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烟粉虱MEAM1品系取食感染了褪绿病毒番茄褪绿病毒的番茄时的转录组分析,确定了基因表达的时间变化以及新孤儿基因的差异调控。

Transcriptome analysis of the whitefly, Bemisia tabaci MEAM1 during feeding on tomato infected with the crinivirus, Tomato chlorosis virus, identifies a temporal shift in gene expression and differential regulation of novel orphan genes.

作者信息

Kaur Navneet, Chen Wenbo, Zheng Yi, Hasegawa Daniel K, Ling Kai-Shu, Fei Zhangjun, Wintermantel William M

机构信息

USDA-ARS, Crop Improvement and Protection Research, 1636 East Alisal Street, Salinas, CA, 93905, USA.

Boyce Thompson Institute, 533 Tower Road, Ithaca, NY, 14853-1801, USA.

出版信息

BMC Genomics. 2017 May 11;18(1):370. doi: 10.1186/s12864-017-3751-1.

Abstract

BACKGROUND

Whiteflies threaten agricultural crop production worldwide, are polyphagous in nature, and transmit hundreds of plant viruses. Little is known how whitefly gene expression is altered due to feeding on plants infected with a semipersistently transmitted virus. Tomato chlorosis virus (ToCV; genus Crinivirus, family Closteroviridae) is transmitted by the whitefly (Bemisia tabaci) in a semipersistent manner and infects several globally important agricultural and ornamental crops, including tomato.

RESULTS

To determine changes in global gene regulation in whiteflies after feeding on tomato plants infected with a crinivirus (ToCV), comparative transcriptomic analysis was performed using RNA-Seq on whitefly (Bemisia tabaci MEAM1) populations after 24, 48, and 72 h acquisition access periods on either ToCV-infected or uninfected tomatoes. Significant differences in gene expression were detected between whiteflies fed on ToCV-infected tomato and those fed on uninfected tomato among the three feeding time periods: 447 up-regulated and 542 down-regulated at 24 h, 4 up-regulated and 7 down-regulated at 48 h, and 50 up-regulated and 160 down-regulated at 72 h. Analysis revealed differential regulation of genes associated with metabolic pathways, signal transduction, transport and catabolism, receptors, glucose transporters, α-glucosidases, and the uric acid pathway in whiteflies fed on ToCV-infected tomatoes, as well as an abundance of differentially regulated novel orphan genes. Results demonstrate for the first time, a specific and temporally regulated response by the whitefly to feeding on a host plant infected with a semipersistently transmitted virus, and advance the understanding of the whitefly vector-virus interactions that facilitate virus transmission.

CONCLUSION

Whitefly transmission of semipersistent viruses is believed to require specific interactions between the virus and its vector that allow binding of virus particles to factors within whitefly mouthparts. Results provide a broader understanding of the potential mechanism of crinivirus transmission by whitefly, aid in discerning genes or loci in whitefly that influence virus interactions or transmission, and subsequently facilitate development of novel, genetics-based control methods against whitefly and whitefly-transmitted viruses.

摘要

背景

烟粉虱威胁着全球农作物生产,食性多样,能传播数百种植物病毒。对于烟粉虱因取食感染半持久性传播病毒的植物而导致基因表达如何变化,我们知之甚少。番茄褪绿病毒(ToCV;隶属毛形病毒属,长线形病毒科)由烟粉虱(烟粉虱MEAM1隐种)以半持久性方式传播,可感染包括番茄在内的多种全球重要的农作物和观赏作物。

结果

为确定烟粉虱取食感染毛形病毒(ToCV)的番茄植株后其全球基因调控的变化,对烟粉虱(烟粉虱MEAM1隐种)在感染ToCV或未感染的番茄上经过24、48和72小时获毒期后的群体进行了RNA测序的比较转录组分析。在三个取食时间段内,取食感染ToCV番茄的烟粉虱与取食未感染番茄的烟粉虱之间检测到基因表达存在显著差异:24小时时447个基因上调,542个基因下调;48小时时4个基因上调,7个基因下调;72小时时50个基因上调,160个基因下调。分析揭示了取食感染ToCV番茄的烟粉虱中与代谢途径、信号转导、运输与分解代谢、受体、葡萄糖转运蛋白、α-葡萄糖苷酶和尿酸途径相关的基因存在差异调控,以及大量差异调控的新孤儿基因。结果首次证明了烟粉虱对取食感染半持久性传播病毒的寄主植物有特定的、随时间变化的调控反应,并增进了对促进病毒传播的烟粉虱载体-病毒相互作用的理解。

结论

半持久性病毒的烟粉虱传播被认为需要病毒与其载体之间的特定相互作用,以使病毒颗粒与烟粉虱口器内的因子结合。研究结果为烟粉虱传播毛形病毒的潜在机制提供了更广泛的理解,有助于识别烟粉虱中影响病毒相互作用或传播的基因或位点,并随后促进开发针对烟粉虱和烟粉虱传播病毒的新型基于遗传学的控制方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03d4/5426028/fccfc8c25d98/12864_2017_3751_Fig1_HTML.jpg

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