College of Life Science, Fujian Agriculture and Forestry University, Fuzhou, 350002, People's Republic of China.
Fujian Provincial Key Laboratory of Agroecological Processing and Safety Monitoring, Fuzhou, 350002, People's Republic of China.
BMC Plant Biol. 2019 Nov 9;19(1):485. doi: 10.1186/s12870-019-2035-0.
Indigo alkaloids, such as indigo, indirubin and its derivatives, have been identified as effective antiviral compounds in Baphicacanthus cusia. Evidence suggests that the biosynthesis of indigo alkaloids in plants occurs via the shikimate pathway. The enzyme 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) is involved in plant metabolism; however, its underlying putative mechanism of regulating the production of indigo alkaloids is currently unknown.
One gene encoding EPSPS was isolated from B. cusia. Quantitative real-time PCR analysis revealed that BcEPSPS was expressed at the highest level in the stem and upregulated by methyl jasmonate (MeJA), salicylic acid (SA) and abscisic acid (ABA) treatment. The results of subcellular localization indicated that BcEPSPS is mainly expressed in both the plastids and cytosol, which has not been previously reported. An enzyme assay revealed that the heterogeneously expressed BcEPSPS protein catalysed the generation of 5-enolpyruvyl shikimate-3-phosphate. The overexpression of BcEPSPS in Isatis indigotica hairy roots resulted in the high accumulation of indigo alkaloids, such as indigo, secologanin, indole and isorhamnetin.
The function of BcEPSPS in catalysing the production of EPSP and regulating indigo alkaloid biosynthesis was revealed, which provided a distinct view of plant metabolic engineering. Our findings have practical implications for understanding the effect of BcEPSPS on active compound biosynthesis in B. cusia.
靛蓝类生物碱,如靛蓝、靛玉红及其衍生物,已被鉴定为蝙蝠葛中的有效抗病毒化合物。有证据表明,植物中靛蓝类生物碱的生物合成是通过莽草酸途径进行的。酶 5-烯醇丙酮酰莽草酸-3-磷酸合酶(EPSPS)参与植物代谢;然而,其调节靛蓝类生物碱产生的潜在机制目前尚不清楚。
从蝙蝠葛中分离到一个编码 EPSPS 的基因。定量实时 PCR 分析显示,BcEPSPS 在茎中表达水平最高,并受茉莉酸甲酯(MeJA)、水杨酸(SA)和脱落酸(ABA)处理上调。亚细胞定位结果表明,BcEPSPS 主要在质体和细胞质中表达,这是以前未曾报道过的。酶活性测定表明,异源表达的 BcEPSPS 蛋白催化 5-烯醇丙酮酰莽草酸-3-磷酸的生成。BcEPSPS 在菘蓝毛状根中的过表达导致靛蓝类生物碱(如靛蓝、裂环烯醚萜、吲哚和异鼠李素)的大量积累。
揭示了 BcEPSPS 催化 EPSP 生成和调节靛蓝生物碱生物合成的功能,为植物代谢工程提供了一个独特的视角。我们的研究结果对理解 BcEPSPS 对蝙蝠葛中活性化合物生物合成的影响具有实际意义。