微小RNA

The First Report of miRNAs from a Thysanopteran Insect, Thrips palmi Karny Using High-Throughput Sequencing.

作者信息

Rebijith K B, Asokan R, Hande H Ranjitha, Krishna Kumar N K

机构信息

Division of Biotechnology, Indian Institute of Horticultural Research, Bangalore, India.

Division of Horticultural Science, Indian Council of Agricultural Research, New Delhi, India.

出版信息

PLoS One. 2016 Sep 29;11(9):e0163635. doi: 10.1371/journal.pone.0163635. eCollection 2016.

Abstract

Thrips palmi Karny (Thysanoptera: Thripidae) is the sole vector of Watermelon bud necrosis tospovirus, where the crop loss has been estimated to be around USD 50 million annually. Chemical insecticides are of limited use in the management of T. palmi due to the thigmokinetic behaviour and development of high levels of resistance to insecticides. There is an urgent need to find out an effective futuristic management strategy, where the small RNAs especially microRNAs hold great promise as a key player in the growth and development. miRNAs are a class of short non-coding RNAs involved in regulation of gene expression either by mRNA cleavage or by translational repression. We identified and characterized a total of 77 miRNAs from T. palmi using high-throughput deep sequencing. Functional classifications of the targets for these miRNAs revealed that majority of them are involved in the regulation of transcription and translation, nucleotide binding and signal transduction. We have also validated few of these miRNAs employing stem-loop RT-PCR, qRT-PCR and Northern blot. The present study not only provides an in-depth understanding of the biological and physiological roles of miRNAs in governing gene expression but may also lead as an invaluable tool for the management of thysanopteran insects in the future.

摘要

西花蓟马(缨翅目:蓟马科)是西瓜芽坏死番茄斑萎病毒的唯一传播媒介,据估计,该病毒每年造成的作物损失约为5000万美元。由于西花蓟马的趋触行为以及对杀虫剂产生的高水平抗性,化学杀虫剂在防治西花蓟马方面的作用有限。迫切需要找到一种有效的未来管理策略,其中小RNA尤其是微小RNA有望在生长发育中发挥关键作用。微小RNA是一类短的非编码RNA,通过mRNA切割或翻译抑制参与基因表达的调控。我们使用高通量深度测序从西花蓟马中鉴定并表征了总共77个微小RNA。这些微小RNA靶标的功能分类表明,它们中的大多数参与转录和翻译、核苷酸结合及信号转导的调控。我们还通过茎环RT-PCR、qRT-PCR和Northern印迹验证了其中一些微小RNA。本研究不仅深入了解了微小RNA在调控基因表达中的生物学和生理学作用,还可能成为未来防治蓟马类昆虫的宝贵工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a8/5042526/7a46ec7d6226/pone.0163635.g001.jpg

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