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Metabolomic and transcriptomic analysis of the rice response to the bacterial blight pathogen Xanthomonas oryzae pv. oryzae

机译:水稻对白叶枯病病原菌米氏黄单胞菌PV响应的代谢组学和转录组学分析。水稻

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摘要

Bacterial leaf blight (BLB), caused by Xanthomonas oryzae pv. oryzae (Xoo), gives rise to devastating crop losses in rice. Disease resistant rice cultivars are the most economical way to combat the disease. The TP309 cultivar is susceptible to infection by Xoo strain PXO99. A transgenic variety, TP309_Xa21, expresses the pattern recognition receptor Xa21, and is resistant. PXO99△raxST, a strain lacking the raxST gene, is able to overcome Xa21-mediated immunity. We used a single extraction solvent to demonstrate comprehensive metabolomics and transcriptomics profiling under sample limited conditions, and analyze the molecular responses of two rice lines challenged with either PXO99 or PXO99△raxST. LC–TOF raw data file filtering resulted in better within group reproducibility of replicate samples for statistical analyses. Accurate mass match compound identification with molecular formula generation (MFG) ranking of 355 masses was achieved with the METLIN database. GC–TOF analysis yielded an additional 441 compounds after BinBase database processing, of which 154 were structurally identified by retention index/MS library matching. Multivariate statistics revealed that the susceptible and resistant genotypes possess distinct profiles. Although few mRNA and metabolite differences were detected in PXO99 challenged TP309 compared to mock, many differential changes occurred in the Xa21-mediated response to PXO99 and PXO99△raxST. Acetophenone, xanthophylls, fatty acids, alkaloids, glutathione, carbohydrate and lipid biosynthetic pathways were affected. Significant transcriptional induction of several pathogenesis related genes in Xa21 challenged strains, as well as differential changes to GAD, PAL, ICL1 and Glutathione-S-transferase transcripts indicated limited correlation with metabolite changes under single time point global profiling conditions.Electronic supplementary materialThe online version of this article (doi:10.1007/s11306-010-0218-7) contains supplementary material, which is available to authorized users.
机译:稻叶枯萎病(Xanthomonas oryzae pv)引起的细菌性叶枯病(BLB)。稻米(Xoo)导致水稻毁灭性的农作物损失。抗病水稻品种是抗击疾病最经济的方法。 TP309品种易受Xoo菌株PXO99感染。转基因品种TP309_Xa21表达模式识别受体Xa21,并且具有抗性。缺少raxST基因的菌株PXO99△raxST能够克服Xa21介导的免疫力。我们使用一种提取溶剂来证明在样品有限的条件下全面的代谢组学和转录组学分析,并分析了两个用PXO99或PXO99△raxST挑战的水稻品系的分子响应。 LC–TOF原始数据文件过滤可更好地进行重复样品的组内重复性以进行统计分析。通过METLIN数据库,分子质量生成(MFG)等级为355质量的精确质量匹配化合物鉴定得以实现。在BinBase数据库处理之后,GC–TOF分析还产生了另外441种化合物,其中154种通过保留指数/ MS库匹配在结构上被鉴定。多变量统计显示,易感和耐药基因型具有不同的特征。尽管与模拟相比,在PXO99攻击的TP309中几乎检测不到mRNA和代谢物差异,但Xa21介导的对PXO99和PXO99△raxST的应答中发生了许多差异变化。苯乙酮,叶黄素,脂肪酸,生物碱,谷胱甘肽,碳水化合物和脂质的生物合成途径受到影响。在Xa21攻击菌株中几个发病相关基因的显着转录诱导,以及GAD,PAL,ICL1和谷胱甘肽S-转移酶转录物的差异变化表明,在单个时间点全局概况分析条件下,与代谢物变化的相关性有限。本文的文章(doi:10.1007 / s11306-010-0218-7)包含补充材料,授权用户可以使用。

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