首页> 外文期刊>Evolution: International Journal of Organic Evolution >Endosymbiotic Calcifying Bacteria: A New Cue To The Origin Of Calcification In Metazoa?
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Endosymbiotic Calcifying Bacteria: A New Cue To The Origin Of Calcification In Metazoa?

机译:内共生钙化细菌:后生动物钙化起源的新线索吗?

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Sponges show the highest diversity of associated bacteria among marine invertebrates. Immunological evidence traces the origin of the sponge bacterial symbioses to the Precambrian era. Hence, sponges appear to be ideally suited for studying the evolutionary origins of prokaryote-metazoan associations. Sponges produce either calcareous or siliceous skeletons, which only coexist in a relict group of demosponges, the sclerosponges. We report here, for the first time, intensive calcification in nonsclerosponge siliceous demosponges. Calcification is mediated by endosymbiotic bacteria (calcibacteria) located in archeocyte-like sponge cells. These calcibacteria are devoid of bacterial walls and divide within sponge cells until they became surrounded by a calcitic sheet, being subsequently extruded to the sponge subectosomal (subepithelial) zone. Thousands of bacteria-produced calcitic spherules cover the surface of the host sponges, forming a cortex-like structure that mimics a rudimentary peripheral skeleton. Calcibacteria are vertically transferred to the sponge larvae during embryogenesis. Calcium detoxification may have generated this symbiotic association, with some additional benefits for the sponges, such as skeletal formation and deterrence from predation. This unique symbiosis holds implications for sponge biology and may advance discussions on the role of bacteria in early biocalcification processes in metazoans. No Claim to original U.S. government works.
机译:海绵显示海洋无脊椎动物中相关细菌的多样性最高。免疫学证据可追溯海绵细菌共生的起源到前寒武纪。因此,海绵似乎非常适合于研究原核生物-间偶氮协会的进化起源。海绵产生钙质或硅质骨骼,它们仅共存于残s毛的海绵毛群中。我们在这里首次报告了非硬海绵硅质海绵的密集钙化。钙化作用是由位于原始细胞样海绵细胞中的内共生细菌(钙细菌)介导的。这些钙化细菌没有细菌壁,并在海绵细胞内分裂,直到它们被钙质薄片包围,随后被挤出至海绵亚胚层(管状)区域。成千上万的细菌产生的钙小球覆盖在宿主海绵的表面,形成了模仿原始外围骨骼的皮质状结构。钙细菌在胚胎发生过程中垂直转移到海绵幼虫。钙解毒可能已经产生了这种共生关系,并为海绵带来了一些其他好处,例如骨骼的形成和捕食的威慑作用。这种独特的共生关系对海绵生物学具有重要意义,并可能推动关于细菌在后生动物早期生物钙化过程中作用的讨论。不要求美国政府原创作品。

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