Feng Xiao-Li, Ni Wei-Min, Elge Stephan, Mueller-Roeber Bernd, Xu Zhi-Hong, Xue Hong-Wei
National Key Laboratory of Plant Molecular Genetics, Institute of Plant Physiology, Shanghai Institutes for Biological Sciences/SIBS, Chinese Academy of Sciences, PR China.
Plant Mol Biol. 2006 May;61(1-2):215-26. doi: 10.1007/s11103-006-0005-z.
It was well known that auxin is critical for anther/pollen grain development, however, the clear distribution and detailed effects of auxin during floral development are still unclear. We have shown here that, through analyzing GUS activities of Arabidopsis lines harboring auxin response elements DR5-GUS, auxin was mainly accumulated in the anther during flower stages 10-12. Further studies employing the indoleacetic acid-lysine synthetase (iaaL) coding gene from Pseudomonas syringae subsp. savastanoi under control of the promoter region of Arabidopsis phosphatidylinositol monophosphate 5-kinase 1 gene, which conducts the anther filament-specific expression, showed that block of auxin flow of filaments resulted in shortened filaments and significantly defective pollen grains. Similar phenotype was observed in tobacco plants transformed with the same construct, confirming the effects of auxin flow in filaments on anther development. Detailed studies further revealed that the meiosis process of pollen grain was normal while the mitosis at later stage was significantly defected, indicating the effects of auxin flow in filaments on pollen grain mitosis process. Analysis employing [(14)C]IAA, as well as the observation on the expression of AtPIN1, coding for auxin efflux carrier, demonstrated the presence of polar auxin transport in anther filaments and pollen grains.
众所周知,生长素对花药/花粉粒发育至关重要,然而,生长素在花发育过程中的清晰分布和详细作用仍不清楚。我们在此表明,通过分析携带生长素反应元件DR5-GUS的拟南芥株系的GUS活性,生长素在花发育的第10至12阶段主要积累在花药中。进一步的研究利用来自丁香假单胞菌 savastanoi 亚种的吲哚乙酸-赖氨酸合成酶(iaaL)编码基因,该基因在拟南芥磷脂酰肌醇单磷酸5-激酶1基因的启动子区域控制下进行花药花丝特异性表达,结果表明花丝中生长素流动的阻断导致花丝缩短和花粉粒明显缺陷。在用相同构建体转化的烟草植株中观察到了类似的表型,证实了花丝中生长素流动对花药发育的影响。详细研究进一步揭示,花粉粒的减数分裂过程正常,而后期的有丝分裂明显缺陷,表明花丝中生长素流动对花粉粒有丝分裂过程的影响。使用[(14)C]IAA进行的分析以及对生长素输出载体编码基因AtPIN1表达的观察,证明了花药花丝和花粉粒中存在极性生长素运输。