Xool-Tamayo Jorge, Tamayo-Ordoñez Yahaira, Monforte-González Miriam, Muñoz-Sánchez José Armando, Vázquez-Flota Felipe
Centro de Investigación Científica de Yucatán, Unidad de Bioquímica y Biología Molecular de Plantas, Calle 43, No. 130 Chuburná, Mérida 97205, Mexico.
Plants (Basel). 2021 Oct 19;10(10):2226. doi: 10.3390/plants10102226.
The synthesis of the benzylisoquinoline alkaloids, sanguinarine and berberine, was monitored in L. (Papaveracea) throughout the early stages of its hypocotyl and seedling development. Sanguinarine was detected in the cotyledons right after hypocotyl emergence, and it increased continuously until the apical hook unbent, prior to the cotyledonary leaves unfolding, when it abruptly fell. In the cotyledonary leaves, it also remained at low levels. Throughout development, berberine accumulation required the formation of cotyledonary leaves, whereas it was quickly detected in the hypocotyl from the time it emerged. Interestingly, the alkaloids detected in the cotyledons could have been imported from hypocotyls, because no transcriptional activity was detected in there. However, after turning into cotyledonary leaves, important levels of gene expression were noted. Taken together, these results suggest that the patterns of alkaloid tissue distribution are established from very early development, and might require transport systems.
在(罂粟科)的下胚轴和幼苗发育早期阶段,监测了苄基异喹啉生物碱血根碱和小檗碱的合成。在下胚轴出现后,子叶中立即检测到血根碱,并且在顶端弯钩伸直之前,子叶叶片展开之前,血根碱持续增加,随后突然下降。在子叶叶片中,其含量也保持在较低水平。在整个发育过程中,小檗碱的积累需要子叶叶片的形成,而在下胚轴出现后很快就能在其中检测到。有趣的是,子叶中检测到的生物碱可能是从下胚轴输入的,因为在那里未检测到转录活性。然而,在变成子叶叶片后,观察到了重要水平的基因表达。综上所述,这些结果表明生物碱组织分布模式在发育早期就已建立,并且可能需要转运系统。