Kamiya Noriko, Nagasaki Hiroshi, Morikami Atsushi, Sato Yutaka, Matsuoka Makoto
Nagoya University, BioScience Center, Chikusa, Nagoya 464-8601, Japan.
Plant J. 2003 Aug;35(4):429-41. doi: 10.1046/j.1365-313x.2003.01816.x.
The Arabidopsis WUSCHEL (WUS) protein, which plays an important role in the specification of the stem cells in the shoot apical meristem (SAM), contains an 'atypical' homeodomain (HD) with extra residues in its loop and turn regions. We speculated that a WUS-type atypical HD protein might also be involved in the specification and maintenance of the root apical meristem (RAM) stem cells of rice. To investigate this possibility, we isolated and characterized a rice WUS-type homeobox gene designated quiescent-center-specific homeobox (QHB) gene. Using transformants carrying the QHB promoter-GUS and in situ hybridization, we found that QHB was specifically expressed in the central cells of a quiescent center (QC) of the root. During embryogenesis and crown root formation, QHB expression was observed prior to the morphological differentiation of the root. However, we detected different QHB expression patterns in the process of the RAM development, specifically between radicle and crown root formation, suggesting that the cell-fate determination of the QC may be controlled by different mechanisms. We also produced transformants that overexpress QHB or Arabidopsis WUS. These transformants did not form crown roots, but developed multiple shoots from ectopic SAMs with malformed leaves. On the basis of these observations, we propose that the WUS-type homeobox gene is involved in the specification and maintenance of the stem cells (QC cells) in the RAM, by a mechanism similar to that for WUS in the SAM.
拟南芥中的WUSCHEL(WUS)蛋白在茎尖分生组织(SAM)干细胞的特化过程中发挥着重要作用,它含有一个“非典型”的同源异型结构域(HD),其环区和转角区域有额外的氨基酸残基。我们推测,一种WUS型非典型HD蛋白可能也参与水稻根尖分生组织(RAM)干细胞的特化和维持。为了探究这种可能性,我们分离并鉴定了一个水稻WUS型同源异型盒基因,命名为静止中心特异性同源异型盒(QHB)基因。利用携带QHB启动子-GUS的转基因植株和原位杂交技术,我们发现QHB在根静止中心(QC)的中央细胞中特异性表达。在胚胎发育和冠根形成过程中,在根的形态分化之前就观察到了QHB的表达。然而,我们在RAM发育过程中检测到不同的QHB表达模式,特别是在胚根和冠根形成之间,这表明QC的细胞命运决定可能受不同机制的控制。我们还构建了过表达QHB或拟南芥WUS的转基因植株。这些转基因植株不形成冠根,而是从具有畸形叶片的异位SAM上发育出多个芽。基于这些观察结果,我们提出WUS型同源异型盒基因通过一种类似于SAM中WUS的机制参与RAM中干细胞(QC细胞)的特化和维持。