Goeres David C, Van Norman Jaimie M, Zhang Weiping, Fauver Nellie A, Spencer Mary Lou, Sieburth Leslie E
Department of Biology, University of Utah, Salt Lake City, Utah 84112, USA.
Plant Cell. 2007 May;19(5):1549-64. doi: 10.1105/tpc.106.047621. Epub 2007 May 18.
To understand the mechanisms controlling vein patterning in Arabidopsis thaliana, we analyzed two phenotypically similar mutants, varicose (vcs) and trident (tdt). We had previously identified VCS, and recently, human VCS was shown to function in mRNA decapping. Here, we report that TDT encodes the mRNA-decapping enzyme. VCS and TDT function together in small cytoplasmic foci that appear to be processing bodies. To understand the developmental requirements for mRNA decapping, we characterized the vcs and tdt phenotypes. These mutants were small and chlorotic, with severe defects in shoot apical meristem formation and cotyledon vein patterning. Many capped mRNAs accumulated in tdt and vcs mutants, but surprisingly, some mRNAs were specifically depleted. In addition, loss of decapping arrested the decay of some mRNAs, while others showed either modest or no decay defects, suggesting that mRNAs may show specificity for particular decay pathways (3' to 5' and 5' to 3'). Furthermore, the severe block to postembryonic development in vcs and tdt and the accompanying accumulation of embryonic mRNAs indicate that decapping is important for the embryo-to-seedling developmental transition.
为了了解控制拟南芥叶脉模式的机制,我们分析了两个表型相似的突变体,静脉曲张(vcs)和三叉戟(tdt)。我们之前已经鉴定出VCS,最近,人类VCS被证明在mRNA脱帽过程中发挥作用。在此,我们报告TDT编码mRNA脱帽酶。VCS和TDT在似乎是加工小体的小细胞质病灶中共同发挥作用。为了了解mRNA脱帽的发育需求,我们对vcs和tdt的表型进行了表征。这些突变体植株矮小且黄化,在茎尖分生组织形成和子叶叶脉模式方面存在严重缺陷。许多带帽的mRNA在tdt和vcs突变体中积累,但令人惊讶的是,一些mRNA却特异性地减少了。此外,脱帽功能的丧失阻止了一些mRNA的降解,而其他一些mRNA则表现出适度或无降解缺陷,这表明mRNA可能对特定的降解途径(3'到5'和5'到3')具有特异性。此外,vcs和tdt中胚胎后发育的严重阻滞以及胚胎mRNA的伴随积累表明,脱帽对于胚胎到幼苗的发育转变很重要。