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不同的骨骼蛋白工具包在热带珊瑚 Stylophora pistillata 和温带珊瑚 Oculina patagonica 中实现了相似的结构和性能。

Different skeletal protein toolkits achieve similar structure and performance in the tropical coral Stylophora pistillata and the temperate Oculina patagonica.

机构信息

Department of Marine Biology, Leon H. Charney School of Marine Sciences, University of Haifa, Mount Carmel, 3498838, Haifa, Israel.

Department of Chemistry "Giacomo Ciamician", University of Bologna, Via F. Selmi 2, 40126, Bologna, Italy.

出版信息

Sci Rep. 2022 Oct 4;12(1):16575. doi: 10.1038/s41598-022-20744-0.

Abstract

Stony corals (order: Scleractinia) differ in growth form and structure. While stony corals have gained the ability to form their aragonite skeleton once in their evolution, the suite of proteins involved in skeletogenesis is different for different coral species. This led to the conclusion that the organic portion of their skeleton can undergo rapid evolutionary changes by independently evolving new biomineralization-related proteins. Here, we used liquid chromatography-tandem mass spectrometry to sequence skeletogenic proteins extracted from the encrusting temperate coral Oculina patagonica. We compare it to the previously published skeletal proteome of the branching subtropical corals Stylophora pistillata as both are regarded as highly resilient to environmental changes. We further characterized the skeletal organic matrix (OM) composition of both taxa and tested their effects on the mineral formation using a series of overgrowth experiments on calcite seeds. We found that each species utilizes a different set of proteins containing different amino acid compositions and achieve a different morphology modification capacity on calcite overgrowth. Our results further support the hypothesis that the different coral taxa utilize a species-specific protein set comprised of independent gene co-option to construct their own unique organic matrix framework. While the protein set differs between species, the specific predicted roles of the whole set appear to underline similar functional roles. They include assisting in forming the extracellular matrix, nucleation of the mineral and cell signaling. Nevertheless, the different composition might be the reason for the varying organization of the mineral growth in the presence of a particular skeletal OM, ultimately forming their distinct morphologies.

摘要

石珊瑚(目:Scleractinia)在生长形态和结构上存在差异。虽然石珊瑚在进化过程中获得了一次形成方解石骨骼的能力,但参与骨骼生成的蛋白质在不同的珊瑚物种中是不同的。这导致了一个结论,即它们骨骼的有机部分可以通过独立进化新的生物矿化相关蛋白质而发生快速的进化变化。在这里,我们使用液相色谱-串联质谱法对来自温带附生珊瑚 Oculina patagonica 的骨骼生成蛋白进行测序。我们将其与之前发表的分枝亚热带珊瑚 Stylophora pistillata 的骨骼蛋白质组进行比较,因为这两种珊瑚都被认为对环境变化具有高度的弹性。我们进一步描述了这两个分类群的骨骼有机基质(OM)组成,并使用一系列方解石种子的超生长实验测试了它们对矿物形成的影响。我们发现,每个物种都利用了一组不同的蛋白质,这些蛋白质含有不同的氨基酸组成,并在方解石超生长上具有不同的形态修饰能力。我们的研究结果进一步支持了这样一种假设,即不同的珊瑚物种利用由独立基因共同作用组成的特定物种蛋白质组来构建自己独特的有机基质框架。虽然物种之间的蛋白质组存在差异,但整个蛋白质组的特定预测作用似乎强调了类似的功能作用。它们包括协助形成细胞外基质、矿化核的形成和细胞信号传递。然而,不同的组成可能是在特定的骨骼 OM 存在下矿物生长组织的不同原因,最终形成它们独特的形态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f855/9532382/720c890abd4b/41598_2022_20744_Fig1_HTML.jpg

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