Wu Y, Thorne E T, Sharp R E, Cosgrove D J
Department of Biology, 208 Mueller Laboratory, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Plant Physiol. 2001 Aug;126(4):1471-9. doi: 10.1104/pp.126.4.1471.
We previously demonstrated that maintenance of cell elongation in the apical region of maize primary roots at low water potentials (psi(w)) was associated with an increase in expansin activity and extractable expansin protein. Here, we characterized the spatial pattern of expansin gene expression along the growing maize root and studied the effect of low psi(w) on expansin gene expression. Roots were divided into three segments: apical 0 to 5 mm, subapical 5 to 10 mm, and non-growing 10 to 20 mm. Of the five expansin genes expressed in control roots, two alpha-expansins (Exp1 and Exp5) and two beta-expansins (ExpB2 and ExpB8) are expressed specifically in the growing region, whereas expression of beta-expansin ExpB6 is shifted basipetally. After seedlings were transplanted to vermiculite with a psi(w) of -1.6 MPa, transcripts for Exp1, Exp5, and ExpB8 rapidly accumulated in the apical region of the root. These mRNA changes correlated with the maintenance of root elongation and increases in wall extensibility found previously. The beta-expansins ExpB2 and ExpB6 showed distinctive patterns of expression and responses to low psi(w,) indicative of distinctive functions. Inhibition of abscisic acid (ABA) accumulation at low psi(w) (by fluridone treatment) had no effect on expansin expression, except that ExpB2 transcript level showed a minor dependence on ABA. Gene-specific regulation of alpha- and beta-expansin mRNA pools likely contributes to growth alterations of the maize (Zea mays) root as it adapts to a low psi(w), but these changes do not appear to be mediated by changes in ABA content.
我们之前证明,在低水势(ψ(w))下,玉米初生根顶端区域细胞伸长的维持与扩展蛋白活性的增加以及可提取的扩展蛋白的增加有关。在此,我们对扩展蛋白基因沿生长中的玉米根的空间表达模式进行了表征,并研究了低ψ(w)对扩展蛋白基因表达的影响。根被分为三个区段:顶端0至5毫米、亚顶端5至10毫米以及非生长区10至20毫米。在对照根中表达的五个扩展蛋白基因中,两个α-扩展蛋白(Exp1和Exp5)和两个β-扩展蛋白(ExpB2和ExpB8)在生长区特异性表达,而β-扩展蛋白ExpB6的表达则向基部转移。将幼苗移植到ψ(w)为 -1.6 MPa的蛭石中后,Exp1、Exp5和ExpB8的转录本在根的顶端区域迅速积累。这些mRNA变化与之前发现的根伸长的维持以及细胞壁伸展性的增加相关。β-扩展蛋白ExpB2和ExpB6表现出独特的表达模式和对低ψ(w)的反应,表明其具有独特的功能。在低ψ(w)下(通过氟啶酮处理)抑制脱落酸(ABA)积累对扩展蛋白表达没有影响,只是ExpB2转录本水平对ABA有轻微依赖性。α-和β-扩展蛋白mRNA库的基因特异性调控可能有助于玉米(Zea mays)根在适应低ψ(w)时的生长变化,但这些变化似乎不是由ABA含量的变化介导的。