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番茄核糖体生物发生因子共直系同源物的鉴定与表达分析

Identification and Expression Analysis of Ribosome Biogenesis Factor Co-orthologs in Solanum lycopersicum.

作者信息

Simm Stefan, Fragkostefanakis Sotirios, Paul Puneet, Keller Mario, Einloft Jens, Scharf Klaus-Dieter, Schleiff Enrico

机构信息

Department of Biosciences, Molecular Cell Biology of Plants, Goethe University, Frankfurt/Main, Germany. ; Cluster of Excellence Frankfurt, Goethe University, Frankfurt/Main, Germany.

Department of Biosciences, Molecular Cell Biology of Plants, Goethe University, Frankfurt/Main, Germany.

出版信息

Bioinform Biol Insights. 2015 Feb 4;9:1-17. doi: 10.4137/BBI.S20751. eCollection 2015.

Abstract

Ribosome biogenesis involves a large inventory of proteinaceous and RNA cofactors. More than 250 ribosome biogenesis factors (RBFs) have been described in yeast. These factors are involved in multiple aspects like rRNA processing, folding, and modification as well as in ribosomal protein (RP) assembly. Considering the importance of RBFs for particular developmental processes, we examined the complexity of RBF and RP (co-)orthologs by bioinformatic assignment in 14 different plant species and expression profiling in the model crop Solanum lycopersicum. Assigning (co-)orthologs to each RBF revealed that at least 25% of all predicted RBFs are encoded by more than one gene. At first we realized that the occurrence of multiple RBF co-orthologs is not globally correlated to the existence of multiple RP co-orthologs. The transcript abundance of genes coding for predicted RBFs and RPs in leaves and anthers of S. lycopersicum was determined by next generation sequencing (NGS). In combination with existing expression profiles, we can conclude that co-orthologs of RBFs by large account for a preferential function in different tissue or at distinct developmental stages. This notion is supported by the differential expression of selected RBFs during male gametophyte development. In addition, co-regulated clusters of RBF and RP coding genes have been observed. The relevance of these results is discussed.

摘要

核糖体生物合成涉及大量蛋白质和RNA辅助因子。酵母中已描述了超过250种核糖体生物合成因子(RBF)。这些因子参与多个方面,如rRNA加工、折叠和修饰以及核糖体蛋白(RP)组装。考虑到RBF对特定发育过程的重要性,我们通过对14种不同植物物种进行生物信息学归类以及在模式作物番茄中进行表达谱分析,研究了RBF和RP(共)直系同源物的复杂性。为每个RBF确定(共)直系同源物后发现,所有预测的RBF中至少25%由多个基因编码。首先我们意识到,多个RBF共直系同源物的出现与多个RP共直系同源物的存在并非全局相关。通过下一代测序(NGS)确定了番茄叶片和花药中编码预测RBF和RP的基因的转录丰度。结合现有的表达谱,我们可以得出结论,RBF的共直系同源物在很大程度上在不同组织或不同发育阶段具有优先功能。这一观点得到了雄性配子体发育过程中所选RBF差异表达的支持。此外,还观察到了RBF和RP编码基因的共调控簇。本文讨论了这些结果的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1709/4325683/0ed53f04523b/bbi-9-2015-001f2.jpg

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