首页> 外文期刊>Journal of bacteriology >Regulation of Transcription in a Reduced Bacterial Genome: Nutrient-Provisioning Genes of the Obligate Symbiont Buchnera aphidicola
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Regulation of Transcription in a Reduced Bacterial Genome: Nutrient-Provisioning Genes of the Obligate Symbiont Buchnera aphidicola

机译:减少细菌基因组中的转录调控:专性共生双歧杆菌蚜虫的养分基因。

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Buchnera aphidicola, the obligate symbiont of aphids, has an extremely reduced genome, of which about 10% is devoted to the biosynthesis of essential amino acids needed by its hosts. Most regulatory genes for these pathways are absent, raising the question of whether and how transcription of these genes responds to the major shifts in dietary amino acid content encountered by aphids. Using full-genome microarrays for B. aphidicola of the host Schizaphis graminum, we examined transcriptome responses to changes in dietary amino acid content and then verified behavior of individual transcripts using quantitative reverse transcriptase PCR. The only gene showing a consistent and substantial (>twofold) response was metE, which underlies methionine biosynthesis and which is the only amino acid biosynthetic gene retaining its ancestral regulator (metR). In another aphid host, Acyrthosiphon pisum, B. aphidicola has no functional metR and shows no response in metE transcript levels to changes in amino acid concentrations. Thus, the only substantial transcriptional response involves the one gene for which an ancestral regulator is retained. This result parallels that from a previous study on heat stress, in which only the few genes retaining the global heat shock promoter showed responses in transcript abundance. The irreversible losses of transcriptional regulators constrain ability to alter gene expression in the context of environmental fluctuations affecting the symbiotic partners.
机译:蚜虫的专性共生种(Buchnera aphidicola)具有极少的基因组,其中约10%用于宿主生物所需的必需氨基酸的生物合成。缺乏这些途径的大多数调节基因,这引发了一个问题,即这些基因的转录是否以及如何响应蚜虫所遇到的饮食氨基酸含量的重大变化。对 B使用全基因组微阵列。宿主 Schizaphis graminum 的蚜虫,我们检查了转录组对饮食氨基酸含量变化的反应,然后使用定量逆转录酶PCR验证了单个转录本的行为。表现出一致且实质性(双重)应答的唯一基因是 metE ,它是蛋氨酸生物合成的基础,并且是唯一保留其祖先调节子( metR )的氨基酸生物合成基因。 。在另一个蚜虫寄主中, Acyrthosiphon pisum B。蚜虫没有功能性的 metR ,并且在 metE 转录水平上对氨基酸浓度的变化无响应。因此,唯一实质的转录反应涉及一个保留祖先调节子的基因。该结果与先前关于热应激的研究相类似,在该研究中,只有少数保留全局热休克启动子的基因在转录本丰度上显示出响应。在影响共生伴侣的环境波动的情况下,转录调节子的不可逆转的丧失限制了改变基因表达的能力。

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