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基于水稻cDNA微阵列的培养水稻细胞中鞭毛蛋白感知响应的基因表达谱分析。

Rice cDNA microarray-based gene expression profiling of the response to flagellin perception in cultured rice cells.

作者信息

Fujiwara Satsuki, Tanaka Noriko, Kaneda Takashi, Takayama Seiji, Isogai Akira, Che Fang-Sik

机构信息

Graduate School of Biological Sciences, Nara Institute of Science and Technology, 8916-5, Takayama Ikoma, Nara 630-0101, Japan.

出版信息

Mol Plant Microbe Interact. 2004 Sep;17(9):986-98. doi: 10.1094/MPMI.2004.17.9.986.

Abstract

Incompatible strains of Acidovorax avenae elicit an immune response in cultured rice cells, with immunity specifically induced by the flagellin of the incompatible strain. To identify genes regulated by flagellin perception signaling in cultured rice cells, gene expression patterns were analyzed with rice cDNA microarrays, including 3,353 independent rice cDNA clones. In all, 131 genes were differentially expressed between incompatible and compatible interactions. K-means clustering showed that 94 genes were upregulated and 32 genes were downregulated during incompatible interactions, whereas only 5 genes were upregulated during compatible interactions. Among the 126 genes that were up- or downregulated during incompatible interactions, expression of 46 genes was decreased when cultured rice cells were inoculated with a flagellin-deficient incompatible strain (delta fla1141-2), indicating that approximately 37% of the 126 genes were directly controlled by flagellin perception. Real-time reverse-transcription polymerase chain reaction analysis using flagellins purified from incompatible or compatible strains was performed to confirm flagellin-regulated expression of candidate genes selected by microarray analysis. Results showed that induction of some genes involved in the immune response is regulated not only by the flagellin perception pathway, but also by another recognition molecule-perception pathway.

摘要

燕麦嗜酸菌的不亲和菌株在培养的水稻细胞中引发免疫反应,其中不亲和菌株的鞭毛蛋白特异性诱导免疫。为了鉴定培养的水稻细胞中受鞭毛蛋白感知信号调控的基因,利用包含3353个独立水稻cDNA克隆的水稻cDNA微阵列分析了基因表达模式。总共131个基因在不亲和与亲和相互作用之间存在差异表达。K均值聚类显示,在不亲和相互作用期间94个基因上调,32个基因下调,而在亲和相互作用期间仅5个基因上调。在不亲和相互作用期间上调或下调的126个基因中,当用鞭毛蛋白缺陷型不亲和菌株(delta fla1141-2)接种培养的水稻细胞时,46个基因的表达下降,表明126个基因中约37%受鞭毛蛋白感知直接控制。利用从不亲和或亲和菌株纯化的鞭毛蛋白进行实时逆转录聚合酶链反应分析,以确认通过微阵列分析选择的候选基因的鞭毛蛋白调控表达。结果表明,一些参与免疫反应的基因的诱导不仅受鞭毛蛋白感知途径调控,还受另一种识别分子感知途径调控。

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