State Key Laboratory of Developmental Biology of Freshwater Fish, College of Life Sciences, Hunan Normal University, Changsha 410081, Hunan, P.R. China.
Guangdong Laboratory for Lingnan Modern Agriculture, South China Agricultural University, Guangzhou 510642, Guangdong, P.R. China.
G3 (Bethesda). 2022 Aug 25;12(9). doi: 10.1093/g3journal/jkac197.
The expression of nuclear and mitochondrial genes, as well as their coordinated control, regulates cell proliferation, individual development, and disease in animals. However, the potential coregulation between nuclear and mitochondrial genes is unclear in triploid fishes. The two triploids (R2C and RC2) with distinct mitochondrial genomes but similar nuclear genomes exhibit different embryonic development times and growth rates. They are an excellent model for studying how nuclear and mitochondrial genes coordinate. Here, we performed the mRNA-seq of four stages of embryonic development (blastula, gastrula, segmentation, and hatching periods) in the two triploids (R2C and RC2) and their diploid inbred parents (red crucian carp and common carp). After establishing the four patterns of mitochondrial and nuclear gene expression, 270 nuclear genes regulated by mitochondrial genes were predicted. The expression levels of APC16 and Trim33 were higher in RC2 than in R2C, suggesting their potential effects on regulating embryonic development time. In addition, 308 differentially expressed genes filtered from the list of nuclear-encoded mitochondrial genes described by Mercer et al. in 2011 were considered potential genes for which nuclear genes regulate mitochondrial function. The findings might aid in our understanding of the correlation between mitochondrial and nuclear genomes as well as their synergistic effects on embryonic development.
核基因和线粒体基因的表达及其协调控制调节着动物的细胞增殖、个体发育和疾病。然而,三倍体鱼类中核基因和线粒体基因之间的潜在协同调控尚不清楚。具有不同线粒体基因组但相似核基因组的两个三倍体(R2C 和 RC2)表现出不同的胚胎发育时间和生长速度。它们是研究核基因和线粒体基因如何协调的理想模型。在这里,我们对两个三倍体(R2C 和 RC2)及其二倍体近交亲本(红鲫和鲤鱼)的四个胚胎发育阶段(囊胚期、原肠胚期、分节期和孵化期)进行了 mRNA-seq 分析。在建立了线粒体和核基因表达的四种模式后,预测了 270 个受线粒体基因调控的核基因。在 RC2 中 APC16 和 Trim33 的表达水平高于 R2C,表明它们可能对调节胚胎发育时间有潜在影响。此外,从 Mercer 等人在 2011 年描述的核编码线粒体基因列表中筛选出的 308 个差异表达基因被认为是核基因调节线粒体功能的潜在基因。这些发现可能有助于我们理解线粒体和核基因组之间的相关性以及它们对胚胎发育的协同作用。