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首页> 外文期刊>Development >An Arabidopsis Minute-like phenotype caused by a semi-dominant mutation in a RIBOSOMAL PROTEIN S5 gene.
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An Arabidopsis Minute-like phenotype caused by a semi-dominant mutation in a RIBOSOMAL PROTEIN S5 gene.

机译:由核糖体蛋白S5基因的半显性突变引起的拟南芥分钟样表型。

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Mutations in ribosomal protein (RP) genes in Drosophila lead to strong developmental phenotypes, expressed in the semi-dominant Minute syndrome. In plants, however, mutations in RP genes have so far only been reported to result in recessive developmental phenotypes. We present the analysis of an Arabidopsis promoter-trap line, in which a T-DNA insertion in an RPS5 gene (AtRPS5A) causes semi-dominant developmental phenotypes. Most cell-division processes are delayed or disturbed in the heterozygous mutant, and development is completely arrested at an early embryonic stage in the homozygous mutant. By analogy with Drosophila rp mutants, we have named this mutant Arabidopsis Minute-like 1 (aml1). As with other Arabidopsis RPs, RPS5 is represented by a small gene family, but in contrast to other described plant RPs, this family comprises only two members. The AtRPS5A gene (mutated in aml1) is strongly expressed in dividing cells, whereas expression of the second RPS5 gene, AtRPS5B, is lower than that of AtRPS5A, and is correlated with cell differentiation rather than cell division. From expression analyses we conclude that AtRPS5A is the most abundantly expressed RPS5 gene in Arabidopsis. The Minute-like defects in the aml1 mutant provide the first evidence that ribosome insufficiency leads to similar consequences in both plants and insects, and emphasize the general importance of efficient protein translation for cell proliferation in higher eukaryotes.
机译:果蝇中核糖体蛋白(RP)基因的突变会导致强烈的发育表型,以半显性Minute综合征表达。然而,到目前为止,在植物中,仅报道了RP基因的突变导致隐性发育表型。我们目前分析拟南芥启动子陷阱线,其中RPS5基因(AtRPS5A)中的T-DNA插入引起半显性的发育表型。大多数细胞分裂过程在杂合突变体中被延迟或干扰,并且发育在纯合突变体的早期胚胎阶段被完全阻止。通过类似于果蝇rp突变体,我们已将该突变体命名为拟南芥Minute-like 1(aml1)。与其他拟南芥RP一样,RPS5以一个小基因家族为代表,但与其他所述植物RP相比,该家族仅包含两个成员。 AtRPS5A基因(在aml1中突变)在分裂细胞中强烈表达,而第二个RPS5基因AtRPS5B的表达低于AtRPS5A,并且与细胞分化而不是细胞分裂有关。通过表达分析,我们得出结论,AtRPS5A是拟南芥中表达最丰富的RPS5基因。 aml1突变体中类似Minute的缺陷提供了第一个证据,证明核糖体功能不全会在植物和昆虫中导致类似的后果,并强调了高效蛋白质翻译对于高等真核生物细胞增殖的普遍重要性。

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