Department of Plant Pathology, University of California, Davis, Salinas, CA, 93905, United States.
Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, MI, 48823, United States; Plant Resilience Institute, Michigan State University, East Lansing, MI, 48823, United States.
Plant Sci. 2019 Aug;285:200-213. doi: 10.1016/j.plantsci.2019.04.006. Epub 2019 Apr 11.
NONRACE-SPECIFIC DISEASE RESISTANCE (NDR1) is a widely characterized gene that plays a key role in defense against multiple bacterial, fungal, oomycete and nematode plant pathogens. NDR1 is required for activation of resistance by multiple NB and LRR-containing (NLR) protein immune sensors and contributes to basal defense. The role of NDR1 in positively regulating salicylic acid (SA)-mediated plant defense responses is well documented. However, ndr1-1 plants flower earlier and show accelerated development in comparison to wild type (WT) Arabidopsis plants, indicating that NDR1 is a negative regulator of flowering and growth. Exogenous application of gibberellic acid (GA) further accelerates the early flowering phenotype in ndr1-1 plants, while the GA biosynthesis inhibitor paclobutrazol attenuated the early flowering phenotype of ndr1-1, but not to WT levels, suggesting partial resistance to paclobutrazol and enhanced GA response in ndr1-1 plants. Mass spectroscopy analyses confirmed that ndr1-1 plants have 30-40% higher levels of GA and GA, while expression of various GA metabolic genes and major flowering regulatory genes is also altered in the ndr1-1 mutant. Taken together this study provides evidence of crosstalk between the ndr1-1-mediated defense and GA-regulated developmental programs in plants.
非专化性疾病抗性(NDR1)是一个广泛特征化的基因,在抵抗多种细菌、真菌、卵菌和线虫植物病原体方面起着关键作用。NDR1 是多种含有 NB 和 LRR(NLR)蛋白免疫传感器的抗性激活所必需的,并且有助于基础防御。NDR1 在正向调节水杨酸(SA)介导的植物防御反应中的作用已有充分记录。然而,与野生型(WT)拟南芥植物相比,ndr1-1 植物更早开花并表现出加速发育,表明 NDR1 是开花和生长的负调节剂。赤霉素(GA)的外源应用进一步加速了 ndr1-1 植物的早花表型,而 GA 生物合成抑制剂多效唑减弱了 ndr1-1 的早花表型,但不能达到 WT 水平,表明 ndr1-1 植物对多效唑具有部分抗性和增强的 GA 反应。质谱分析证实,ndr1-1 植物的 GA 和 GA 水平高 30-40%,而 ndr1-1 突变体中各种 GA 代谢基因和主要开花调节基因的表达也发生了改变。总之,这项研究提供了证据表明,ndr1-1 介导的防御与 GA 调节的植物发育程序之间存在串扰。