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Genetic Analysis of the Toxic Effect of Tachyplesin I on the Embryonic Development of Zebrafish

机译:Tachyplesin I对斑马鱼胚胎发育的毒性作用的遗传分析

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Tachyplesin I (TP-I) is an antimicrobial peptide isolated from the hemocytes of the horseshoe crab, Tachypleus tridentatus. In recent years, a series of biochemical analysis has been performed to gain insight into the mechanism of its strong antimicrobial and anticancer activity. With the development of microarray technology, the genetic analysis of the toxic effect of TP-I on embryo is originally considered in our recent study. Based on our microarray data of the embryonic samples treated with the different doses of TP-I, we perform a series of statistical data analysis to explore the biological process of TP-I on genomic level. In this paper, we employ the hexaMplot to illustrate the continuous variation of the gene expressions with the different dose. The hexaMplot was proved to be an intuitive and effective tool to illustrate the interrelations of genes within the different phenotypes. The strength of gradual alternation in gene expression can be implied in the modified hexaMplot by comparing the microarray data among the different doses of TP-I. The probabilistic model-based Hough transform (HT) is used to classify these co-expressed genes. Three line rays supported with the corresponding 174 genes are detected in our analysis. The feature genes identified on the same line ray of hexaMplot may show the similar expression patterns in varying the doses of TP-I. The functional groups of these genes, such as antigen processing, nuclear chromatin, structural constituent of eye lens, show the coherent biological function with the high significant as detected by Gene Ontology analysis.
机译:Tachyples I(TP-I)是一种从马蹄蟹,Tachypleus Tridentatus的血细胞中分离的抗微生物肽。近年来,已经进行了一系列生物化学分析,以了解其强抗微生物和抗癌活动的机制。随着微阵列技术的发展,在我们最近的研究中最初考虑了TP-I对胚胎毒性效果的遗传分析。基于用不同剂量的TP-I处理的胚胎样品的微阵列数据,我们执行一系列统计数据分析以探讨TP-I对基因组水平的生物过程。在本文中,我们采用六偏相物来说明与不同剂量的基因表达的连续变化。被证明是一种直观且有效的工具,用于说明不同表型内基因的相互关系。通过比较不同剂量的TP-1中的微阵列数据,可以在改性的六偏移中暗示基因表达中的逐渐交替的强度。基于概率模型的霍夫变换(HT)用于对这些共同表达基因进行分类。在我们的分析中检测到具有相应174基因的三线光线。在相同线射线上鉴定的特征基因可以显示不同的表达模式,改变TP-1的剂量。这些基因的官能团,例如抗原加工,核染色质,眼睛透镜的结构组分,表现出与基因本体分析检测到的高显着性的相干生物学功能。

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