Kinkema Mark, Gresshoff Peter M
The University of Queensland, St. Lucia, QLD 4072, Australia.
Mol Plant Microbe Interact. 2008 Oct;21(10):1337-48. doi: 10.1094/MPMI-21-10-1337.
The Glycine max nodule autoregulation receptor kinase (GmNARK) plays a central role in the systemic signal transduction pathway controlling nodulation in soybean. We used transcriptional profiling to identify potential downstream signals of this receptor kinase. These studies revealed that GmNARK-mediated signaling controls the expression of genes involved in the jasmonic acid (JA) pathway. Genes encoding the key enzymes controlling JA biosynthesis as well as JA-response genes were regulated systemically but not locally by root inoculation with Bradyrhizobium japonicum. This systemic regulation was abolished in Gmnark mutant plants, indicating that their expression was specifically controlled by signaling events associated with this receptor kinase. Foliar application of a JA biosynthesis inhibitor significantly reduced nodulation specifically in supernodulating mutant plants. These results indicate that the receptor-mediated regulation of JA signaling plays an important role in the AON signal transduction pathway. A second class of genes was identified that were controlled by GmNARK in a rhizobia-independent manner. These candidates provide insight on additional, nonsymbiotic signaling pathways that are likely regulated by GmNARK, such as those involved in root growth and defense. The discovery of downstream components of the GmNARK receptor kinase advances our understanding of the systemic control of nodule development and its association with other signaling networks.
大豆根瘤自调控受体激酶(GmNARK)在控制大豆结瘤的系统信号转导途径中起着核心作用。我们利用转录谱分析来鉴定该受体激酶的潜在下游信号。这些研究表明,GmNARK介导的信号传导控制着参与茉莉酸(JA)途径的基因表达。编码控制JA生物合成的关键酶的基因以及JA应答基因,在通过接种日本慢生根瘤菌进行根际接种时受到系统调控而非局部调控。在Gmnark突变体植株中,这种系统调控被消除,这表明它们的表达是由与该受体激酶相关的信号事件特异性控制的。叶面施用JA生物合成抑制剂显著降低了超结瘤突变体植株中的结瘤率。这些结果表明,受体介导的JA信号调控在自调控结瘤(AON)信号转导途径中起着重要作用。还鉴定出了第二类基因,它们以不依赖根瘤菌的方式受GmNARK控制。这些候选基因有助于深入了解可能受GmNARK调控的其他非共生信号途径,例如那些参与根系生长和防御的途径。GmNARK受体激酶下游成分的发现,增进了我们对根瘤发育系统控制及其与其他信号网络关联的理解。