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Homoeologue expression insights into the basis of growth heterosis at the intersection of ploidy and hybridity in Cyprinidae

机译:同源表达表达了解鲤科中倍性和杂交相交处生长杂种优势的基础

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摘要

Hybridization and polyploidization are considered important driving forces that form new epigenetic regulations. To study the changing patterns of expression accompanying hybridization and polyploidization, we used RNA-seq and qRT-PCR to investigate global expression and homoeologue expression in diploid and tetraploid hybrids of Carassius auratus red var. (♀) (R) and Cyprinus carpio (♂) (C). By comparing the relative expression levels between the hybrids and their parents, we defined the expression level dominance (ELD) and homoeologue expression bias (HEB) in liver tissue. The results showed that polyploidization contributed to the conversion of homoeologue ELD. In addition, hybridization had more effect on the change in HEB than polyploidization, while polyploidization had more effect on the change of global gene expression than hybridization. Meanwhile, similar expression patterns were found in growth-related genes. The results suggested that hybridization and polyploidization result in differential degrees of maternal HEB in three tissues (liver, muscle and ovary) tested. The results of this study will increase our understanding of the underlying regulation mechanism of rapid growth in diploid hybrids and allotetraploids. The differential degrees of global expression and homoeologue expression contribute to growth heterosis in newly formed hybrids, ensuring the on-going success of allotetraploid speciation.
机译:杂交和多倍体化被认为是形成新的表观遗传学规律的重要驱动力。为了研究伴随杂交和多倍体化的表达变化模式,我们使用RNA-seq和qRT-PCR研究了assi鱼红变种二倍体和四倍体杂种的整体表达和同系物表达。 (♀)(R)和鲤(Cyprinus carpio)(C)。通过比较杂种及其亲本之间的相对表达水平,我们定义了肝脏组织中的表达水平优势(ELD)和同系物表达偏倚(HEB)。结果表明,多倍化促进了同源ELD的转化。此外,杂交对HEB的改变比多倍化影响更大,而多倍化比杂交对整体基因表达的改变影响更大。同时,在生长相关基因中发现了相似的表达模式。结果表明,杂交和多倍体化导致母体HEB在所测试的三个组织(肝脏,肌肉和卵巢)中程度不同。这项研究的结果将增加我们对二倍体杂种和异源四倍体快速生长的潜在调控机制的了解。整体表达和同系物表达的不同程度促进了新形成的杂种的生长杂种优势,确保了异源四倍体物种形成的持续成功。

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