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Molecular modularity and asymmetry of the molluscan mantle revealed by a gene expression atlas

机译:基因表达图谱揭示软体动物地幔的分子模块性和不对称性

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Background Conchiferan molluscs construct a biocalcified shell that likely supported much of their evolutionary success. However, beyond broad proteomic and transcriptomic surveys of molluscan shells and the shell-forming mantle tissue, little is known of the spatial and ontogenetic regulation of shell fabrication. In addition, most efforts have been focused on species that deposit nacre, which is at odds with the majority of conchiferan species that fabricate shells using a crossed-lamellar microstructure, sensu lato . Results By combining proteomic and transcriptomic sequencing with in situ hybridization we have identified a suite of gene products associated with the production of the crossed-lamellar shell in Lymnaea stagnalis . With this spatial expression data we are able to generate novel hypotheses of how the adult mantle tissue coordinates the deposition of the calcified shell. These hypotheses include functional roles for unusual and otherwise difficult-to-study proteins such as those containing repetitive low-complexity domains. The spatial expression readouts of shell-forming genes also reveal cryptic patterns of asymmetry and modularity in the shell-forming cells of larvae and adult mantle tissue. Conclusions This molecular modularity of the shell-forming mantle tissue hints at intimate associations between structure, function, and evolvability and may provide an elegant explanation for the evolutionary success of the second largest phylum among the Metazoa.
机译:背景Conchiferan软体动物构建了生物钙化的壳,这很可能支持了它们的许多进化成功。然而,除了软体动物壳和壳形成的地幔组织的广泛的蛋白质组学和转录组学研究以外,对壳制造的空间和个体发育调控知之甚少。此外,大多数努力都集中在沉积珍珠质的物种上,这与大多数使用交叉层状微结构制造贝壳的贝壳杉属物种,即susu lato不一致。结果通过将蛋白质组学和转录组测序与原位杂交相结合,我们确定了一套与胸骨横纹壳产生相关的基因产物。利用这种空间表达数据,我们能够生成关于成年地幔组织如何协调钙化壳沉积的新颖假设。这些假设包括不寻常且难以研究的蛋白质(例如包含重复的低复杂性结构域的蛋白质)的功能作用。壳形成基因的空间表达读数还揭示了幼虫和成年地幔组织的壳形成细胞中不对称和模块性的隐秘模式。结论形成壳的地幔组织的这种分子模块性暗示了结构,功能和演化能力之间的密切联系,并可能为后生动物中第二大门的进化成功提供优雅的解释。

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