Ge Lei, Chen Hui, Jiang Jia-Fu, Zhao Yuan, Xu Ming-Li, Xu Yun-Yuan, Tan Ke-hui, Xu Zhi-Hong, Chong Kang
Research Center for Molecular and Developmental Biology, Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, The Chinese Academy of Sciences, Beijing 100093, China.
Plant Physiol. 2004 Jul;135(3):1502-13. doi: 10.1104/pp.104.041996. Epub 2004 Jul 9.
There are very few root genes that have been described in rice as a monocotyledonous model plant so far. Here, the OsRAA1 (Oryza sativa Root Architecture Associated 1) gene has been characterized molecularly. OsRAA1 encodes a 12.0-kD protein that has 58% homology to the AtFPF1 (Flowering Promoting Factor 1) in Arabidopsis, which has not been reported as modulating root development yet. Data of in situ hybridization and OsRAA1::GUS transgenic plant showed that OsRAA1 expressed specifically in the apical meristem, the elongation zone of root tip, steles of the branch zone, and the young lateral root. Constitutive expression of OsRAA1 under the control of maize (Zea mays) ubiquitin promoter resulted in phenotypes of reduced growth of primary root, increased number of adventitious roots and helix primary root, and delayed gravitropic response of roots in seedlings of rice (Oryza sativa), which are similar to the phenotypes of the wild-type plant treated with auxin. With overexpression of OsRAA1, initiation and growth of adventitious root were more sensitive to treatment of auxin than those of the control plants, while their responses to 9-hydroxyfluorene-9-carboxylic acid in both transgenic line and wild type showed similar results. OsRAA1 constitutive expression also caused longer leaves and sterile florets at the last stage of plant development. Analysis of northern blot and GUS activity staining of OsRAA1::GUS transgenic plants demonstrated that the OsRAA1 expression was induced by auxin. At the same time, overexpression of OsRAA1 also caused endogenous indole-3-acetic acid to increase. These data suggested that OsRAA1 as a new gene functions in the development of rice root systems, which are mediated by auxin. A positive feedback regulation mechanism of OsRAA1 to indole-3-acetic acid metabolism may be involved in rice root development in nature.
到目前为止,在单子叶模式植物水稻中被描述的根系基因非常少。在此,对水稻OsRAA1(水稻根系结构相关基因1)基因进行了分子特征分析。OsRAA1编码一种12.0-kD的蛋白质,与拟南芥中的AtFPF1(促进开花因子1)具有58%的同源性,AtFPF1尚未被报道可调节根系发育。原位杂交和OsRAA1::GUS转基因植物的数据表明,OsRAA1在顶端分生组织、根尖伸长区、分支区的中柱和幼嫩侧根中特异性表达。在玉米(Zea mays)泛素启动子的控制下,OsRAA1的组成型表达导致水稻(Oryza sativa)幼苗主根生长减缓、不定根和螺旋状主根数量增加以及根的向重力性反应延迟,这些表型与用生长素处理的野生型植物相似。随着OsRAA1的过表达,不定根的起始和生长对生长素处理比对照植物更敏感,而它们对9-羟基芴-9-羧酸的反应在转基因系和野生型中显示出相似的结果。OsRAA1的组成型表达还导致植物发育后期叶片更长且小花不育。对OsRAA1::GUS转基因植物的Northern杂交和GUS活性染色分析表明,OsRAA1的表达受生长素诱导。同时,OsRAA1的过表达也导致内源吲哚-3-乙酸增加。这些数据表明,OsRAA1作为一个新基因在水稻根系发育中发挥作用,其作用由生长素介导。OsRAA1对吲哚-3-乙酸代谢的正反馈调节机制可能参与了水稻根系在自然状态下的发育。