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草履虫内共生体建立的遗传基础。

Genetic basis for the establishment of endosymbiosis in Paramecium.

机构信息

Savaid Medical School, University of Chinese Academy of Sciences, Beijing, 100049, China.

Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

ISME J. 2019 May;13(5):1360-1369. doi: 10.1038/s41396-018-0341-4. Epub 2019 Jan 15.

Abstract

The single-celled ciliate Paramecium bursaria is an indispensable model for investigating endosymbiosis between protists and green-algal symbionts. To elucidate the mechanism of this type of endosymbiosis, we combined PacBio and Illumina sequencing to assemble a high-quality and near-complete macronuclear genome of P. bursaria. The genomic characteristics and phylogenetic analyses indicate that P. bursaria is the basal clade of the Paramecium genus. Through comparative genomic analyses with its close relatives, we found that P. bursaria encodes more genes related to nitrogen metabolism and mineral absorption, but encodes fewer genes involved in oxygen binding and N-glycan biosynthesis. A comparison of the transcriptomic profiles between P. bursaria with and without endosymbiotic Chlorella showed differential expression of a wide range of metabolic genes. We selected 32 most differentially expressed genes to perform RNA interference experiment in P. bursaria, and found that P. bursaria can regulate the abundance of their symbionts through glutamine supply. This study provides novel insights into Paramecium evolution and will extend our knowledge of the molecular mechanism for the induction of endosymbiosis between P. bursaria and green algae.

摘要

单细胞纤毛虫 Paramecium bursaria 是研究原生动物和绿藻共生体之间内共生的不可或缺的模型。为了阐明这种内共生的机制,我们结合 PacBio 和 Illumina 测序来组装 P. bursaria 的高质量且近乎完整的大核基因组。基因组特征和系统发育分析表明,P. bursaria 是 Paramecium 属的基干分支。通过与近亲的比较基因组分析,我们发现 P. bursaria 编码更多与氮代谢和矿物质吸收相关的基因,但编码更少与氧结合和 N-聚糖生物合成相关的基因。对具有和不具有内共生 Chlorella 的 P. bursaria 的转录组图谱进行比较,显示出广泛的代谢基因的差异表达。我们选择了 32 个差异表达最显著的基因,在 P. bursaria 中进行 RNA 干扰实验,发现 P. bursaria 可以通过供应谷氨酰胺来调节其共生体的丰度。这项研究为 Paramecium 的进化提供了新的见解,并将扩展我们对内共生诱导的分子机制的认识,这涉及 P. bursaria 和绿藻之间的内共生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/451c/6474222/942d3f4b8206/41396_2018_341_Fig1_HTML.jpg

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