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与寄生植物独脚金互作时表现出感病或抗病反应的水稻品种中的基因表达全球模式。

Global patterns of gene expression in rice cultivars undergoing a susceptible or resistant interaction with the parasitic plant Striga hermonthica.

作者信息

Swarbrick P J, Huang K, Liu G, Slate J, Press M C, Scholes J D

机构信息

Department of Animal and Plant Sciences, University of Sheffield, Western Bank, Sheffield, S10 2TN, UK.

出版信息

New Phytol. 2008 Jul;179(2):515-529. doi: 10.1111/j.1469-8137.2008.02484.x.

Abstract

Striga hermonthica is a root hemiparasite of cereals that causes devastating loss of yield. Recently, a rice cultivar, Nipponbare, was discovered, which exhibits post-attachment resistance to this parasite and quantitative trait loci (QTL) associated with the resistance were identified. Changes in gene expression in susceptible (IAC 165) and resistant (Nipponbare) rice cultivars were profiled using rice whole-genome microarrays. In addition to a functional categorization of changes in gene expression, genes that were significantly up-regulated within resistance QTL were identified. The resistance reaction was characterized by up-regulation of defence genes, including pathogenesis-related proteins, pleiotropic drug resistance ABC transporters, genes involved in phenylpropanoid metabolism and WRKY transcription factors. These changes in gene expression resemble those associated with resistance to microbial pathogens. Three genes encoding proteins of unknown function, within a major resistance QTL on chromosome 12, were highly up-regulated and are excellent candidate resistance genes. The susceptible interaction was characterized by large-scale down-regulation of gene expression, particularly within the functional categories plant growth regulator signalling and metabolism, biogenesis of cellular components and cell division. Up-regulated genes included nutrient transporters, enzymes of amino acid metabolism and some abiotic stress genes.

摘要

独脚金是谷类作物的一种根半寄生植物,会导致产量遭受毁灭性损失。最近,发现了一个水稻品种日本晴,它对这种寄生植物表现出附着后抗性,并鉴定出了与该抗性相关的数量性状基因座(QTL)。使用水稻全基因组微阵列分析了感病(IAC 165)和抗病(日本晴)水稻品种中的基因表达变化。除了对基因表达变化进行功能分类外,还鉴定出了在抗性QTL内显著上调的基因。抗性反应的特征是防御基因上调,包括病程相关蛋白、多药耐药ABC转运蛋白、参与苯丙烷代谢的基因和WRKY转录因子。这些基因表达变化类似于与对微生物病原体抗性相关的变化。位于第12号染色体上一个主要抗性QTL内的三个编码功能未知蛋白质的基因高度上调,是优秀的抗性候选基因。感病互作的特征是基因表达大规模下调,特别是在植物生长调节剂信号传导与代谢、细胞成分生物合成和细胞分裂等功能类别中。上调的基因包括营养转运蛋白、氨基酸代谢酶和一些非生物胁迫基因。

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