Symmetric subgenomes and balanced homoeolog expression stabilize the establishment of allopolyploidy in cyprinid fish

生物 遗传学 基因组 基因 谱系(遗传) 转座因子 后转座子 基因复制 进化生物学
作者
Li Ren,Xin Gao,Jialin Cui,Chun Zhang,He Ping Dai,Mengxue Luo,Shaofang He,Qinbo Qin,Kaikun Luo,Min Tao,Jun Xiao,Jing Wang,Hong Zhang,Xue-Yin Zhang,Yi Zhou,Jing Wang,Xin Zhao,Guiming Liu,Guo-Liang Wang,Linhe Huo,Shi Wang,Fangzhou Hu,Rurong Zhao,Rong Zhou,Yude Wang,Qinfeng Liu,Xiaojing Yan,Chang Chin Wu,Conghui Yang,Chenchen Tang,Wei Duan,Shaojun Liu
出处
期刊:BMC Biology [BioMed Central]
卷期号:20 (1)
标识
DOI:10.1186/s12915-022-01401-4
摘要

Interspecific postzygotic reproduction isolation results from large genetic divergence between the subgenomes of established hybrids. Polyploidization immediately after hybridization may reset patterns of homologous chromosome pairing and ameliorate deleterious genomic incompatibility between the subgenomes of distinct parental species in plants and animals. However, the observation that polyploidy is less common in vertebrates raises the question of which factors restrict its emergence. Here, we perform analyses of the genome, epigenome, and gene expression in the nascent allotetraploid lineage (2.95 Gb) derived from the intergeneric hybridization of female goldfish (Carassius auratus, 1.49 Gb) and male common carp (Cyprinus carpio, 1.42 Gb), to shed light on the changes leading to the stabilization of hybrids.We firstly identify the two subgenomes derived from the parental lineages of goldfish and common carp. We find variable unequal homoeologous recombination in somatic and germ cells of the intergeneric F1 and allotetraploid (F22 and F24) populations, reflecting high plasticity between the subgenomes, and rapidly varying copy numbers between the homoeolog genes. We also find dynamic changes in transposable elements accompanied by genome merger and duplication in the allotetraploid lineage. Finally, we observe the gradual decreases in cis-regulatory effects and increases in trans-regulatory effects along with the allotetraploidization, which contribute to increases in the symmetrical homoeologous expression in different tissues and developmental stages, especially in early embryogenesis.Our results reveal a series of changes in transposable elements, unequal homoeologous recombination, cis- and trans-regulations (e.g. DNA methylation), and homoeologous expression, suggesting their potential roles in mediating adaptive stabilization of regulatory systems of the nascent allotetraploid lineage. The symmetrical subgenomes and homoeologous expression provide a novel way of balancing genetic incompatibilities, providing a new insight into the early stages of allopolyploidization in vertebrate evolution.

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