Su Ying H, Zhao Xiang Y, Liu Yu B, Zhang Chuan L, O'Neill Sharman D, Zhang Xian S
State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Shandong, China.
Plant J. 2009 Aug;59(3):448-60. doi: 10.1111/j.1365-313X.2009.03880.x.
Somatic embryogenesis requires auxin and establishment of the shoot apical meristem (SAM). WUSCHEL (WUS) is critical for stem cell fate determination in the SAM of higher plants. However, regulation of WUS expression by auxin during somatic embryogenesis is poorly understood. Here, we show that expression of several regulatory genes important in zygotic embryogenesis were up-regulated during somatic embryogenesis of Arabidopsis. Interestingly, WUS expression was induced within the embryonic callus at a time when somatic embryos could not be identified morphologically or molecularly. Correct WUS expression, regulated by a defined critical level of exogenous auxin, is essential for somatic embryo induction. Furthermore, it was found that auxin gradients were established in specific regions that could then give rise to somatic embryos. The establishment of auxin gradients was correlated with the induced WUS expression. Moreover, the auxin gradients appear to activate PIN1 polar localization within the embryonic callus. Polarized PIN1 is probably responsible for the observed polar auxin transport and auxin accumulation in the SAM and somatic embryo. Suppression of WUS and PIN1 indicated that both genes are necessary for embryo induction through their regulation of downstream gene expression. Our results reveal that establishment of auxin gradients and PIN1-mediated polar auxin transport are essential for WUS induction and somatic embryogenesis. This study sheds new light on how auxin regulates stem cell formation during somatic embryogenesis.
体细胞胚胎发生需要生长素和茎尖分生组织(SAM)的建立。WUSCHEL(WUS)对于高等植物SAM中的干细胞命运决定至关重要。然而,在体细胞胚胎发生过程中生长素对WUS表达的调控却知之甚少。在此,我们表明在拟南芥体细胞胚胎发生过程中,几个在合子胚胎发生中重要的调控基因的表达上调。有趣的是,在体细胞胚胎在形态或分子水平上都无法被识别的时候,WUS表达在胚性愈伤组织中被诱导。由特定临界水平的外源生长素调控的正确WUS表达对于体细胞胚胎诱导至关重要。此外,发现生长素梯度在特定区域建立,随后这些区域能够产生体细胞胚胎。生长素梯度的建立与诱导的WUS表达相关。而且,生长素梯度似乎激活了胚性愈伤组织内PIN1的极性定位。极化的PIN1可能是SAM和体细胞胚胎中观察到的极性生长素运输和生长素积累的原因。对WUS和PIN1的抑制表明这两个基因通过调控下游基因表达对于胚胎诱导都是必需的。我们的结果揭示生长素梯度的建立和PIN1介导的极性生长素运输对于WUS诱导和体细胞胚胎发生至关重要。这项研究为生长素在体细胞胚胎发生过程中如何调控干细胞形成提供了新的见解。