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Transcriptomic Identification of Iron-Regulated and Iron-Independent Gene Copies within the Heavily Duplicated Trichomonas vaginalis Genome

机译:大量重复的阴道毛滴虫基因组内铁调节和铁独立基因拷贝的转录组学鉴定。

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摘要

Gene duplication is an important evolutionary mechanism and no eukaryote has more duplicated gene families than the parasitic protist Trichomonas vaginalis. Iron is an essential nutrient for Trichomonas and plays a pivotal role in the establishment of infection, proliferation, and virulence. To gain insight into the role of iron in T. vaginalis gene expression and genome evolution, we screened iron-regulated genes using an oligonucleotide microarray for T. vaginalis and by comparative EST (expressed sequence tag) sequencing of cDNA libraries derived from trichomonads cultivated under iron-rich (+Fe) and iron-restricted (−Fe) conditions. Among 19,000 ESTs from both libraries, we identified 336 iron-regulated genes, of which 165 were upregulated under +Fe conditions and 171 under −Fe conditions. The microarray analysis revealed that 195 of 4,950 unique genes were differentially expressed. Of these, 117 genes were upregulated under +Fe conditions and 78 were upregulated under −Fe conditions. The results of both methods were congruent concerning the regulatory trends and the representation of gene categories. Under +Fe conditions, the expression of proteins involved in carbohydrate metabolism, particularly in the energy metabolism of hydrogenosomes, and in methionine catabolism was increased. The iron–sulfur cluster assembly machinery and certain cysteine proteases are of particular importance among the proteins upregulated under −Fe conditions. A unique feature of the T. vaginalis genome is the retention during evolution of multiple paralogous copies for a majority of all genes. Although the origins and reasons for this gene expansion remain unclear, the retention of multiple gene copies could provide an opportunity to evolve differential expression during growth in variable environmental conditions. For genes whose expression was affected by iron, we found that iron influenced the expression of only some of the paralogous copies, whereas the expression of the other paralogs was iron independent. This finding indicates a very stringent regulation of the differentially expressed paralogous genes in response to changes in the availability of exogenous nutrients and provides insight into the evolutionary rationale underlying massive paralog retention in the Trichomonas genome.
机译:基因复制是重要的进化机制,真核生物没有比寄生虫原生动物阴道滴虫多的基因家族。铁是滴虫的必需养分,并且在感染,增殖和毒力的建立中起着关键作用。为了深入了解铁在阴道锥虫基因表达和基因组进化中的作用,我们使用寡核苷酸微阵列检测阴道锥虫并通过比较EST(表达序列标签)测序,筛选了铁调节基因,该基因是通过在富铁(+ Fe)和铁限制(-Fe)条件。在两个文库的19,000个EST中,我们鉴定了336个铁调控基因,其中165个在+ Fe条件下被上调,而171个在-Fe条件下被上调。基因芯片分析显示,在4,950个独特基因中有195个被差异表达。其中,有117个基因在+ Fe条件下上调,有78个基因在-Fe条件下上调。两种方法的结果在调节趋势和基因类别的表示上是一致的。在+ Fe条件下,参与碳水化合物代谢(特别是氢脂质体的能量代谢)和蛋氨酸分解代谢的蛋白质表达增加。在-Fe条件下上调的蛋白质中,铁硫簇装配机制和某些半胱氨酸蛋白酶特别重要。阴道隐孢子虫基因组的独特之处在于,大多数基因的多个旁系同源拷贝在进化过程中得以保留。尽管尚不清楚该基因扩增的起源和原因,但保留多个基因拷贝可能会为在可变环境条件下生长期间进化差异表达提供机会。对于其表达受铁影响的基因,我们发现铁仅影响某些旁系同源拷贝的表达,而其他旁系同源物的表达与铁无关。这一发现表明差异表达的旁系同源基因非常严格地调节,以响应外源营养物质的可用性变化,并提供了深入了解毛滴虫基因组中大量旁系同源物保留的进化原理的见解。

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