1 Biology Institute, Hebei Academy of Sciences; and.
2 Hebei Engineering and Technology Center of Microbiological Control on Main Crop Disease, 46th South Street of Friendship, Shijiazhuang, 050051, China.
Mol Plant Microbe Interact. 2016 Oct;29(10):774-785. doi: 10.1094/MPMI-03-16-0063-R. Epub 2016 Oct 21.
N-acyl-homoserine lactones (AHL) are the quorum-sensing (QS) signal molecules used by many gram-negative bacteria to coordinate their collective behavior in a population. Recent evidence demonstrates their roles in plant root growth and defense responses. AtMYB44 is a multifaceted transcriptional factor that functions in many physiological processes in plants but whether AtMYB44 modulates the plant response to AHL with aspects of primary root elongation remains unknown. Here, we show that the expression of AtMYB44 was upregulated upon treatment with N-3-oxo-hexanoyl-homoserine lactone (3OC6-HSL). The stimulatory effect of 3OC6-HSL on primary root elongation was abolished in the AtMYB44 functional-deficiency mutant atmby44. In contrast, an enhanced promoting-impact of 3OC6-HSL on primary root growth was observed in AtMYB44-overexpressing plant MYB44OTA. Cellular analysis indicated that the prolonged primary root elicited by 3OC6-HSL is the consequence of increased cell division in the meristem zone and enhanced cell elongation in the elongation zone, and AtMYB44 may act as a positive regulator in this process. Furthermore, we demonstrated that AtMYB44 might participate in the 3OC6-HSL-mediated primary root growth via regulating the expression of cytokinin- and auxin-related genes. The data establish a genetic connection between the regulatory role of AtMYB44 in phytohormones-related gene expression and plant response to the bacterial QS signal.
N-酰基高丝氨酸内酯(AHL)是许多革兰氏阴性细菌用于协调其群体行为的群体感应(QS)信号分子。最近的证据表明它们在植物根生长和防御反应中起作用。AtMYB44 是一种多功能转录因子,在植物的许多生理过程中发挥作用,但 AtMYB44 是否通过调节植物对 AHL 的反应来调节主根伸长方面尚不清楚。在这里,我们表明,AtMYB44 的表达在 N-3-氧代-己酰高丝氨酸内酯(3OC6-HSL)处理后上调。3OC6-HSL 对主根伸长的刺激作用在 AtMYB44 功能缺陷突变体 atmby44 中被消除。相比之下,在 AtMYB44 过表达植物 MYB44OTA 中观察到 3OC6-HSL 对主根生长的增强促进作用。细胞分析表明,3OC6-HSL 引起的主根延长是由于分生区细胞分裂增加和伸长区细胞伸长增强的结果,AtMYB44 可能在此过程中作为正调节剂发挥作用。此外,我们证明 AtMYB44 可能通过调节细胞分裂素和生长素相关基因的表达参与 3OC6-HSL 介导的主根生长。这些数据在 AtMYB44 在植物激素相关基因表达和植物对细菌 QS 信号的反应中的调节作用之间建立了遗传联系。