首页> 外文期刊>Plant Biotechnology Journal >Transcriptome analysis reveals a comprehensive insect resistance response mechanism in cotton to infestation by the phloem feeding insect Bemisia tabaci (whitefly)
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Transcriptome analysis reveals a comprehensive insect resistance response mechanism in cotton to infestation by the phloem feeding insect Bemisia tabaci (whitefly)

机译:转录组分析揭示了棉花综合抗虫反应机制,以抑制植物饲料昆虫Bemisia Tabaci(粉虱)

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摘要

The whitefly (Bemisia tabaci) causes tremendous damage to cotton production worldwide. However, very limited information is available about how plants perceive and defend themselves from this destructive pest. In this study, the transcriptomic differences between two cotton cultivars that exhibit either strong resistance (HR) or sensitivity (ZS) to whitefly were compared at different time points (0, 12, 24 and 48h after infection) using RNA-Seq. Approximately one billion paired-end reads were obtained by Illumina sequencing technology. Gene ontology and KEGG pathway analysis indicated that the cotton transcriptional response to whitefly infestation involves genes encoding protein kinases, transcription factors, metabolite synthesis, and phytohormone signalling. Furthermore, a weighted gene co-expression network constructed from RNA-Seq datasets showed that WRKY40 and copper transport protein are hub genes that may regulate cotton defenses to whitefly infestation. Silencing GhMPK3 by virus-induced gene silencing (VIGS) resulted in suppression of the MPK-WRKY-JA and ET pathways and lead to enhanced whitefly susceptibility, suggesting that the candidate insect resistant genes identified in this RNA-Seq analysis are credible and offer significant utility. Taken together, this study provides comprehensive insights into the cotton defense system to whitefly infestation and has identified several candidate genes for control of phloem-feeding pests.
机译:粉虱(Bemisia Tabaci)对全球棉花生产造成巨大的伤害。但是,有关植物如何从这种破坏性害虫察觉和保护自己的信息非常有限。在该研究中,在使用RNA-SEQ的不同时间点(感染后的0,12,24和48h)比较了两种棉质品种之间的转录组差异,其表现出强烈的抗性(HR)或敏感性(ZS)。 Illumina测序技术获得了大约十亿个配对读数。基因本体和Kegg途径分析表明,对粉虱感染的棉转录反应涉及编码蛋白激酶,转录因子,代谢物合成和植物激素信号传导的基因。此外,由RNA-SEQ数据集构成的加权基因共表达网络表明WRKY40和铜传输蛋白是可以调节棉花防御的轮毂基因对粉虱感染。病毒诱导的基因沉默(Vigs)沉默GHMPK3导致抑制MPK-WRKY-JA和ET途径,并导致粉虱增强,这表明该RNA-SEQ分析中鉴定的候选抗虫基因是可信的,并提供重要的公用事业。综合学习,本研究为粉虱侵染的棉花防御系统提供了全面的见解,并确定了用于控制植物饲料害虫的几种候选基因。

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