Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.
Planta. 2010 Jan;231(2):491-7. doi: 10.1007/s00425-009-1052-x. Epub 2009 Nov 14.
Root hydrotropism is the phenomenon of directional root growth toward moisture under water-deficient conditions. Although physiological and genetic studies have revealed the involvement of the root cap in the sensing of moisture gradients, and those of auxin and abscisic acid (ABA) in the signal transduction for asymmetric root elongation, the overall mechanism of root hydrotropism is still unclear. We found that the promoter activity of the Arabidopsis phospholipase Dzeta2 gene (PLDzeta2) was localized to epidermal cells in the distal root elongation zone and lateral root cap cells adjacent to them, and that exogenous ABA enhanced the activity and extended its area to the entire root cap. Although pldzeta2 mutant root caps did not exhibit a morphological phenotype in either the absence or presence of exogenous ABA, the inhibitory effect of ABA on gravitropism, which was significant in wild-type roots, was not observed in pldzeta2 mutant roots. In root hydrotropism experiments, pldzeta2 mutations significantly retarded or disturbed root hydrotropic responses. A drought condition similar to that used in a hydrotropism experiment enhanced the PLDzeta2 promoter activity in the root cap, as did exogenous ABA. These results suggest that PLDzeta2 responds to drought through ABA signaling in the root cap and accelerates root hydrotropism through the suppression of root gravitropism.
根向水性是指在缺水条件下,根朝着水分方向定向生长的现象。虽然生理和遗传研究已经揭示了根冠在感知水分梯度中的作用,以及生长素和脱落酸(ABA)在不对称根伸长信号转导中的作用,但根向水性的整体机制仍不清楚。我们发现,拟南芥磷脂酶 Dzeta2 基因(PLDzeta2)的启动子活性定位于远根伸长区的表皮细胞和与其相邻的侧根冠细胞中,外源 ABA 增强了其活性,并将其区域扩展到整个根冠。虽然 pldzeta2 突变体根冠在有无外源 ABA 的情况下都没有表现出形态表型,但 ABA 对向重力性的抑制作用在野生型根中非常显著,而在 pldzeta2 突变体根中则没有观察到。在根向水性实验中,pldzeta2 突变显著延缓或干扰了根向水性反应。与根向水性实验中使用的干旱条件类似,外源 ABA 增强了根冠中 PLDzeta2 启动子的活性。这些结果表明,PLDzeta2 通过根冠中的 ABA 信号对干旱做出反应,并通过抑制根向重力性来加速根向水性。