Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Afairs, Shanghai Ocean University, 999 Huchenghuan Road, Shanghai 201306, China.
Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture and Rural Afairs, Shanghai Ocean University, 999 Huchenghuan Road, Shanghai 201306, China.
Int J Biol Macromol. 2023 Dec 31;253(Pt 6):127245. doi: 10.1016/j.ijbiomac.2023.127245. Epub 2023 Oct 4.
Shells and pearls are the products of biomineralization of shellfish after ingesting external mineral ions. Bone morphogenetic proteins (BMPs) play a role in a variety of biological function, and the genes that encode them, are considered important shell-forming genes in mollusks and are associated with shell and pearl formation, embryonic development, and other functions, but bone morphogenetic protein 10 (BMP10) is poorly understood in Hyriopsis cumingii. In this study, we cloned Hc-BMP10 and obtained a 2477 bp full-length sequence encoding 460 amino acids with a conserved TGF-β structural domain. During the embryonic developmental stages, the cleavage stage had the highest expression of Hc-BMP10, followed by juvenile clams; the expression in the mantle gradually decreased with increasing mussel age. A strong signal was detected on epidermal cells on the mantle edge by in situ hybridization. In both the shell notching and inserting operations of the pearl fragment assay, we found that the expression of Hc-BMP10 increased after the above treatments. RNA interference assays showed that the silencing of Hc-BMP10 resulted in a change in the morphology of the prismatic layer and nacreous layer, with the prismatic layer less closely aligned and the disordered aragonite flakes in the nacreous layer. These findings indicate that Hc-BMP10 is involved in the growth and development of H. cumingii, as well as the formation of shells and pearls. Therefore, this study provides some reference for selecting superior species for growth and pearl breeding of H. cumingii at a molecular level and further investigation of the molecular mechanism for biomineralization of Hc-BMP10.
贝壳和珍珠是贝类摄入外部矿物离子后生物矿化的产物。骨形态发生蛋白(BMPs)在多种生物学功能中发挥作用,编码它们的基因被认为是软体动物中重要的成壳基因,与贝壳和珍珠的形成、胚胎发育和其他功能有关,但在三角帆蚌中骨形态发生蛋白 10(BMP10)的了解甚少。在本研究中,我们克隆了 Hc-BMP10,并获得了一个编码 460 个氨基酸的 2477bp 全长序列,具有保守的 TGF-β结构域。在胚胎发育阶段,Hc-BMP10 在卵裂期的表达最高,其次是幼蚌;随着贻贝年龄的增长,外套膜中的表达逐渐减少。原位杂交检测到边缘表皮细胞有强烈的信号。在珍珠片痕和插入操作的贝壳切口实验中,我们发现上述处理后 Hc-BMP10 的表达增加。RNA 干扰实验表明,Hc-BMP10 的沉默导致棱柱层和珍珠层形态发生变化,棱柱层排列不紧密,珍珠层中的文石片排列紊乱。这些发现表明 Hc-BMP10 参与了三角帆蚌的生长和发育,以及贝壳和珍珠的形成。因此,本研究为在分子水平上选择三角帆蚌生长和珍珠养殖的优良品种提供了一些参考,并进一步研究了 Hc-BMP10 的生物矿化分子机制。