Comparative transcriptome profiling of a rice line carrying Xa39 and its parents triggered by Xanthomonas oryzae pv. oryzae provides novel insights into the broad-spectrum hypersensitive response

文献类型: 外文期刊

第一作者: Zhang, Fan

作者: Zhang, Fan;Huang, Li-Yu;Zhang, Fan;Zhuo, Da-Long;Li, Zhi-kang;Zhou, Yong-Li;Huang, Li-Yu;Ali, Jauhar;Cruz, Casiana Vera;Du, Zheng-Lin

作者机构:

关键词: Rice;Xanthomonas oryzae pv. oryzae;R gene;Transcriptome sequencing

期刊名称:BMC GENOMICS ( 影响因子:3.969; 五年影响因子:4.478 )

ISSN: 1471-2164

年卷期: 2015 年 16 卷

页码:

收录情况: SCI

摘要: Background: Bacterial blight, caused by Xanthomonas oryzae pv. oryzae (Xoo), is a devastating rice disease worldwide. Xa39 is a resistance (R) gene with a broad-spectrum hypersensitive response (BSHR) to Xoo. Nevertheless, the molecular mechanisms of resistance mediated by Xa39 remain unclear. In this study, the transcriptome profiling of a rice line carrying Xa39 and its parents at the early stage of Xoo infection were investigated. Results: A rice introgression line H471 carrying Xa39 exhibited a typical local hypersensitive response phenotype, accompanied by programmed cell death after inoculation with the Xoo Philippines' race 9b. Transcriptome profiling of H471 and its parents at 1 and 2 days post-inoculation was performed using RNA sequencing. In total, 306 differentially expressed genes (DEGs) were identified in H471 compared with its recurrent parent Huang-Hua-Zhan after inoculation with Xoo. Among them, 121 (39.5%) genes, with functional enrichments that were related to defense response, protein amino acid phosphorylation, and apoptosis, were found to be constitutively expressed. The other 185 (60.5%) genes, with GO terms that belonged to defense response, were significantly responsive to Xoo infection in H471. Ten up-regulated and 12 down-regulated genes encoding intracellular immune receptors were identified in H471 compared with Huang-Hua-Zhan. LOC_Os11g37759, which was located in the fine-mapping region harboring Xa39, is a Xa39 candidate gene. The putative BSHR-related co-regulatory networks were constructed using 33 DEGs from four functional groups, including gibberellic acid receptors and brassinosteroid regulators, which were differentially co-expressed with LOC_Os11g37759 in infected H471. Our results indicated that there might be cross-talk between the Xa39-mediated signal transduction cascades and the GA/BR signaling pathway, and that the defense mechanism was related to diverse kinases, transcription factors, post-translational regulation, and R genes. Conclusions: The present study provides the comprehensive transcriptome profile of a rice introgression line carrying Xa39 and its parents, and identifies a set of DEGs involved in BSHR mediated by Xa39. These data provide novel insights into the regulatory networks of plant disease resistance mediated by R genes, and the identified DEGs will serve as candidates for Xa39 cloning and for further understanding the molecular mechanism of BSHR.

分类号:

  • 相关文献

[1]Genetic engineering of the Xa10 promoter for broad-spectrum and durable resistance to Xanthomonas oryzae pv. oryzae. Zeng, Xuan,Tian, Dongsheng,Gu, Keyu,Zhou, Zhiyun,Yang, Xiaobei,Luo, Yanchang,Yin, Zhongchao,Zeng, Xuan,Yin, Zhongchao,Luo, Yanchang,White, Frank F.,Yin, Zhongchao.

[2]Differentially-expressed genes in rice infected by Xanthomonas oryzae pv. oryzae relative to a flagellin-deficient mutant reveal potential functions of flagellin in host-pathogen interactions. Chen, Huamin,Tian, Fang,He, Chenyang,Leach, Jan E.. 2014

[3]XA23 Is an Executor R Protein and Confers Broad-Spectrum Disease Resistance in Rice. Wang, Chunlian,Zhang, Xiaoping,Fan, Yinglun,Gao, Ying,Zheng, Chongke,Qin, Tengfei,Li, Yanqiang,Che, Jinying,Zhang, Mingwei,Zhao, Kaijun,Zhu, Qinlong,Liu, Yaoguang,Yang, Bing. 2015

[4]Characteristic Expression Analysis of Five WRKY Transcriptional Factors in Rice Leaf Growth and Disease Resistance Reaction. Miao Liu-Yang,Li Li-Yun,Liu Zhao,Liu Yu-Meng,Liu Guo-Zhen,Jiang Guang-Huai,Yang Feng-Huan,He Chen-Yang. 2013

[5]Overlap between Signaling Pathways Responsive to Xanthomonas oryzae pv. oryzae Infection and Drought Stress in Rice Introgression Line Revealed by RNA-Seq. Zhang, Fan,Zhang, Fan,Huang, Liyu,Xu, Jianlong,Zhou, Yongli,Li, Zhikang,Xu, Jianlong,Zhou, Yongli,Li, Zhikang,Huang, Liyu,Cruz, Casiana Vera,Ali, Jauhar,Zhang, Fan.

