Dezar Carlos Alberto, Gago Gabriela Marisa, Gonzalez Daniel Héctor, Chan Raquel Lía
Facultad de Bioquímica y Ciencias Biológicas, Universidad Nacional del Litoral, Santa Fe, Argentina.
Transgenic Res. 2005 Aug;14(4):429-40. doi: 10.1007/s11248-005-5076-0.
Homeodomain-leucine zipper proteins constitute a family of transcription factors found only in plants. Hahb-4 is a member of Helianthus annuus (sunflower) subfamily I. It is regulated at the transcriptional level by water availability and abscisic acid. In order to establish if this gene plays a functional role in drought responses, transgenic Arabidopsis thaliana plants that overexpress Hahb-4 under the control of the 35S Cauliflower Mosaic Virus promoter were obtained. Transformed plants show a specific phenotype: they develop shorter stems and internodes, rounder leaves and more compact inflorescences than their non-transformed counterparts. Shorter stems and internodes are due to a lower rate in cell elongation rather than to a stop in cell division. Transgenic plants were more tolerant to water stress conditions, showing improved development, a healthier appearance and higher survival rates than wild-type plants. Indeed, either under normal or drought conditions, they produce approximately the same seed weight per plant as wild-type plants under normal growth conditions. Plants transformed with a construct that bears the Hahb-4 promoter fused to gusA show reporter gene expression in defined cell-types and developmental stages and are induced by drought and abscisic acid. Since Hahb-4 is a transcription factor, we propose that it may participate in the regulation of the expression of genes involved in developmental responses of plants to desiccation.
同源异型域-亮氨酸拉链蛋白构成了一个仅在植物中发现的转录因子家族。Hahb-4是向日葵亚科I的成员。它在转录水平上受水分可利用性和脱落酸的调控。为了确定该基因在干旱反应中是否发挥功能作用,获得了在35S花椰菜花叶病毒启动子控制下过表达Hahb-4的转基因拟南芥植株。转化植株表现出特定的表型:与未转化的对应植株相比,它们的茎和节间更短,叶片更圆,花序更紧凑。茎和节间较短是由于细胞伸长速率较低,而非细胞分裂停止。转基因植株对水分胁迫条件更耐受,与野生型植株相比,表现出更好的生长发育、更健康的外观和更高的存活率。实际上,无论是在正常条件还是干旱条件下,它们每株产生的种子重量与正常生长条件下的野生型植株大致相同。用携带与gusA融合的Hahb-4启动子的构建体转化的植株在特定的细胞类型和发育阶段显示报告基因表达,并受干旱和脱落酸诱导。由于Hahb-4是一种转录因子,我们推测它可能参与调控植物对干燥发育反应相关基因的表达。