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生姜(姜科姜属植物姜)和芒果姜(莪术属植物莪术)转录组对青枯病感染的响应比较

Comparison of the transcriptomes of ginger (Zingiber officinale Rosc.) and mango ginger (Curcuma amada Roxb.) in response to the bacterial wilt infection.

作者信息

Prasath Duraisamy, Karthika Raveendran, Habeeba Naduva Thadath, Suraby Erinjery Jose, Rosana Ottakandathil Babu, Shaji Avaroth, Eapen Santhosh Joseph, Deshpande Uday, Anandaraj Muthuswamy

机构信息

Indian Institute of Spices Research, Kozhikode (Calicut), Kerala, India.

Labindia-GPOD Research and Training Division, Thane, Maharashtra, India.

出版信息

PLoS One. 2014 Jun 18;9(6):e99731. doi: 10.1371/journal.pone.0099731. eCollection 2014.

Abstract

Bacterial wilt in ginger (Zingiber officinale Rosc.) caused by Ralstonia solanacearum is one of the most important production constraints in tropical, sub-tropical and warm temperature regions of the world. Lack of resistant genotype adds constraints to the crop management. However, mango ginger (Curcuma amada Roxb.), which is resistant to R. solanacearum, is a potential donor, if the exact mechanism of resistance is understood. To identify genes involved in resistance to R. solanacearum, we have sequenced the transcriptome from wilt-sensitive ginger and wilt-resistant mango ginger using Illumina sequencing technology. A total of 26387032 and 22268804 paired-end reads were obtained after quality filtering for C. amada and Z. officinale, respectively. A total of 36359 and 32312 assembled transcript sequences were obtained from both the species. The functions of the unigenes cover a diverse set of molecular functions and biological processes, among which we identified a large number of genes associated with resistance to stresses and response to biotic stimuli. Large scale expression profiling showed that many of the disease resistance related genes were expressed more in C. amada. Comparative analysis also identified genes belonging to different pathways of plant defense against biotic stresses that are differentially expressed in either ginger or mango ginger. The identification of many defense related genes differentially expressed provides many insights to the resistance mechanism to R. solanacearum and for studying potential pathways involved in responses to pathogen. Also, several candidate genes that may underline the difference in resistance to R. solanacearum between ginger and mango ginger were identified. Finally, we have developed a web resource, ginger transcriptome database, which provides public access to the data. Our study is among the first to demonstrate the use of Illumina short read sequencing for de novo transcriptome assembly and comparison in non-model species of Zingiberaceae.

摘要

由青枯雷尔氏菌引起的生姜(姜科姜属植物)青枯病是世界热带、亚热带和温带地区最重要的生产限制因素之一。缺乏抗性基因型给作物管理增加了限制。然而,如果了解其确切的抗性机制,对青枯雷尔氏菌具有抗性的芒果姜(莪术属植物)是一种潜在的抗性基因供体。为了鉴定与抗青枯雷尔氏菌相关的基因,我们使用Illumina测序技术对感病生姜和抗病芒果姜的转录组进行了测序。对莪术和姜分别进行质量过滤后,共获得了26387032对末端配对 reads和22268804对末端配对 reads。从这两个物种中分别获得了36359条和32312条组装转录本序列。这些单基因的功能涵盖了多种分子功能和生物学过程,其中我们鉴定出了大量与抗逆性和对生物刺激的反应相关的基因。大规模表达谱分析表明,许多与抗病性相关的基因在芒果姜中表达量更高。比较分析还鉴定出了属于植物抵御生物胁迫不同途径的基因,这些基因在生姜或芒果姜中差异表达。许多差异表达的防御相关基因的鉴定为青枯雷尔氏菌的抗性机制以及研究参与病原体反应的潜在途径提供了许多见解。此外,还鉴定出了几个可能是生姜和芒果姜对青枯雷尔氏菌抗性差异基础的候选基因。最后,我们开发了一个网络资源——生姜转录组数据库,公众可以访问该数据。我们的研究是最早证明使用Illumina短读长测序进行姜科非模式物种的从头转录组组装和比较的研究之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0b6/4062433/6257b14eee11/pone.0099731.g001.jpg

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