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Functional Nonequivalency of Actin Isovariants inArabidopsis

机译:肌动蛋白等价基因在功能上的不等价拟南芥

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摘要

Plants encode at least two ancient and divergent classes of actin, reproductive and vegetative, and each class produces several subclasses of actin isovariants. To gain insight into the functional significance of the actin isovariants, we generated transgenic Arabidopsis lines that expressed a reproductive actin, ACT1, under the control of the regulatory sequences of a vegetative actin gene, ACT2. In the wild-type plants, ACT1 is predominantly expressed in the mature pollen, growing pollen tubes, and ovules, whereas ACT2 is constitutively and strongly expressed in all vegetative tissues and organs, but not in pollen. Misexpression of ACT1 in vegetative tissues causes dwarfing of plants and altered morphology of most organs, and the effects are in direct proportion to protein expression levels. Similar overexpression of ACT2 has little effect. Immunolocalization of actin in leaf cells from transgenic plants with highest levels of ACT1 protein revealed massive polymerization, bundling, and reorganization of actin filaments. This phenomenon suggests that misexpression of ACT1 isovariant in vegetative tissuesaffects the dynamics of actin and actin-associated proteins, in turndisrupting the organization of actin cytoskeleton and normaldevelopment of plants.
机译:植物编码至少两个古老的和不同种类的肌动蛋白,即生殖和营养肌动蛋白,每类产生肌动蛋白同变体的几个子类。为了深入了解肌动蛋白同工变体的功能重要性,我们生成了在营养性肌动蛋白基因ACT2调控序列的控制下表达生殖肌动蛋白ACT1的转基因拟南芥品系。在野生型植物中,ACT1主要在成熟的花粉,正在生长的花粉管和胚珠中表达,而ACT2在所有营养组织和器官中而不是在花粉中组成性且强烈表达。营养组织中ACT1的错误表达会导致植物矮化,并使大多数器官的形态发生变化,其影响与蛋白质表达水平成正比。 ACT2的类似过表达几乎没有影响。肌动蛋白在具有最高水平的ACT1蛋白的转基因植物叶片细胞中的免疫定位显示出肌动蛋白丝的大量聚合,结合和重组。这种现象表明在营养组织中ACT1等价基因的错误表达进而影响肌动蛋白和肌动蛋白相关蛋白的动力学破坏肌动蛋白细胞骨架的组织和正常植物的发展。

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