State Key Laboratory of Developmental Biology of Freshwater Fish, Hunan Normal University, Changsha, 410081, China.
College of Life Sciences, Hunan Normal University, Changsha, 410081, China.
Sci China Life Sci. 2021 Sep;64(9):1491-1501. doi: 10.1007/s11427-020-1749-9. Epub 2021 Jan 6.
Homoeologous recombination (HR), the exchange of homoeologous chromosomes, contributes to subgenome adaptation to diverse environments by producing various phenotypes. However, the potential relevance of HR and innate immunity is rarely described in triploid cyprinid fish species. In our study, two allotriploid genotypes (RC and RC), whose innate immunity was stronger than their inbred parents (Carassius auratus red var. and Cyprinus carpio L.), were obtained from backcrossing between male allotetraploids of C. auratus red var.×C. carpio L. and females of their two inbred parents, respectively. The work detected 140 HRs shared between the two triploids at the genomic level. Further, transcriptions of 54 homoeologous recombinant genes (HRGs) in RC and 65 HRGs in RC were detected using both Illumina and PacBio data. Finally, by comparing expressed recombinant reads to total expressed reads in each of the genes, a range of 0.1%-10% was observed in most of the 99-193 HRGs, of which six recombinant genes were classified as "response to stimulus". These results not only provide a novel way to predict HRs in allopolyploids based on cross prediction at both genomic and transcriptional levels, but also insight into the potential relationship between HRs related to innate immunity and adaptation of the triploids and allotetraploids.
同源重组(HR),即同源染色体的交换,通过产生各种表型促进亚基因组对不同环境的适应。然而,HR 和先天免疫之间的潜在相关性在三倍体鲤科鱼类中很少被描述。在我们的研究中,通过雄性异源四倍体红鲫×鲤鱼与两个自交亲本(红鲫和鲤鱼)的雌性回交,分别获得了两个异源三倍体基因型(RC 和 RC),它们的先天免疫强于其自交亲本。这项工作在基因组水平上检测到了这两个三倍体之间的 140 个 HR。此外,使用 Illumina 和 PacBio 数据分别检测了 RC 中的 54 个同源重组基因(HRGs)和 RC 中的 65 个 HRGs 的转录。最后,通过比较每个基因中表达的重组读取与总表达读取,在大多数 99-193 个 HRGs 中观察到 0.1%-10%的范围,其中 6 个重组基因被归类为“对刺激的反应”。这些结果不仅为基于基因组和转录水平的交叉预测在异源多倍体中预测 HR 提供了一种新方法,还深入了解了与先天免疫和三倍体和异源四倍体适应相关的 HR 之间的潜在关系。