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榨菜对由生物防治菌株河口志恒杆菌引发的芸苔根肿菌反应的转录组分析

Transcriptome analysis of Brassica juncea var. tumida Tsen responses to Plasmodiophora brassicae primed by the biocontrol strain Zhihengliuella aestuarii.

作者信息

Luo Yuanli, Dong Daiwen, Su Yu, Wang Xuyi, Peng Yumei, Peng Jiang, Zhou Changyong

机构信息

Citrus Research Institute of Chinese Academy of Agricultural Sciences, Southwest University, Chongqing, 400712, People's Republic of China.

Southeast Chongqing Academy of Agricultural Sciences, Chongqing, 408000, People's Republic of China.

出版信息

Funct Integr Genomics. 2018 May;18(3):301-314. doi: 10.1007/s10142-018-0593-0. Epub 2018 Mar 22.

Abstract

Mustard clubroot, caused by Plasmodiophora brassicae, is a serious disease that affects Brassica juncea var. tumida Tsen, a mustard plant that is the raw material for a traditional fermented food manufactured in Chongqing, China. In our laboratory, we screened the antagonistic bacteria Zhihengliuella aestuarii against P. brassicae. To better understand the biocontrol mechanism, three transcriptome analyses of B. juncea var. tumida Tsen were conducted using Illumina HiSeq 4000, one from B. juncea only inoculated with P. brassicae (P), one inoculated with P. brassica and the biocontrol agent Z. aestuarii at the same time (P + B), and the other was the control (H), in which P. brassicae was replaced by sterile water. A total of 19.94 Gb was generated by Illumina HiSeq sequencing. The sequence data were de novo assembled, and 107,617 unigenes were obtained. In total, 5629 differentially expressed genes between biocontrol-treated (P + B) and infected (P) samples were assigned to 126 KEGG pathways. Using multiple testing corrections, 20 pathways were significantly enriched with Qvalue ≤ 0.05. The resistance-related genes, involved in the production of pathogenesis-related proteins, pathogen-associated molecular pattern-triggered immunity, and effector-triggered immunity signaling pathways, calcium influx, salicylic acid pathway, reactive oxygen intermediates, and mitogen-activated protein kinase cascades, and cell wall modification, were obtained. The various defense responses induced by the biocontrol strain combatted the P. brassicae infection. The genes and pathways involved in plant resistance were induced by a biocontrol strain. The transcriptome data explained the molecular mechanism of the potential biocontrol strain against P. brassicae. The data will also serve as an important public information platform to study B. juncea var. tumida Tsen and will be useful for breeding mustard plants resistant to P. brassicae.

摘要

由芸薹根肿菌引起的芥菜根肿病是一种严重病害,它会影响榨菜(Brassica juncea var. tumida Tsen),榨菜是中国重庆一种传统发酵食品的原料。在我们实验室,我们筛选了对芸薹根肿菌具有拮抗作用的河流志恒氏菌(Zhihengliuella aestuarii)。为了更好地理解其生防机制,利用Illumina HiSeq 4000对榨菜进行了三次转录组分析,一次是仅接种芸薹根肿菌的榨菜(P),一次是同时接种芸薹根肿菌和生防菌河流志恒氏菌的榨菜(P + B),另一次是对照(H),即用无菌水代替芸薹根肿菌。Illumina HiSeq测序共产生了19.94 Gb的数据。对序列数据进行了从头组装,获得了107,617个单基因。总共,生物防治处理(P + B)和感染(P)样本之间的5629个差异表达基因被分配到126条KEGG通路。通过多重检验校正,20条通路在Q值≤0.05时显著富集。获得了与抗性相关的基因,这些基因参与病程相关蛋白的产生、病原体相关分子模式触发的免疫、效应子触发的免疫信号通路、钙内流、水杨酸途径、活性氧中间体、丝裂原活化蛋白激酶级联反应以及细胞壁修饰。生防菌株诱导的各种防御反应对抗了芸薹根肿菌的感染。参与植物抗性的基因和通路由生防菌株诱导。转录组数据解释了潜在生防菌株对芸薹根肿菌的分子机制。这些数据也将作为研究榨菜重要的公共信息平台,并将有助于培育抗芸薹根肿菌的芥菜植物。

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