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A genomic approach to coral-dinoflagellate symbiosis: studies of Acropora digitifera and Symbiodinium minutum

机译:珊瑚-鞭毛虫共生的一种基因组方法:趾甲和小共生的研究

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摘要

Far more intimate knowledge of scleractinian coral biology is essential in order to understand how diverse coral-symbiont endosymbioses have been established. In particular, molecular and cellular mechanisms enabling the establishment and maintenance of obligate endosymbiosis with photosynthetic dinoflagellates require further clarification. By extension, such understanding may also shed light upon environmental conditions that promote the collapse of this mutualism. Genomic data undergird studies of all symbiotic processes. Here we review recent genomic data derived from the scleractinian coral, Acropora digitifera, and the endosymbiotic dinoflagellate, Symbiodinium minutum. We discuss Acropora genes involved in calcification, embryonic development, innate immunity, apoptosis, autophagy, UV resistance, fluorescence, photoreceptors, circadian clocks, etc. We also detail gene loss in amino acid metabolism that may explain at least part of the Acropora stress-response. Characteristic features of the Symbiodinium genome are also reviewed, focusing on the expansion of certain gene families, the molecular basis for permanently condensed chromatin, unique spliceosomal splicing, and unusual gene arrangement. Salient features of the Symbiodinium plastid and mitochondrial genomes are also illuminated. Although many questions regarding these interdependent genomes remain, we summarize information necessary for future studies of coral-dinoflagellate endosymbiosis.
机译:为了了解如何建立多种多样的珊瑚共生共生体共生共生体,对珊瑚菌生物学的深入了解非常重要。特别是,需要建立和维持光合作用鞭毛鞭毛专性内共生的分子和细胞机制。顺便说一句,这种理解还可以揭示促进这种共生主义崩溃的环境条件。基因组数据是所有共生过程的基础。在这里,我们回顾了最近的基因组数据,这些数据来自于巩膜珊瑚,指腹棘藻和内共生双鞭毛藻(Symbiodinium minutum)。我们讨论了与钙化,胚胎发育,先天免疫,细胞凋亡,自噬,抗紫外线,荧光,光感受器,昼夜节律等有关的Acropora基因。我们还详细说明了氨基酸代谢中的基因损失,这可能解释了Acropora胁迫的至少部分原因-响应。还对Symbiodinium基因组的特征进行了综述,重点关注某些基因家族的扩展,染色质永久浓缩的分子基础,独特的剪接体剪接和异常的基因排列。共生质体和线粒体基因组的显着特征也得到了阐明。尽管仍然存在关于这些相互依赖的基因组的许多问题,但我们总结了珊瑚-鞭毛鞭毛内共生的未来研究所必需的信息。

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