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A diverse host thrombospondin-type-1 repeat protein repertoire promotes symbiont colonization during establishment of cnidarian-dinoflagellate symbiosis

机译:在建立CNIDIAN-DINO鞭毛虫共生过程中多样化的宿主血小板反应蛋白1型重复蛋白库可促进共生菌定殖

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摘要

The mutualistic endosymbiosis between cnidarians and dinoflagellates is mediated by complex inter-partner signaling events, where the host cnidarian innate immune system plays a crucial role in recognition and regulation of symbionts. To date, little is known about the diversity of thrombospondin-type-1 repeat (TSR) domain proteins in basal metazoans or their potential role in regulation of cnidarian-dinoflagellate mutualisms. We reveal a large and diverse repertoire of TSR proteins in seven anthozoan species, and show that in the model sea anemone Aiptasia pallida the TSR domain promotes colonization of the host by the symbiotic dinoflagellate Symbiodinium minutum. Blocking TSR domains led to decreased colonization success, while adding exogenous TSRs resulted in a ‘super colonization’. Furthermore, gene expression of TSR proteins was highest at early time-points during symbiosis establishment. Our work characterizes the diversity of cnidarian TSR proteins and provides evidence that these proteins play an important role in the establishment of cnidarian-dinoflagellate symbiosis.>DOI:
机译:刺胞虫和鞭毛虫之间的相互共生共生是由复杂的伙伴间信号传递事件介导的,其中宿主刺胞先天免疫系统在共生体的识别和调节中起着至关重要的作用。迄今为止,人们对基底后生动物中血小板反应蛋白-1型重复序列(TSR)域蛋白的多样性或其在调控刺鼻鞭毛鞭毛虫互生中的潜在作用了解甚少。我们揭示了七种花胶动物中大量和多样的TSR蛋白,并显示在模型海葵Aiptasia pallida中,TSR域通过共生的鞭毛鞭毛藻Symbiodinium minutum促进了宿主的定殖。阻断TSR结构域导致定植成功减少,而添加外源TSR则导致“超级定植”。此外,在共生建立的早期时间点,TSR蛋白的基因表达最高。我们的工作表征了刺孢子虫TSR蛋白的多样性,并提供了证据证明这些蛋白在刺孢子虫-鞭毛虫共生的建立中起着重要作用。> DOI:

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