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'Rejected' vs. 'rejecting' transcriptomes in allogeneic challenged colonial urochordates.

机译:同种异体挑战的结肠泌尿生殖器中的“拒绝”和“拒绝”转录组。

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In botryllid ascidians, allogeneic contacts between histoincompatible colonies lead to inflammatory rejection responses, which eventually separate the interacting colonies. In order to elucidate the molecular background of allogeneic rejection in the colonial ascidian Botryllus schlosseri, we performed microarray assays verified by qPCR, and employed bioinformatic analyses of the results, revealing disparate transcription profiles of the rejecting partners. While only minor expression changes were documented during rejection when both interacting genotypes were pooled together, analyses performed on each genotype separately portrayed disparate transcriptome responses. Allogeneic interacting genotypes that developed the morphological markers of rejection (points of rejection; PORs), termed 'rejected' genotypes, showed transcription inhibition of key functional gene groups, including protein biosynthesis, cell structure and motility and stress response genes. In contrast, the allogeneic partners that did not show PORs, termed 'rejecting' genotypes, showed minor expression changes that were different from those of the 'rejected' genotypes. This data demonstrates that the observed morphological changes in the 'rejected' genotypes are not due to active transcriptional response to the immune challenge but reflect transcription inhibition of response elements. Based on the morphological and molecular outcomes we suggest that the 'rejected' colony activates an injurious self-destructive mechanism in order to disconnect itself from its histoincompatible neighboring colony.
机译:在葡萄球菌海鞘中,组织相容性菌落之间的同种异体接触导致炎症排斥反应,最终将相互作用的菌落分开。为了阐明殖民地海生Botryllus schlosseri中异基因排斥的分子背景,我们进行了qPCR验证的微阵列分析,并对结果进行了生物信息学分析,揭示了排斥伴侣的不同转录谱。当两个相互作用的基因型汇集在一起​​时,在排斥过程中只有很小的表达变化被记录下来,但是对每种基因型进行的分析分别描绘了不同的转录组反应。产生排斥的形态学标记(排斥点; POR)的同种异体相互作用基因型,被称为“被拒绝”基因型,显示出关键功能基因组的转录抑制,包括蛋白质的生物合成,细胞结构,运动性和应激反应基因。相反,没有表现出POR的同种异体伴侣被称为“拒绝”基因型,其微小的表达变化与“拒绝”基因型不同。该数据表明,观察到的“拒绝”基因型的形态变化不是由于对免疫激发的主动转录反应,而是反映了反应元件的转录抑制。根据形态和分子结果,我们建议“被拒绝”的菌落激活一种有害的自毁机制,以使其自身与组织相容性邻近菌落断开连接。

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