首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Life on the edge: functional genomic response of Ignicoccus hospitalis to the presence of Nanoarchaeum equitans
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Life on the edge: functional genomic response of Ignicoccus hospitalis to the presence of Nanoarchaeum equitans

机译:生活在边缘:医院的伊格球菌对功能性基因组的反应是对纳米古细菌的存在

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The marine hyperthermophilic crenarchaeon Ignicoccus hospitalis supports the propagation on its surface of Nanoarchaeum equitans, an evolutionarily enigmatic archaeon that resembles highly derived parasitic and symbiotic bacteria. The cellular and molecular mechanisms that enable this interarchaea relationship and the intimate physiologic consequences to I. hospitalis are unknown. Here, we used concerted proteomic and transcriptomic analyses to probe into the functional genomic response of I. hospitalis as N. equitans multiplies on its surface. The expression of over 97% of the genes was detected at mRNA level and over 80% of the predicted proteins were identified and their relative abundance measured by proteomics. These indicate that little, if any, of the host genomic information is silenced during growth in the laboratory. The primary response to N. equitans was at the membrane level, with increases in relative abundance of most protein complexes involved in energy generation as well as that of several transporters and proteins involved in cellular membrane stabilization. Similar upregulation was observed for genes and proteins involved in key metabolic steps controlling nitrogen and carbon metabolism, although the overall biosynthetic pathways were marginally impacted. Proliferation of N. equitans resulted, however, in selective downregulation of genes coding for transcription factors and replication and cell cycle control proteins as I. hospitalis shifted its physiology from its own cellular growth to that of its ectosymbiont/parasite. The combination of these multiomic approaches provided an unprecedented level of detail regarding the dynamics of this interspecies interaction, which is especially pertinent as these organisms are not genetically tractable.
机译:海洋高温嗜热克雷纳氏菌伊格球菌医院支持纳米古细菌的表面繁殖,这是一种进化上神秘的古细菌,类似于高度衍生的寄生和共生细菌。使这种古细菌间关系以及对I. Hospitalis的直接生理后果的细胞和分子机制尚不清楚。在这里,我们使用蛋白质组学和转录组学的协同分析来探究当马齿肠球菌在其表面上繁殖时I. Hospitalis的功能基因组反应。在mRNA水平检测到超过97%的基因表达,并鉴定出超过80%的预测蛋白质,并通过蛋白质组学测量其相对丰度。这些表明在实验室中的生长过程中,几乎没有任何宿主基因组信息被沉默。对马鞭毛猪笼草的主要反应是在膜水平上,参与能量产生的大多数蛋白质复合物以及参与细胞膜稳定的几种转运蛋白和蛋白质的相对丰度增加。尽管总体生物合成途径受到轻微影响,但参与控制氮和碳代谢的关键代谢步骤的基因和蛋白质也观察到类似的上调。然而,马鞭毛猪笼草的增殖导致编码转录因子和复制以及细胞周期控制蛋白的基因的选择性下调,因为医院将其生理学从自身的细胞生长转变为胞外共生体/寄生虫。这些多组学方法的结合为物种间相互作用的动力学提供了前所未有的详细程度,这尤其相关,因为这些生物在遗传上不易处理。

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