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Relationships between protein-encoding gene abundance and corresponding process are commonly assumed yet rarely observed

机译:通常假定蛋白质编码基因丰度与相应过程之间的关系,但很少观察到

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For any enzyme-catalyzed reaction to occur, the corresponding protein-encoding genes and transcripts are necessary prerequisites. Thus, a positive relationship between the abundance of gene or transcripts and corresponding process rates is often assumed. To test this assumption, we conducted a meta-analysis of the relationships between gene and/or transcript abundances and corresponding process rates. We identified 415 studies that quantified the abundance of genes or transcripts for enzymes involved in carbon or nitrogen cycling. However, in only 59 of these manuscripts did the authors report both gene or transcript abundance and rates of the appropriate process. We found that within studies there was a significant but weak positive relationship between gene abundance and the corresponding process. Correlations were not strengthened by accounting for habitat type, differences among genes or reaction products versus reactants, suggesting that other ecological and methodological factors may affect the strength of this relationship. Our findings highlight the need for fundamental research on the factors that control transcription, translation and enzyme function in natural systems to better link genomic and transcriptomic data to ecosystem processes.
机译:对于任何发生的酶催化反应,相应的蛋白质编码基因和转录本都是必要的先决条件。因此,经常假设基因或转录本的丰度与相应的加工速率之间呈正相关。为了检验该假设,我们对基因和/或转录本丰度与相应加工速率之间的关系进行了荟萃分析。我们鉴定了415个研究,这些研究量化了参与碳或氮循环的酶的基因或转录本的丰度。但是,在这些手稿中只有59个作者报告了基因或转录本的丰度以及适当过程的发生率。我们发现在研究中,基因丰度与相应过程之间存在显着但弱的正相关。考虑到栖息地类型,基因或反应产物与反应物之间的差异,并没有加强相关性,这表明其他生态和方法学因素可能会影响这种关系的强度。我们的发现强调需要对自然系统中控制转录,翻译和酶功能的因素进行基础研究,以更好地将基因组和转录组数据与生态系统过程联系起来。

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