Schüssler Manuela Désirée, Alexandersson Erik, Bienert Gerd Patrick, Kichey Thomas, Laursen Kristian Holst, Johanson Urban, Kjellbom Per, Schjoerring Jan Kofod, Jahn Thomas Paul
Department of Agriculture and Ecology, Faculty of Life Sciences, University of Copenhagen, Thorvaldsensvej 40, DK-1871 Frederiksberg C, Denmark.
Plant J. 2008 Dec;56(5):756-67. doi: 10.1111/j.1365-313X.2008.03632.x. Epub 2008 Sep 19.
Loss of aquaporin TIP1;1 in Arabidopsis has been suggested to result in early senescence and plant death. This was based on the fact that a partial reduction of TIP1;1 by RNA interference (RNAi) led to gradual phenotypes, ranging from indistinguishable from wild type to lethality, depending on the degree of downregulation of the target messenger, and displaying pleiotropic effects in primary metabolism and cell signalling. A hypothesis was put forward to suggest that TIP1;1, apart from its transport function, may play an essential role in vesicle routing. Here we identify an Arabidopsis transposon insertion line tip1;1-1 that is completely devoid of TIP1;1 protein, as demonstrated by western blotting and immunolocalization using an isoform-specific antibody. Strikingly, the complete absence of the protein did not result in any significant effect on metabolism or elemental composition of the plants. Microarray analysis did not indicate increased expression of other aquaporins to compensate for the lack of TIP1;1 in tip1;1-1. We further developed a double mutant of TIPs in Arabidopsis, lacking both TIP1;1 and its closest paralog TIP1;2. Arabidopsis mutants lacking both TIP1;1 and TIP1;2 showed a minor increase in anthocyanin content, and a reduction in catalase activity, but showed no changes in water status. In contrast to earlier reports, plants lacking TIP1;1 and TIP1;2 aquaporins are alive and thriving. We suggest that RNAi directed towards TIP1;1 may have resulted in off-target gene silencing, a notion that is potentially interesting for various studies analysing gene function by RNAi.
拟南芥中水通道蛋白TIP1;1的缺失被认为会导致早衰和植株死亡。这是基于以下事实:通过RNA干扰(RNAi)部分降低TIP1;1会导致逐渐显现的表型,从与野生型无明显差异到致死,这取决于靶信使下调的程度,并且在初级代谢和细胞信号传导中表现出多效性。有人提出一个假设,认为TIP1;1除了其运输功能外,可能在囊泡运输中起关键作用。在这里,我们鉴定出一个拟南芥转座子插入系tip1;1-1,通过蛋白质免疫印迹和使用异构体特异性抗体的免疫定位证明,该系完全缺乏TIP1;1蛋白。令人惊讶的是,该蛋白的完全缺失对植物的代谢或元素组成没有产生任何显著影响。微阵列分析并未表明其他水通道蛋白的表达增加以补偿tip1;1-1中TIP1;1的缺失。我们进一步培育了一个拟南芥TIPs双突变体,其同时缺乏TIP1;1及其最接近的旁系同源物TIP1;2。缺乏TIP1;1和TIP1;2的拟南芥突变体花青素含量略有增加,过氧化氢酶活性降低,但水分状况没有变化。与早期报道相反,缺乏TIP1;1和TIP1;2水通道蛋白的植株存活且生长良好。我们认为针对TIP1;1的RNAi可能导致了脱靶基因沉默,这一观点对于各种通过RNAi分析基因功能的研究可能具有潜在的重要意义。