Instituto Botánico, Departamento de Ciencia y Tecnología Agroforestal y Genética, Facultad de Farmacia, Universidad de Castilla-La Mancha, Campus Universitario s/n, 02071 Albacete, Spain; Fundación Parque Científico y Tecnológico de Albacete, Spain.
Instituto Botánico, Departamento de Ciencia y Tecnología Agroforestal y Genética, Facultad de Farmacia, Universidad de Castilla-La Mancha, Campus Universitario s/n, 02071 Albacete, Spain.
Plant Sci. 2015 May;234:60-73. doi: 10.1016/j.plantsci.2015.02.004. Epub 2015 Feb 18.
Glycosyltransferases play diverse roles in cellular metabolism by modifying the activities of regulatory metabolites. Three stress-regulated UDP-glucosyltransferase-encoding genes have been isolated from the stigmas of saffron, UGT85U1, UGT85U2 and UGT85V1, which belong to the UGT85 family that includes members associated with stress responses and cell cycle regulation. Arabidopsis constitutively expressing UGT85U1 exhibited and increased anchor root development. No differences were observed in the timing of root emergence, in leaf, stem and flower morphology or flowering time. However, salt and oxidative stress tolerance was enhanced in these plants. Levels of glycosylated compounds were measured in these plants and showed changes in the composition of several indole-derivatives. Moreover, auxin levels in the roots were higher compared to wild type. The expression of several key genes related to root development and auxin homeostasis, including CDKB2.1, CDKB2.2, PIN2, 3 and 4; TIR1, SHR, and CYCD6, were differentially regulated with an increase of expression level of SHR, CYCD6, CDKB2.1 and PIN2. The obtained results showed that UGT85U1 takes part in root growth regulation via auxin signal alteration and the modified expression of cell cycle-related genes, resulting in significantly improved survival during oxidative and salt stress treatments.
糖基转移酶通过修饰调节代谢物的活性,在细胞代谢中发挥多种作用。从番红花柱头中分离出三个应激调节的 UDP-葡萄糖基转移酶编码基因,UGT85U1、UGT85U2 和 UGT85V1,它们属于 UGT85 家族,包括与应激反应和细胞周期调控相关的成员。拟南芥中组成型表达的 UGT85U1 表现出锚定根发育增加。在根的出现时间、叶片、茎和花的形态或开花时间方面没有观察到差异。然而,这些植物的耐盐和抗氧化应激能力增强。在这些植物中测量了糖基化化合物的水平,并显示出几种吲哚衍生物组成的变化。此外,与野生型相比,根中的生长素水平更高。与根发育和生长素稳态相关的几个关键基因的表达,包括 CDKB2.1、CDKB2.2、PIN2、3 和 4;TIR1、SHR 和 CYCD6 的表达受到差异调节,SHR、CYCD6、CDKB2.1 和 PIN2 的表达水平增加。获得的结果表明,UGT85U1 通过改变生长素信号和细胞周期相关基因的修饰表达参与根生长调控,导致在氧化和盐胁迫处理期间显著提高了存活率。