Department of Plant Sciences, University of Cambridge, Cambridge, CB2 3EA, UK.
Present Address: Alva Genomics, Otto-Devrient-Strasse 6, 07743, Jena, Germany.
Genome Biol. 2022 May 21;23(1):120. doi: 10.1186/s13059-022-02685-z.
Hybridization is associated with the activation of transposable elements and changes in the patterns of gene expression leading to phenotypic changes. However, the underlying mechanisms are not well understood.
Here, we describe the changes to the gene expression in interspecific Solanum hybrids that are associated with small RNAs derived from endogenous (para)retroviruses (EPRV). There were prominent changes to sRNA profiles in these hybrids involving 22-nt species produced in the DCL2 biogenesis pathway, and the hybridization-induced changes to the gene expression were similar to those in a dcl2 mutant.
These findings indicate that hybridization leads to activation of EPRV, perturbation of small RNA profiles, and, consequently, changes in the gene expression. Such hybridization-induced variation in the gene expression could increase the natural phenotypic variation in natural evolution or in breeding for agriculture.
杂交与转座元件的激活以及基因表达模式的变化相关,从而导致表型变化。然而,其潜在机制尚不清楚。
在这里,我们描述了与内源性(para)逆转录病毒(EPRV)衍生的小 RNA 相关的种间茄属杂种的基因表达变化。这些杂种中的小 RNA 谱发生了明显变化,涉及 DCL2 生物发生途径中产生的 22nt 物种,并且杂交诱导的基因表达变化与 dcl2 突变体相似。
这些发现表明杂交导致 EPRV 的激活、小 RNA 谱的扰动,以及基因表达的改变。这种杂交诱导的基因表达变化可以增加自然进化或农业育种中的自然表型变异。