Winicov I
Department of Plant Biology, Arizona State University, Tempe 85287-1601, USA.
Planta. 2000 Feb;210(3):416-22. doi: 10.1007/PL00008150.
Plant root development is an essential determinant of plant growth and crop yield that could be enhanced by induced changes in the expression of root-specific regulatory factors. We reported previously that Alfin1 binds DNA in a sequence-specific manner and that Alfin1 overexpression in transgenic alfalfa (Medicago sativa L.) enhances expression of the salt-inducible MsPRP2 gene in roots, suggesting that Alfin1 functions to regulate gene expression in roots. Here we show that Alfin1 is an essential gene for root growth and that its overexpression in transgenic plants confers a many-fold increase in root growth under normal and saline conditions. Alfin1-binding sites occur in promoters of genes expressed in roots of a wide variety of plant species and we propose that it is a general root growth regulator. Even though Alfin1 overexpression was under the control of the CaMV 35S promoter, plant shoot growth was not adversely affected. We show further that introduction of the Alfin1 transgene in plants confers a dominant characteristic that significantly increases plant growth and salt tolerance.
植物根系发育是植物生长和作物产量的重要决定因素,通过诱导根系特异性调控因子表达的变化可以增强这一过程。我们之前报道过,Alfin1以序列特异性方式结合DNA,并且在转基因苜蓿(Medicago sativa L.)中过表达Alfin1可增强根中盐诱导型MsPRP2基因的表达,这表明Alfin1具有调控根中基因表达的功能。在此我们表明,Alfin1是根系生长的必需基因,其在转基因植物中的过表达使正常和盐胁迫条件下的根系生长增加了许多倍。Alfin1结合位点存在于多种植物物种根中表达的基因启动子中,我们提出它是一种通用的根系生长调节因子。尽管Alfin1的过表达受CaMV 35S启动子控制,但植株地上部分的生长并未受到不利影响。我们进一步表明,在植物中导入Alfin1转基因赋予了一种显性特征,可显著增加植物生长和耐盐性。