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天然及人工合成的异源多倍体鱼类中的基因拷贝沉默与DNA甲基化

Gene copy silencing and DNA methylation in natural and artificially produced allopolyploid fish.

作者信息

Matos Isa M N, Coelho Maria M, Schartl Manfred

机构信息

Centre for Ecology, Evolution and Environmental Changes, Faculdade de Ciências, Universidade de Lisboa, Lisboa 1749-016, Portugal Department of Physiological Chemistry, Biocenter, University of Würzburg, Würzburg 97078, Germany

Centre for Ecology, Evolution and Environmental Changes, Faculdade de Ciências, Universidade de Lisboa, Lisboa 1749-016, Portugal.

出版信息

J Exp Biol. 2016 Oct 1;219(Pt 19):3072-3081. doi: 10.1242/jeb.140418. Epub 2016 Jul 21.

Abstract

Allelic silencing is an important mechanism for coping with gene dosage changes in polyploid organisms that is well known in allopolyploid plants. Only recently, it was shown in the allotriploid fish Squalius alburnoides that this process also occurs in vertebrates. However, it is still unknown whether this silencing mechanism is common to other allopolyploid fish, and which mechanisms might be responsible for allelic silencing. We addressed these questions in a comparative study between Squalius alburnoides and another allopolyploid complex, the Amazon molly (Poecilia formosa). We examined the allelic expression patterns for three target genes in four somatic tissues of natural allo-anorthoploids and laboratory-produced tri-genomic hybrids of S. alburnoides and P. formosa. Also, for both complexes, we evaluated the correlation between total DNA methylation level and the ploidy status and genomic composition of the individuals. We found that allelic silencing also occurs in other allopolyploid organisms besides the single one that was previously known. We found and discuss disparities within and between the two considered complexes concerning the pattern of allele-specific expression and DNA methylation levels. Disparities might be due to intrinsic characteristics of each genome involved in the hybridization process. Our findings also support the idea that long-term evolutionary processes have an effect on the allele expression patterns and possibly also on DNA methylation levels.

摘要

等位基因沉默是多倍体生物应对基因剂量变化的一种重要机制,这在异源多倍体植物中广为人知。直到最近,在异源三倍体鱼类阿尔巴尼亚白鱼中才发现这一过程在脊椎动物中也会发生。然而,这种沉默机制是否在其他异源多倍体鱼类中普遍存在,以及哪些机制可能导致等位基因沉默,仍然未知。我们在阿尔巴尼亚白鱼和另一个异源多倍体复合体——亚马孙帆鳉(食蚊鱼)之间的比较研究中解决了这些问题。我们检查了阿尔巴尼亚白鱼和亚马孙帆鳉的天然异源非整倍体以及实验室产生的三基因组杂种的四个体细胞组织中三个靶基因的等位基因表达模式。此外,对于这两个复合体,我们评估了总DNA甲基化水平与个体的倍性状态和基因组组成之间的相关性。我们发现,除了之前已知的单一物种外,等位基因沉默也发生在其他异源多倍体生物中。我们发现并讨论了所考虑的两个复合体内部和之间在等位基因特异性表达模式和DNA甲基化水平方面的差异。这些差异可能是由于杂交过程中涉及的每个基因组的内在特征。我们的研究结果还支持这样一种观点,即长期的进化过程对等位基因表达模式有影响,可能对DNA甲基化水平也有影响。

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