Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai 201306, China.
Shanghai Collaborative Innovation Center of Aquatic Animal Breeding and Green Aquaculture, Shanghai Ocean University, Shanghai 201306, China.
BMC Genom Data. 2022 Sep 9;23(1):71. doi: 10.1186/s12863-022-01085-3.
Protein kinase C (PKC) is a multifunctional serine and PKC can phosphorylate serine residues in the cytoplasmic domain of tyrosinase, thereby regulating the activity of tyrosinase. Activated PKC is bound to the melanosome membrane, and unactivated PKC is free in the cytoplasm of melanocytes. In this study, we study the role of PKC gene in the melanin synthesis pathway and its effect on the color of the nacre of H. cumingii.
In this study, a HcPKC gene in H. cumingii was cloned and its effects on melanin synthesis and nacre color were studied. HcPKC was expressed in both purple and white mussels, and the level of mRNA expression was higher in the purple mussels than in white mussels. Strong and specific mRNA signals were detected in the dorsal epithelial cells of the mantle pallial layer, indicating that HcPKC may be involved in nacre formation. After SNP association with inner shell color related traits, according to the principle that 0.25 < PIC < 0.5 is medium polymorphism and PIC < 0.25 is low polymorphism, the A + 332G site on the HcPKC gene was a site of moderate polymorphism, and the other four sites were low polymorphism sex sites. There was strong linkage disequilibrium among the five loci. A haplotype was constructed and it was found that the frequency of T1 (AGGAA)in the white population was significantly higher than that in the purple population (P < 0.05).
The study found that HcPKC of H. cumingii can be used as a candidate gene related to inner shell color, and some of the SNP sites can be used for molecular-assisted breeding in the spinnaker mussel, providing a reference for cultivating high-quality freshwater pearls.
蛋白激酶 C(PKC)是一种多功能丝氨酸,PKC 可以磷酸化酪氨酸的细胞质结构域中的丝氨酸残基,从而调节酪氨酸酶的活性。激活的 PKC 与黑色素体膜结合,未激活的 PKC 则在黑色素细胞的细胞质中自由存在。在本研究中,我们研究了 PKC 基因在黑色素合成途径中的作用及其对 H. cumingii 珍珠母颜色的影响。
本研究克隆了 H. cumingii 中的 HcPKC 基因,并研究了其对黑色素合成和珍珠母颜色的影响。HcPKC 在紫色和白色贻贝中均有表达,且在紫色贻贝中的 mRNA 表达水平高于白色贻贝。在套膜的背侧上皮细胞中检测到强烈且特异性的 mRNA 信号,表明 HcPKC 可能参与了珍珠母的形成。在与内壳颜色相关性状的 SNP 关联后,根据 0.25<PIC<0.5 为中度多态性,PIC<0.25 为低度多态性的原则,HcPKC 基因上的 A+332G 位点为中度多态性位点,其余四个位点为低度多态性性位点。这五个位点之间存在强烈的连锁不平衡。构建了一个单倍型,发现白色群体中 T1(AGGAA)的频率明显高于紫色群体(P<0.05)。
本研究发现,H. cumingii 的 HcPKC 可作为与内壳颜色相关的候选基因,部分 SNP 位点可用于帆蚌的分子辅助育种,为培育高品质淡水珍珠提供参考。