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Loss of XRN4 Function Can Trigger Cosuppression in a Sequence-Dependent Manner

机译:XRN4功能的丧失会触发依赖序列的共抑制

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OLE1 encodes an oleosin isoprotein, a major membrane protein of the lipid-reserve organelle in seeds known as the oil body. Transgenic Arabidopsis were generated to contain an artificial chimeric transgene composed of OLE1 and green fluorescent protein (GFP). Overexpression of the fusion protein allowed visualization of the oil body size and structure in living cells using fluorescence microscopy. Two mutants, xrn4-8(OleG) and xrn4-9(OleG), accumulating enlarged oil bodies with reduced GFP fluorescence were isolated from the mutagenized progeny of a transgenic plant. Both mutants contained a defect in EXORIBONUCLEASE4 (XRN4), a gene known to encode a ribonuclease that specifically degrades uncapped mRNAs. Transgene expression was silenced in these mutants, as demonstrated by the reduced levels of the transgene mRNA and its product, OLE1-GFP. XRN4 loss of function also triggered cosuppression, i.e. simultaneous reduction in expression of the transgene and an endogenous OLE1 gene that shared a region of identical sequence. The enlarged oil bodies exhibiting reduced GFP fluorescence were formed in the xrn4-8(OleG) and xrn4-9(OleG) mutants due to the reduction of the endogenous OLE1 and the transgene product, OLE1-GFP, respectively. Cosuppression triggered by the xrn4 mutation also occurs for other genes such as PYK10, which encodes an endoplasmic reticulum (ER) body-resident β-glucosidase. The overall results indicate that a loss of XRN4 function can potentially trigger the cosuppression in a sequence-dependent manner.
机译:OLE1编码油质蛋白同蛋白,该蛋白是已知为油体的种子中脂质储备细胞器的主要膜蛋白。产生的转基因拟南芥包含由OLE1和绿色荧光蛋白(GFP)组成的人工嵌合转基因。融合蛋白的过表达允许使用荧光显微镜观察活细胞中的油体大小和结构。从转基因植物的诱变后代中分离出两个突变体,xrn4-8(OleG)和xrn4-9(OleG),它们积累了具有减少的GFP荧光的扩大油体。这两个突变体均在EXORIBONUCLEASE4(XRN4)中存在缺陷,EXORIBONUCLEASE4(XRN4)是一种已知编码特定降解未封端mRNA的核糖核酸酶的基因。转基因表达在这些突变体中沉默,如转基因mRNA及其产物OLE1-GFP水平降低所证明。 XRN4功能丧失也引发共抑制,即同时降低转基因和共享相同序列区域的内源OLE1基因的表达。由于内源性OLE1和转基因产物OLE1-GFP的减少,在xrn4-8(OleG)和xrn4-9(OleG)突变体中形成了表现出减弱的GFP荧光的增大的油体。由xrn4突变触发的共抑制在其他基因(例如PYK10)中也会发生,该基因编码内质网(ER)体内驻留的β-葡萄糖苷酶。总体结果表明,XRN4功能的丧失可能以依赖序列的方式触发共抑制。

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