Curto Miguel, Krajinski Franziska, Schlereth Armin, Rubiales Diego
Department of Plant Breeding, Institute for Sustainable Agriculture, Spanish National Research Council Córdoba, Spain.
Department of Plant-Microbe Interactions, Max Planck Institute of Molecular Plant Physiology Potsdam, Germany.
Front Plant Sci. 2015 Jul 9;6:517. doi: 10.3389/fpls.2015.00517. eCollection 2015.
Resistance to powdery mildew has been studied in a number of plant species, yet the molecular mechanisms remain largely unknown. Transcription factors (TFs) play a critical role in the plant defense response by regulating the transcriptional machinery which coordinates the expression of a large group of genes involved in plant defense. Using high-throughput quantitative real-time PCR (qPCR) technology more than 1000 Medicago truncatula TFs were screened in a pair of susceptible and resistant genotypes of M. truncatula after 4 h of Erysiphe pisi infection. Seventy nine TF genes, belonging to 33 families showed a significant transcriptional change in response to E. pisi infection. Forty eight TF genes were differentially expressed in the resistant genotypes compared to the susceptible one in response to E. pisi infection, including pathogenesis-related transcriptional factors, AP2/EREBP (APETALA2/ETHYLENE-RESPONSIVE ELEMENT BINDING FACTORS), WRKY (highly conserved WRKYGQK amino-acid sequence), MYB (Myeloblastoma), homeodomain (HD) and zinc finger C2C2 (CYS2-CYS2), C2H2, (CYS2-HIS2), LIM (Lin-11, Isl-1, Mec-3) gene families, which are involved in known defense responses. Our results suggest that these TF genes are among the E. pisi responsive genes in resistant M. truncatula that may constitute a regulatory network which controls the transcriptional changes in defense genes involved in resistance to E. pisi.
人们已经在许多植物物种中研究了对白粉病的抗性,但分子机制仍 largely 未知。转录因子(TFs)通过调节转录机制在植物防御反应中发挥关键作用,该转录机制协调了一大组参与植物防御的基因的表达。利用高通量定量实时 PCR(qPCR)技术,在豌豆白粉菌感染 4 小时后,对一对易感和抗性的蒺藜苜蓿基因型中的 1000 多个蒺藜苜蓿 TF 进行了筛选。属于 33 个家族的 79 个 TF 基因在响应豌豆白粉菌感染时表现出显著的转录变化。与易感基因型相比,48 个 TF 基因在抗性基因型中对豌豆白粉菌感染有差异表达,包括病程相关转录因子、AP2/EREBP(APETALA2/乙烯响应元件结合因子)、WRKY(高度保守的 WRKYGQK 氨基酸序列)、MYB(成髓细胞瘤)、同源结构域(HD)和锌指 C2C2(CYS2-CYS2)、C2H2(CYS2-HIS2)、LIM(Lin-11、Isl-1、Mec-3)基因家族,它们参与已知的防御反应。我们的结果表明,这些 TF 基因是抗性蒺藜苜蓿中对豌豆白粉菌有响应的基因之一,可能构成一个调控网络,控制参与对豌豆白粉菌抗性的防御基因的转录变化。