果蝇对宿主环境变化的差异DNA甲基化反应。

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Adriano S Santos, Ester S Ramos, Vera L S Valente, Maura H Manfrin
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引用次数: 0

摘要

具有单一基因型的生物体可以表达不同的表型以响应快速的环境变化,这一事件被称为表型可塑性,尽管分子基础尚不清楚。表观遗传修饰介导基因型到表型的转变,并与表型可塑性有关。果蝇gouveai是一种发现于南美洲的嗜钙物种,其基因组在发育过程中表现出形态变化和差异甲基化;然而,表型可塑性尚未阐明。在这项研究中,我们研究了在石蜡(Cereus hildmaniannus)和马氏仙人掌(p.m achrisii cactus)组织中,goveai基因甲基化谱和分子靶点的变化。我们使用MSAP技术评估DNA甲基化模式,然后进行直接测序。我们的研究结果表明,在黄颡鱼饲养的果蝇的卵巢组织基因组中,内部甲基化(target-CmCGG/CCmGG)包含33个位点,在马颡鱼饲养的果蝇中包含31个位点。在雄性蝇的试验中,我们发现了42个甲基化位点和21个甲基化位点。枸杞卵巢和睾丸组织存在表观遗传异质性。此外,伽利略转座子元件(TE)是苍蝇在C. hildmaniannus上发育时甲基化的目标。已知转座因子的甲基化在基因组稳定性中起作用。总之,我们的数据表明,当使用不同的仙人掌宿主时,D. gouveai基因组发生了不同的甲基化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential DNA methylation in response to host environment changes in Drosophila gouveai.

Organisms with a single genotype can express different phenotypes in response to rapid environmental changes, an event known as phenotypic plasticity, although the molecular basis is poorly understood. Epigenetic modifications mediate genotype-to-phenotype transitions and are related to phenotypic plasticity. Drosophila gouveai, a cactophilic species found in South America, exhibits morphological changes and differential methylation in its genome during the development; however the phenotypic plasticity is not yet elucidated. In this study, we investigated changes in genomic DNA methylation profiles and molecular targets when D. gouveai develops in Cereus hildmaniannus tissues or P. machrisii cactus. We assessed DNA methylation patterns using the MSAP technique, followed by direct sequencing. Our results indicate that internal methylation (target-CmCGG/CCmGG) comprises 33 loci in the genome in ovarian tissues in flies raised on C. hildmaniannus and 31 loci in flies raised on P. machrisii. In the trials of male flies, we found 42 methylated loci in flies developed on C. hildmaniannus and 21 loci in flies raised on P. machrisii. Epigenetic heterogeneity was observed between D. gouveai ovarian and testicular tissues. Additionally, the Galileo transposon element (TE) is targeted for methylation when flies develop on C. hildmaniannus. Methylation of transposable elements is known to play a role in genome stability. In conclusion, our data suggest that differential methylation occurs in the D. gouveai genome when using different cactus hosts.

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来源期刊
Genetica
Genetica 生物-遗传学
CiteScore
2.70
自引率
0.00%
发文量
32
审稿时长
>12 weeks
期刊介绍: Genetica publishes papers dealing with genetics, genomics, and evolution. Our journal covers novel advances in the fields of genomics, conservation genetics, genotype-phenotype interactions, evo-devo, population and quantitative genetics, and biodiversity. Genetica publishes original research articles addressing novel conceptual, experimental, and theoretical issues in these areas, whatever the taxon considered. Biomedical papers and papers on breeding animal and plant genetics are not within the scope of Genetica, unless framed in an evolutionary context. Recent advances in genetics, genomics and evolution are also published in thematic issues and synthesis papers published by experts in the field.
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