Key Laboratory of Mariculture, Ministry of Education, Ocean University of China, Qingdao, 266003, China.
Laboratory for Marine Fisheries Science and Food Production Processes, Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266237, China.
Mar Biotechnol (NY). 2023 Apr;25(2):235-246. doi: 10.1007/s10126-023-10197-5. Epub 2023 Jan 19.
Heterosis, also known as hybrid vigor, is widely used in aquaculture, but the molecular causes for this phenomenon remain obscure. Here, we conducted a transcriptome analysis to unveil the gene expression patterns and molecular bases underlying thermo-resistant heterosis in Crassostrea gigas ♀ × Crassostrea angulata ♂ (GA) and C. angulata ♀ × C. gigas ♂ (AG). About 505 million clean reads were obtained, and 38,210 genes were identified, of which 3779 genes were differentially expressed between the reciprocal hybrids and purebreds. The global gene expression levels were toward the C. gigas genome in the reciprocal hybrids. In GA and AG, 95.69% and 92.00% of the differentially expressed genes (DEGs) exhibited a non-additive expression pattern, respectively. We observed all gene expression modes, including additive, partial dominance, high and low dominance, and under- and over-dominance. Of these, 77.52% and 50.00% of the DEGs exhibited under- or over-dominance in GA and AG, respectively. The over-dominance DEGs common to reciprocal hybrids were significantly enriched in protein folding, protein refolding, and intrinsic apoptotic signaling pathway, while the under-dominance DEGs were significantly enriched in cell cycle. As possible candidate genes for thermo-resistant heterosis, GRP78, major egg antigen, BAG, Hsp70, and Hsp27 were over-dominantly expressed, while MCM6 and ANAPC4 were under-dominantly expressed. This study extends our understanding of the thermo-resistant heterosis in oysters.
杂种优势,又称杂交优势,在水产养殖中被广泛应用,但这种现象的分子原因仍不清楚。在这里,我们进行了转录组分析,以揭示长牡蛎♀×无齿厚壳贻贝♂(GA)和无齿厚壳贻贝♀×长牡蛎♂(AG)耐热杂种优势背后的基因表达模式和分子基础。获得了约 5.05 亿个清洁读数,鉴定出 38210 个基因,其中 3779 个基因在正反交杂种和纯种之间差异表达。正反交杂种的整体基因表达水平向长牡蛎基因组靠拢。在 GA 和 AG 中,95.69%和 92.00%的差异表达基因(DEGs)表现出非加性表达模式。我们观察到所有的基因表达模式,包括加性、部分显性、高和低显性以及超显性和超显性。其中,77.52%和 50.00%的 DEGs 在 GA 和 AG 中表现出超显性或超显性,分别。在正反交杂种中共有的超显性 DEGs 显著富集在蛋白质折叠、蛋白质重折叠和内在凋亡信号通路中,而超显性 DEGs 则显著富集在细胞周期中。作为耐热杂种优势的可能候选基因,GRP78、主要卵抗原、BAG、Hsp70 和 Hsp27 呈超显性表达,而 MCM6 和 ANAPC4 呈超显性表达。本研究扩展了我们对牡蛎耐热杂种优势的理解。