Colorado State University, Fort Collins, CO, USA.
International Rice Research Institute, Manila, Philippines.
Sci Rep. 2019 Feb 7;9(1):1536. doi: 10.1038/s41598-018-38195-x.
Plant disease resistance that is durable and effective against diverse pathogens (broad-spectrum) is essential to stabilize crop production. Such resistance is frequently controlled by Quantitative Trait Loci (QTL), and often involves differential regulation of Defense Response (DR) genes. In this study, we sought to understand how expression of DR genes is orchestrated, with the long-term goal of enabling genome-wide breeding for more effective and durable resistance. We identified short sequence motifs in rice promoters that are shared across Broad-Spectrum DR (BS-DR) genes co-expressed after challenge with three major rice pathogens (Magnaporthe oryzae, Rhizoctonia solani, and Xanthomonas oryzae pv. oryzae) and several chemical elicitors. Specific groupings of these BS-DR-associated motifs, called cis-Regulatory Modules (CRMs), are enriched in DR gene promoters, and the CRMs include cis-elements known to be involved in disease resistance. Polymorphisms in CRMs occur in promoters of genes in resistant relative to susceptible BS-DR haplotypes providing evidence that these CRMs have a predictive role in the contribution of other BS-DR genes to resistance. Therefore, we predict that a CRM signature within BS-DR gene promoters can be used as a marker for future breeding practices to enrich for the most responsive and effective BS-DR genes across the genome.
持久且有效抵御多种病原体(广谱)的植物疾病抗性对于稳定作物生产至关重要。这种抗性通常由数量性状位点(QTL)控制,并且常常涉及防御反应(DR)基因的差异调控。在这项研究中,我们试图了解 DR 基因的表达是如何协调的,长期目标是实现全基因组选育,以获得更有效和持久的抗性。我们在水稻启动子中鉴定了短序列基序,这些基序在受到三种主要水稻病原体(稻瘟病菌、立枯丝核菌和稻黄单胞菌 pv. 稻瘟病菌)和几种化学诱导剂挑战后,广谱 DR(BS-DR)基因共同表达时是共享的。这些 BS-DR 相关基序的特定分组,称为顺式调控模块(CRM),在 DR 基因启动子中富集,并且 CRM 包括已知参与抗病性的顺式元件。在抗性相对敏感的 BS-DR 单倍型中,CRM 中的多态性发生在基因启动子中,这提供了证据表明这些 CRM 在其他 BS-DR 基因对抗性的贡献中具有预测作用。因此,我们预测,BS-DR 基因启动子中的 CRM 特征可以用作标记,用于未来的育种实践,以在整个基因组中富集最敏感和有效的 BS-DR 基因。