[6]ThPP1 gene, encodes an inorganic pyrophosphatase in Thellungiella halophila, enhanced the tolerance of the transgenic rice to alkali stress. He, Rui,Han, Xiaori,He, Rui,Yu, Guohong,Han, Jiao,Li, Wei,Wang, Bing,Huang, Shengcai,Cheng, Xianguo,Han, Jiao.

[7]Heterologous Expression of the Cotton NBS-LRR Gene GbaNA1 Enhances Verticillium Wilt Resistance in Arabidopsis. Li, Nan-Yang,Zhou, Lei,Zhang, Dan-Dan,Li, Ting-Gang,Gui, Yue-Jing,Kong, Zhi-Qiang,Ma, Xue-Feng,Zhang, Wen-Qi,Li, Jun-Jiao,Chen, Jie-Yin,Dai, Xiao-Feng,Klosterman, Steven J.,Short, Dylan P. G.,Subbarao, Krishna V.. 2018

[8]RpoN2-and FliA-regulated fliTX is indispensible for flagellar motility and virulence in Xanthomonas oryzae pv. oryzae. Chen, Huamin,Tian, Fang,Yang, Fenghuan,He, Chenyang. 2017

[9]Ferric Iron Absorption in Delta rpfFxoo, a Gene Deletion Mutant of Xanthomonas oryzae pv. Oryzae, Assayed Using Atomic Absorption Spectrophotometry. Wu Mao-sen,He Chen-yang. 2010

[10]Mutation of alkyl hydroperoxide reductase gene ahpC of Xanthomonas oryzae pv. oryzae affects hydrogen peroxide accumulation during the rice-pathogen interaction. Qiao, Jiaju,Yang, Lipeng,Li, Xinling,Qiao, Suyu,Li, Xin,Tian, Fang,Chen, Huamin,He, Chenyang,Pang, Xinyue.

[11]Type-II secretion pathway structural gene xpsE, xylanase- and cellulase secretion and virulence in Xanthomonas oryzae pv. oryzae. Sun, QH,Hu, J,Huang, GX,Ge, C,Fang, RX,He, CZ. 2005

[12]The GGDEF-domain protein GdpX1 attenuates motility, exopolysaccharide production and virulence in Xanthomonas oryzae pv. oryzae. Qian, S.,Tian, F.,Chen, H.,He, C.,Hutchins, W.,Yang, C. -H..

[13]Differentiation in MALDI-TOF MS and FTIR spectra between two pathovars of Xanthomonas oryzae. Ge, Mengyu,Li, Bin,Wang, Li,Tao, Zhongyun,Xie, Guanlin,Li, Bin,Mao, Shengfeng,Wang, Yangli,Sun, Guochang.

[14]JMJ704 positively regulates rice defense response against Xanthomonas oryzae pv. oryzae infection via reducing H3K4me2/3 associated with negative disease resistance regulators. Hou, Yuxuan,Wang, Ling,Liu, Lianmeng,Li, Lu,Sun, Lei,Huang, Shiwen,Wang, Liyuan,Rao, Qiong,Zhang, Jian. 2015

[15]Marker-assisted breeding of Xa4, Xa21 and Xa27 in the restorer lines of hybrid rice for broad-spectrum and enhanced disease resistance to bacterial blight. Luo, Yanchang,Sangha, Jatinder S.,Yin, Zhongchao,Luo, Yanchang,Wang, Shouhai,Li, Zefu,Yang, Jianbo.

[16]OxyR-regulated catalase CatB promotes the virulence in rice via detoxifying hydrogen peroxide in Xanthomonas oryzae pv. oryzae. Wang, Nu,Wu, Maosen,Tian, Fang,Chen, Huamin,Yang, Fenghuan,He, Chenyang,Yuan, Xiaochen,Yang, Ching-Hong. 2016

[17]Comparative analysis of pre- and post-parasitic transcriptomes and mining pioneer effectors of Heterodera avenae. Yang, Dan,Chen, Changlong,Liu, Qian,Jian, Heng,Chen, Changlong. 2017

[18]Genome-Wide Association and Transcriptome Analyses Reveal Candidate Genes Underlying Yield-determining Traits in Brassica napus. Lu, Kun,Peng, Liu,Zhang, Chao,Lu, Junhua,Yang, Bo,Xiao, Zhongchun,Liang, Ying,Xu, Xingfu,Qu, Cunmin,Zhang, Kai,Liu, Liezhao,Li, Jiana,Peng, Liu,Zhang, Chao,Zhu, Qinlong,Fu, Minglian,Yuan, Xiaoyan. 2017

[19]High-throughput sequencing of highbush blueberry transcriptome and analysis of basic helix-loop-helix transcription factors. Song Yang,Liu Hong-di,Zhang Hong-jun,Wang Hai-bo,Liu Feng-zhi,Zhou Qiang,Zhang Zhi-dong,Li Ya-dong. 2017

[20]Comparative transcriptome analysis of soybean response to bean pyralid larvae. Sun, Zudong,Cai, Zhaoyan,Chen, Huaizhu,Lai, Zhenguang,Yang, Shouzhen,Tang, Xiangmin. 2017

作者其他论文 更多>>