Dao T Kim, Ferger Kailey, Lambert J David
University of Rochester, Hutchison Hall, River Campus, Rochester, NY, 14627, USA.
University of Rochester, Hutchison Hall, River Campus, Rochester, NY, 14627, USA.
Dev Biol. 2025 Apr;520:1-12. doi: 10.1016/j.ydbio.2024.12.016. Epub 2024 Dec 24.
Mollusc shells are diverse in shape and size. They are created by a shell epithelium which secretes a chitinous periostracum membrane at the growing edge of the shell, and then coordinates biomineral deposition on the underside of this membrane. Although mollusc shells are important for studying the evolution of morphology, the molecular basis of the shell development is poorly understood. In this paper, we investigate genes involved in the shell development of the gastropod mollusc Tritia (previously known as Ilyanassa). We characterize the contributions of the 2d micromere to the shell and other non-shell structures. We identify eight shell-specific genes and five non-shell specific genes by comparing the transcriptomes of wild-type and 2d ablated embryos. Morpholino knockdown of one of the shell-specific genes, ToChitin-binding domain-containing (ToChitin BD), results in shell defects. The chitinous periostracal membranes in ToChitin BD morpholino knockdown embryos lose their well-defined edge and peroxidase gradient.
软体动物的贝壳在形状和大小上多种多样。它们由贝壳上皮细胞形成,该上皮细胞在贝壳的生长边缘分泌一层几丁质的壳皮膜,然后协调生物矿物质在这层膜下方的沉积。尽管软体动物的贝壳对于研究形态学的进化很重要,但贝壳发育的分子基础却知之甚少。在本文中,我们研究了腹足纲软体动物Tritia(以前称为Ilyanassa)贝壳发育过程中涉及的基因。我们描述了2d微裂球对贝壳及其他非贝壳结构的贡献。通过比较野生型和2d消融胚胎的转录组,我们鉴定出八个贝壳特异性基因和五个非贝壳特异性基因。对其中一个贝壳特异性基因,即含To几丁质结合域(ToChitin BD)的基因进行吗啉代敲低,会导致贝壳出现缺陷。在ToChitin BD吗啉代敲低胚胎中,几丁质壳皮膜失去了其清晰的边缘和过氧化物酶梯度。