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基于转录组学的分析:利用RNA测序研究椰子(Cocos nucifera)叶片对黄化衰退植原体感染的响应

Transcriptomics-based analysis using RNA-Seq of the coconut (Cocos nucifera) leaf in response to yellow decline phytoplasma infection.

作者信息

Nejat Naghmeh, Cahill David M, Vadamalai Ganesan, Ziemann Mark, Rookes James, Naderali Neda

机构信息

Institute of Tropical Agriculture, University of Putra Malaysia, Serdang, Malaysia.

School of Life and Environmental Sciences, Faculty of Science Engineering and Built Environment, Deakin University, Geelong, Australia.

出版信息

Mol Genet Genomics. 2015 Oct;290(5):1899-910. doi: 10.1007/s00438-015-1046-2. Epub 2015 Apr 18.

Abstract

Invasive phytoplasmas wreak havoc on coconut palms worldwide, leading to high loss of income, food insecurity and extreme poverty of farmers in producing countries. Phytoplasmas as strictly biotrophic insect-transmitted bacterial pathogens instigate distinct changes in developmental processes and defence responses of the infected plants and manipulate plants to their own advantage; however, little is known about the cellular and molecular mechanisms underlying host-phytoplasma interactions. Further, phytoplasma-mediated transcriptional alterations in coconut palm genes have not yet been identified. This study evaluated the whole transcriptome profiles of naturally infected leaves of Cocos nucifera ecotype Malayan Red Dwarf in response to yellow decline phytoplasma from group 16SrXIV, using RNA-Seq technique. Transcriptomics-based analysis reported here identified genes involved in coconut innate immunity. The number of down-regulated genes in response to phytoplasma infection exceeded the number of genes up-regulated. Of the 39,873 differentially expressed unigenes, 21,860 unigenes were suppressed and 18,013 were induced following infection. Comparative analysis revealed that genes associated with defence signalling against biotic stimuli were significantly overexpressed in phytoplasma-infected leaves versus healthy coconut leaves. Genes involving cell rescue and defence, cellular transport, oxidative stress, hormone stimulus and metabolism, photosynthesis reduction, transcription and biosynthesis of secondary metabolites were differentially represented. Our transcriptome analysis unveiled a core set of genes associated with defence of coconut in response to phytoplasma attack, although several novel defence response candidate genes with unknown function have also been identified. This study constitutes valuable sequence resource for uncovering the resistance genes and/or susceptibility genes which can be used as genetic tools in disease resistance breeding.

摘要

侵入性植原体在全球范围内对椰子树造成严重破坏,导致生产国农民收入大幅损失、粮食不安全以及极端贫困。植原体作为严格的专性活体营养型、由昆虫传播的细菌病原体,会引发受感染植物发育过程和防御反应的明显变化,并将植物操纵至自身有利状态;然而,宿主与植原体相互作用的细胞和分子机制却鲜为人知。此外,尚未鉴定出植原体介导的椰子树基因转录变化。本研究利用RNA测序技术评估了马来亚红矮椰生态型自然感染的叶片对16SrXIV组黄化衰退植原体的全转录组图谱。本文报道的基于转录组学的分析鉴定出了参与椰子先天免疫的基因。响应植原体感染而下调的基因数量超过了上调的基因数量。在39,873个差异表达的单基因中,感染后有21,860个单基因受到抑制,18,013个单基因被诱导。比较分析表明,与针对生物刺激的防御信号相关的基因在感染植原体的叶片中相对于健康椰子叶显著过表达。涉及细胞拯救与防御、细胞运输、氧化应激、激素刺激与代谢、光合作用减少、转录以及次生代谢物生物合成的基因表现出差异。我们的转录组分析揭示了一组与椰子对植原体攻击的防御相关的核心基因,尽管也鉴定出了几个功能未知的新型防御反应候选基因。本研究为揭示可作为抗病育种遗传工具的抗性基因和/或敏感基因提供了宝贵的序列资源。

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