Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, 03202 Elche, Spain.
Instituto de Bioingeniería, Universidad Miguel Hernández, Campus de Elche, 03202 Elche, Spain.
Plant Sci. 2018 Jan;266:117-129. doi: 10.1016/j.plantsci.2017.11.003. Epub 2017 Nov 8.
To enhance our understanding of the roles of mitochondrial transcription termination factors (mTERFs) in plants, we have taken a reverse genetic approach in Arabidopsis thaliana. One of the mutants isolated carried a novel allele of the mTERF6 gene, which we named mterf6-5. mTERF6 is a chloroplast and mitochondrial localised protein required for the maturation of chloroplast isoleucine tRNA. The mterf6-5 plants are pale and exhibit markedly reduced growth, and altered leaf and chloroplast development. Our qRT-PCR analyses revealed mis-expression of several plastid, mitochondrial and nuclear genes in mterf6-5 plants. Synergistic phenotypes were observed in double mutant combinations of mterf6-5 with alleles of other mTERF genes as well as with scabra3-2, affected in the plastid RpoTp RNA polymerase; these observations suggest a functional relationship between mTERF6, other mTERFs and SCA3. The mterf6-5 mutation also enhanced the leaf dorsoventral polarity defects of the asymmetric leaves1-1 (as1-1) mutant, which resulted in radial leaves. This interaction seemed specific of the impaired mTERF6 function because mutations in the mTERF genes MDA1 or TWR-1/mTERF9 did not result in radialised leaves. Furthermore, the mterf6-5 mutation dramatically increased the leaf phenotype of as2-1 and caused lethality early in vegetative development. Our results uncover a new role for mTERF6 in leaf patterning and highlight the importance of mTERFs in plant development.
为了增进我们对线粒体转录终止因子(mTERFs)在植物中的作用的理解,我们在拟南芥中采用了反向遗传学方法。分离出的突变体之一携带 mTERF6 基因的一个新等位基因,我们将其命名为 mterf6-5。mTERF6 是一种定位于叶绿体和线粒体的蛋白质,对于叶绿体异亮氨酸 tRNA 的成熟是必需的。mterf6-5 植物叶片苍白,生长明显减少,叶片和叶绿体发育异常。我们的 qRT-PCR 分析显示 mterf6-5 植物中几个质体、线粒体和核基因的表达失调。mterf6-5 与其他 mTERF 基因的等位基因以及 plastid RpoTp RNA 聚合酶突变体 scabra3-2 的双突变体组合中观察到协同表型;这些观察结果表明 mTERF6、其他 mTERFs 和 SCA3 之间存在功能关系。mterf6-5 突变还增强了不对称叶片 1-1(as1-1)突变体叶片背腹极性缺陷,导致叶片呈放射状。这种相互作用似乎是 mTERF6 功能受损所特有的,因为 mTERF 基因 MDA1 或 TWR-1/mTERF9 的突变不会导致叶片呈放射状。此外,mterf6-5 突变极大地增加了 as2-1 的叶片表型,并在营养生长早期导致致死性。我们的结果揭示了 mTERF6 在叶片模式形成中的新作用,并强调了 mTERFs 在植物发育中的重要性。