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首页> 外文期刊>Cell motility and the cytoskeleton >The knock-out of ARP3a gene affects F-actin cytoskeleton organization altering cellular tip growth, morphology and development in moss Physcomitrella patens.
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The knock-out of ARP3a gene affects F-actin cytoskeleton organization altering cellular tip growth, morphology and development in moss Physcomitrella patens.

机译:ARP3a基因的敲除影响F-肌动蛋白细胞骨架的组织,改变苔藓小立碗藓中细胞尖端的生长,形态和发育。

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The seven subunit Arp2/3 complex is a highly conserved nucleation factor of actin microfilaments. We have isolated the genomic sequence encoding a putative Arp3a protein of the moss Physcomitrella patens. The disruption of this ARP3A gene by allele replacement has generated loss-of-function mutants displaying a complex developmental phenotype. The loss-of function of ARP3A gene results in shortened, almost cubic chloronemal cells displaying affected tip growth and lacking differentiation to caulonemal cells. In moss arp3a mutants, buds differentiate directly from chloronemata to form stunted leafy shoots having differentiated leaves similar to wild type. Yet, rhizoids never differentiate from stem epidermal cells. To characterize the F-actin organization in the arp3a-mutated cells, we disrupted ARP3A gene in the previously described HGT1 strain expressing conditionally the GFP-talin marker. In vivo observation of the F-actin cytoskeleton during P. patens development demonstrated that loss-of-function of Arp3a is associated with the disappearance of specific F-actin cortical structures associated with the establishment of localized cellular growth domains. Finally, we show that constitutive expression of the P. patens Arp3a and its Arabidopsis thaliana orthologs efficiently complement the mutated phenotype indicating a high degree of evolutionary conservation of the Arp3 function in land plants.
机译:七个亚基Arp2 / 3复合物是肌动蛋白微丝的高度保守成核因子。我们已经分离出编码苔藓假单胞菌假单胞菌的假定的Arp3a蛋白的基因组序列。通过等位基因置换破坏此ARP3A基因已产生功能丧失的突变体,表现出复杂的发育表型。 ARP3A基因的功能丧失导致缩短的,几乎是立方的氯神经细胞,显示受影响的尖端生长并且缺乏与caulonemal细胞的分化。在moss arp3a突变体中,芽直接从绿线虫中分化出来,形成发育迟缓的多叶芽,其分化的叶片类似于野生型。然而,类根瘤从未与表皮干细胞区分开。为了表征arp3a突变细胞中的F-肌动蛋白组织,我们破坏了先前描述的HGT1菌株中的ARP3A基因,该菌株有条件地表达GFP-塔林标记。在P.patens发育过程中对F-肌动蛋白细胞骨架的体内观察表明,Arp3a的功能丧失与特定F-肌动蛋白皮层结构的消失有关,而后者与局部细胞生长域的建立有关。最后,我们表明P. patens Arp3a及其拟南芥直向同源物的组成型表达有效地补充了突变表型,表明陆地植物中Arp3功能的高度进化保守性。

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