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Infection dynamics vary between Symbiodinium Types and cell surface treatments during establishment of endosymbiosis with coral larvae

机译:在共生型和珊瑚幼虫共生过程中,感染动力学在共生素类型和细胞表面处理之间有所不同

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摘要

Symbioses between microbes and higher organisms underpin high diversity in many ecosystems, including coral reefs, however mechanisms underlying the early establishment of symbioses remain unclear. Here we examine the roles of Symbiodinium type and cell surface recognition in the establishment of algal endosymbiosis in the reef-building coral, Acropora tenuis. We found 20-70% higher infection success (proportion of larvae infected) and five-fold higher Symbiodinium abundance in larvae exposed to ITS-1 type C1 compared to ITS-1 type D in the first 96 h following exposure. The highest abundance of Symbiodinium within larvae occurred when C1-type cells were treated with enzymes that modified the 40-100 kD glycome, including glycoproteins and long chain starch residues. Our finding of declining densities of Symbiodinium C1 through time in the presence of intact cell surface molecules supports a role for cell surface recognition molecules in controlling post-phagocytosis processes, leading to rejection of some Symbiodinium types in early ontogeny. Reductions in the densities of unmodified C1 symbionts after 96 h, in contrast to increases in D symbionts may suggest the early initiation of a winnowing process contributing to the establishment of Symbiodinium D as the dominant type in one-month old juveniles of A. tenuis.
机译:在包括珊瑚礁在内的许多生态系统中,微生物与高等生物之间的共生关系是高度多样性的基础,但共生关系的早期建立所依据的机制仍不清楚。在这里,我们研究了共生生物类型和细胞表面识别在建立珊瑚礁的珊瑚棘角藻(Acropora tenuis)中的藻类共生中的作用。我们发现,在接触后的最初96小时内,与ITS-1型D相比,接触ITS-1型C1的幼虫的感染成功率(感染幼虫的比例)高20-70%,共生菌素丰度高出五倍。当用修饰40-100 kD糖原的酶(包括糖蛋白和长链淀粉残基)处理C1型细胞时,幼虫中共生菌最高的丰度发生。我们发现完整的细胞表面分子存在时,随着时间的推移,共生菌素C1的密度会下降,这支持了细胞表面识别分子在控制吞噬作用后过程中的作用,导致某些本体生菌素类型在早期个体发育中被排斥。 96小时后未修饰的C1共生体的密度降低,与D共生体的增加相反,可能表明风选过程的早期启动有助于将Symbiodinium D确立为一个月大的A. tenuis少年中的优势类型。

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