Molecular and Biological Agricultural Sciences, Taiwan International Graduate Program, National Chung-Hsing University - Academia Sinica, Taipei, Taiwan.
Graduate Institute of Biotechnology, National Chung-Hsing University, Taichung, Taiwan.
New Phytol. 2011 Feb;189(3):869-882. doi: 10.1111/j.1469-8137.2010.03538.x. Epub 2010 Nov 16.
• Sumoylation, a post-translational modification, has important functions in both animals and plants. However, the biological function of the SUMO E3 ligase, SIZ1, in rice (Oryza sativa) is still under investigation. • In this study, we employed two different genetic approaches, the use of siz1 T-DNA mutant and SIZ1-RNAi transgenic plants, to characterize the function of rice SIZ1. • Genetic results revealed the co-segregation of single T-DNA insertional recessive mutation with the observed phenotypes in siz1. In addition to showing reduced plant height, tiller number and seed set percentage, both the siz1 mutant and SIZ1-RNAi transgenic plants showed obvious defects in anther dehiscence, but not pollen viability. The anther indehiscence in siz1 was probably a result of defects in endothecium development before anthesis. Interestingly, rice orthologs of AtIRX and ZmMADS2, which are essential for endothecium development during anther dehiscence, were significantly down-regulated in siz1. Compared with the wild-type, the sumoylation profile of high-molecular-weight proteins in mature spikelets was reduced significantly in siz1 and the SIZ1-RNAi line with notably reduced SIZ1 expression. The nuclear localization signal located in the SIZ1 C-terminus was sufficient for its nuclear targeting in bombarded onion epidermis. • The results suggest the functional role of SIZ1, a SUMO E3 ligase, in regulating rice anther dehiscence.
• 翻译:翻译为“翻译为简体中文”。
• 植物中都具有重要功能。然而,水稻(Oryza sativa)中 SUMO E3 连接酶 SIZ1 的生物学功能仍在研究中。
• 在这项研究中,我们采用了两种不同的遗传方法,即 siz1 T-DNA 突变体和 SIZ1-RNAi 转基因植物的使用,来表征水稻 SIZ1 的功能。
• 遗传结果显示,单个 T-DNA 插入隐性突变与 siz1 观察到的表型共分离。除了表现出降低的株高、分蘖数和结实率外,siz1 突变体和 SIZ1-RNAi 转基因植物的花药开裂也明显缺陷,但花粉活力正常。siz1 中的花药不开裂可能是由于花粉母细胞减数分裂前的内皮层发育缺陷所致。有趣的是,在花药开裂过程中内皮层发育所必需的水稻同源物 AtIRX 和 ZmMADS2 在 siz1 中显著下调。与野生型相比,成熟小穗中高分子量蛋白质的翻译后修饰谱在 siz1 和 SIZ1-RNAi 系中明显降低,SIZ1 表达明显降低。位于 SIZ1 C 末端的核定位信号足以使其在轰击的洋葱表皮中靶向核。
• 这些结果表明,SUMO E3 连接酶 SIZ1 在调控水稻花药开裂中具有功能作用。