首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Genome-Wide Transcriptional Dynamics in the Companion Bacterial Symbionts of the Glassy-Winged Sharpshooter (Cicadellidae: Homalodisca vitripennis) Reveal Differential Gene Expression in Bacteria Occupying Multiple Host Organs
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Genome-Wide Transcriptional Dynamics in the Companion Bacterial Symbionts of the Glassy-Winged Sharpshooter (Cicadellidae: Homalodisca vitripennis) Reveal Differential Gene Expression in Bacteria Occupying Multiple Host Organs

机译:玻璃状翅神枪手(Cicadellidae:Homalodisca vitripennis)的伴侣细菌共生体中的全基因组转录动力学揭示了占据多个宿主器官的细菌中的差异基因表达。

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摘要

The agricultural pest known as the glassy-winged sharpshooter (GWSS) or Homalodisca vitripennis (Hemiptera: Cicadellidae) harbors two bacterial symbionts, “Candidatus Sulcia muelleri” and “Ca. Baumannia cicadellinicola,” which provide the 10 essential amino acids (EAAs) that are limited in the host plant-sap diet. Although they differ in origin and symbiotic age, both bacteria have experienced extensive genome degradation resulting from their ancient restriction to specialized host organs (bacteriomes) that provide cellular support and ensure vertical transmission. GWSS bacteriomes are of different origins and distinctly colored red and yellow. While Sulcia occupies the yellow bacteriome, Baumannia inhabits both. Aside from genomic predictions, little is currently known about the cellular functions of these bacterial symbionts, particularly whether Baumannia in different bacteriomes perform different roles in the symbiosis. To address these questions, we conducted a replicated, strand-specific RNA-seq experiment to assay global gene expression patterns in Sulcia and Baumannia. Despite differences in genomic capabilities, the symbionts exhibit similar profiles of their most highly expressed genes, including those involved in nutrition synthesis and protein stability (chaperonins dnaK and groESL) that likely aid impaired proteins. Baumannia populations in separate bacteriomes differentially express genes enriched in essential nutrient synthesis, including EAAs (histidine and methionine) and B vitamins (biotin and thiamine). Patterns of differential gene expression further reveal complexity in methionine synthesis. Baumannia’s capability to differentially express genes is unusual, as ancient symbionts lose the capability to independently regulate transcription. Combined with previous microscopy, our results suggest that the GWSS may rely on distinct Baumannia populations for essential nutrition and vertical transmission.
机译:被称为玻璃翅神枪(GWSS)或Homalodisca vitripennis(半翅目:Cicadellidae)的农业害虫具有两个细菌共生体,即“ Candidatus Sulcia muelleri”和“ Ca”。 “ Baumannia cicadellinicola”,提供宿主植物汁液饮食中有限的10种必需氨基酸(EAA)。尽管它们的起源和共生年龄不同,但由于它们长期以来局限于提供细胞支持并确保垂直传播的专门宿主器官(细菌),因此两种细菌都经历了广泛的基因组降解。 GWSS细菌是不同来源的,红色和黄色明显。 Sulcia占据黄色细菌群,而Baumannia则同时居住。除了基因组预测外,目前对这些细菌共生体的细胞功能知之甚少,特别是在不同细菌群中的鲍曼氏菌在共生中是否发挥不同作用。为了解决这些问题,我们进行了重复的,链特异性的RNA-seq实验,以测定Sulcia和Baumannia中的整体基因表达模式。尽管基因组能力不同,共生体仍显示出其最高表达基因的相似谱,包括参与营养合成和蛋白质稳定性的分子(伴侣蛋白dnaK和groESL),可能有助于受损的蛋白质。单独细菌群落中的鲍曼尼亚种群差异表达的基因丰富了必需营养素的合成,包括EAA(组氨酸和蛋氨酸)和B维生素(生物素和硫胺素)。差异基因表达的模式进一步揭示了蛋氨酸合成的复杂性。鲍曼尼亚差异表达基因的能力是不寻常的,因为古老的共生体失去了独立调节转录的能力。结合先前的显微镜,我们的结果表明,GWSS可能依赖于不同的鲍曼尼亚种群来获得基本营养和垂直传播。

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