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Application of the gene dosage balance hypothesis to auxin-related ribosomal mutants in Arabidopsis

机译:基因剂量平衡假说在拟南芥生长素相关核糖体突变体中的应用

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摘要

Several proteomic studies in Arabidopsis have shown the presence of heterogeneous ribosomal populations in different tissues. However, the phenotypic consequences of the imbalance of those ribosomal populations, and the regulatory mechanisms activatedto control specific ratios between them, have yet to be evaluated. In our previous report, the phenotypic characterization of the ribosomal protein family L4 (RPL4) in Arabidopsis suggests that the maintenance of proper auxin-regulated developmental responses requires the simultaneous presence of RPL4A- and RPL4D-containing ribo-somes. Based on the analysis of the compensatory mechanisms within the RPL4 family proteins in the rpMa and rpl4d backgrounds, we propose the Gene Dosage Balance Hypothesis (GDBH) as a regulatory mechanism for ribosomal complexes in Arabidopsis. By using the concepts of dosage compensation and hierarchy, GDBH is able to explain the severity and specificity of different ribosomal mutant phenotypes associated with the same ribosomal complex.
机译:拟南芥中的一些蛋白质组学研究表明,不同组织中存在异质核糖体种群。然而,这些核糖体群体失衡的表型后果,以及为控制它们之间的特定比例而激活的调节机制,尚待评估。在我们以前的报告中,拟南芥中核糖体蛋白家族L4(RPL4)的表型特征表明,维持适当的生长素调节的发育反应需要同时存在包含RPL4A和RPL4D的核糖体。基于对rpMa和rpl4d背景下RPL4家族蛋白内补偿机制的分析,我们提出基因剂量平衡假说(GDBH)作为拟南芥核糖体复合物的调控机制。通过使用剂量补偿和等级概念,GDBH能够解释与同一核糖体复合物相关的不同核糖体突变表型的严重性和特异性。

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