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首页> 外文期刊>Frontiers in Plant Science >Two Nucleolar Proteins, GDP1 and OLI2, Function As Ribosome Biogenesis Factors and Are Preferentially Involved in Promotion of Leaf Cell Proliferation without Strongly Affecting Leaf Adaxial–Abaxial Patterning in Arabidopsis thaliana
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Two Nucleolar Proteins, GDP1 and OLI2, Function As Ribosome Biogenesis Factors and Are Preferentially Involved in Promotion of Leaf Cell Proliferation without Strongly Affecting Leaf Adaxial–Abaxial Patterning in Arabidopsis thaliana

机译:两种核仁蛋白GDP1和OLI2均作为核糖体生物发生因子,在不强烈影响叶片正反模式的情况下,主要参与促进叶细胞增殖。

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Leaf abaxial–adaxial patterning is dependent on the mutual repression of leaf polarity genes expressed either adaxially or abaxially. In Arabidopsis thaliana , this process is strongly affected by mutations in ribosomal protein genes and in ribosome biogenesis genes in a sensitized genetic background, such as asymmetric leaves2 ( as2 ). Most ribosome-related mutants by themselves do not show leaf abaxialization, and one of their typical phenotypes is the formation of pointed rather than rounded leaves. In this study, we characterized two ribosome-related mutants to understand how ribosome biogenesis is linked to several aspects of leaf development. Previously, we isolated oligocellula2 ( oli2 ) which exhibits the pointed-leaf phenotype and has a cell proliferation defect. OLI2 encodes a homolog of Nop2 in Saccharomyces cerevisiae , a ribosome biogenesis factor involved in pre-60S subunit maturation. In this study, we found another pointed-leaf mutant that carries a mutation in a gene encoding an uncharacterized protein with a G-patch domain. Similar to oli2 , this mutant, named g-patch domain protein1 ( gdp1 ), has a reduced number of leaf cells. In addition, gdp1 oli2 double mutants showed a strong genetic interaction such that they synergistically impaired cell proliferation in leaves and produced markedly larger cells. On the other hand, they showed additive phenotypes when combined with several known ribosomal protein mutants. Furthermore, these mutants have a defect in pre-rRNA processing. GDP1 and OLI2 are strongly expressed in tissues with high cell proliferation activity, and GDP1-GFP and GFP-OLI2 are localized in the nucleolus. These results suggest that OLI2 and GDP1 are involved in ribosome biogenesis. We then examined the effects of gdp1 and oli2 on adaxial–abaxial patterning by crossing them with as2 . Interestingly, neither gdp1 nor oli2 strongly enhanced the leaf polarity defect of as2 . Similar results were obtained with as2 gdp1 oli2 triple mutants although they showed severe growth defects. These results suggest that the leaf abaxialization phenotype induced by ribosome-related mutations is not merely the result of a general growth defect and that there may be a sensitive process in the ribosome biogenesis pathway that affects adaxial–abaxial patterning when compromised by a mutation.
机译:叶片背面-背面图案取决于正面或背面表达的叶片极性基因的相互抑制。在拟南芥中,该过程受到敏感遗传背景(例如不对称leaves2(as2))中核糖体蛋白基因和核糖体生物发生基因突变的强烈影响。大多数与核糖体相关的突变体本身并不显示叶片的轴突化,并且其典型表型之一是尖叶而不是圆形叶片的形成。在这项研究中,我们表征了两个与核糖体相关的突变体,以了解核糖体生物发生如何与叶片发育的多个方面相关联。以前,我们分离出了表现出尖叶表型并具有细胞增殖缺陷的oligocellula2(oli2)。 OLI2在酿酒酵母中编码Nop2的同源物,酿酒酵母是参与60S亚基成熟的核糖体生物发生因子。在这项研究中,我们发现了另一个尖叶突变体,该突变体在编码具有G斑块结构域未表征蛋白质的基因中带有突变。与oli2相似,此突变体名为g-patch域蛋白1(gdp1),其叶细胞数量减少。此外,gdp1 oli2双突变体表现出很强的遗传相互作用,因此它们协同损害了叶片中的细胞增殖并产生了明显更大的细胞。另一方面,当与几种已知的核糖体蛋白突变体结合时,它们表现出加性表型。此外,这些突变体在前rRNA加工中存在缺陷。 GDP1和OLI2在具有高细胞增殖活性的组织中强烈表达,而GDP1-GFP和GFP-OLI2位于核仁中。这些结果表明OLI2和GDP1参与核糖体的生物发生。然后,我们通过将gdp1和oli2与as2交叉来检验其对前后轴构图的影响。有趣的是,gdp1和oli2都没有强烈增强as2的叶片极性缺陷。尽管as2 gdp1 oli2 Triple突变体显示出严重的生长缺陷,但也获得了相似的结果。这些结果表明,核糖体相关突变引起的叶背面轴突表型不仅是一般生长缺陷的结果,而且在核糖体生物发生途径中可能存在一个敏感过程,当受到突变影响时,该过程会影响轴突-轴突模式。

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