Jammes Fabien, Lecomte Philippe, de Almeida-Engler Janice, Bitton Frédérique, Martin-Magniette Marie-Laure, Renou Jean Pierre, Abad Pierre, Favery Bruno
UMR INRA 1064-UNSA-CNRS 6192, Interactions Plantes-Microorganismes et Santé Végétale, 400 route des Chappes, BP 167, 06903 Sophia Antipolis, France.
Plant J. 2005 Nov;44(3):447-58. doi: 10.1111/j.1365-313X.2005.02532.x.
During a compatible interaction, root-knot nematodes (Meloidogyne spp.) induce the redifferentiation of root cells into multinucleate nematode feeding cells (giant cells). Hyperplasia and hypertrophy of the surrounding cells leads to the formation of a root gall. We investigated the plant response to root-knot nematodes by carrying out a global analysis of gene expression during gall formation in Arabidopsis, using giant cell-enriched root tissues. Among 22 089 genes monitored with the complete Arabidopsis transcriptome microarray gene-specific tag, we identified 3373 genes that display significant differential expression between uninfected root tissues and galls at different developmental stages. Quantitative PCR analysis and the use of promoter GUS fusions confirmed the changes in mRNA levels observed in our microarray analysis. We showed that a comparable number of genes were found to be up- and downregulated, indicating that gene downregulation might be essential to allow proper gall formation. Moreover, many genes belonging to the same family are differently regulated in feeding cells. This genome-wide overview of gene expression during plant-nematode interaction provides new insights into nematode feeding-cell formation, and highlights that the suppression of plant defence is associated with nematode feeding-site development.
在亲和性互作过程中,根结线虫(Meloidogyne spp.)会诱导根细胞重新分化为多核的线虫取食细胞(巨型细胞)。周围细胞的增生和肥大导致根瘤的形成。我们通过对拟南芥根瘤形成过程中基因表达进行全局分析,利用富含巨型细胞的根组织,研究了植物对根结线虫的反应。在用拟南芥全转录组微阵列基因特异性标签监测的22089个基因中,我们鉴定出3373个基因在未感染的根组织和不同发育阶段的根瘤之间表现出显著的差异表达。定量PCR分析以及启动子GUS融合的使用证实了我们微阵列分析中观察到的mRNA水平变化。我们发现上调和下调的基因数量相当,这表明基因下调可能对于根瘤的正常形成至关重要。此外,许多属于同一家族的基因在取食细胞中的调控方式不同。这种对植物 - 线虫互作过程中基因表达的全基因组概述为线虫取食细胞的形成提供了新的见解,并突出了植物防御的抑制与线虫取食位点发育相关。