不同磷酸盐浓度下浮游虫黄藻的转录组比较分析
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李月(1996–),女,硕士研究生,研究方向:浮游生物生理生态学;E-mail:liyuepassion@163.com

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S917

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中国水产科学研究院东海水产研究所基本科研业务费项目(2016T04); 中国水产科学研究院科技创新团队项目(2020TD14).


Comparative analyses on the transcriptome among free-living zooxanthellae under different phosphate concentrations
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    摘要:

    浮游虫黄藻可与共生虫黄藻一起维持珊瑚群落的健康。前期研究表明 1 株营浮游生活的虫黄藻(Symbiodinium sp. ECSFRI081109)在不同磷酸盐浓度培养下的生长速率和碱性磷酸酶活性有所差异。为了解其对不同磷酸盐浓度的响应机制, 本研究利用 RNA?Seq 技术对高磷酸盐初始浓度(35 μmol/L)和低磷酸盐初始浓度(0.15 μmol/L)下不同培养时间(第 0 天、第 5 天和第 10 天)的虫黄藻进行转录组测序并做比较分析。结果显示: 测序组装后获得 80955 个 Unigenes, 其中在 NR、GO、KEGG、eggNOG、SwissProt 以及 Pfam 数据库中共同注释的有 4407 个。对 5 个实验组的转录组数据进行比较分析, 得到 23 个与磷利用相关的差异表达基因, 主要有磷脂酶 A2、磷脂酶 B、磷脂酶 C、 磷脂酶 D、碱性磷酸酶、酸性磷酸酶、无机磷酸盐转运体、Na+ 依赖型磷酸盐转运体、线粒体磷酸盐转运蛋白基因。 根据不同磷酸盐初始浓度培养下上述基因的表达量变化, 推测在低磷环境下, 虫黄藻可通过增强对无机磷酸盐的转运能力及利用磷酸酶分解有机磷以缓解磷胁迫, 从而维持细胞生长。本研究旨为深入了解浮游虫黄藻响应不同磷酸盐浓度的分子调控机制提供基础数据。

    Abstract:

    Free-living zooxanthellae, much like symbiotic zooxanthellae, contribute to maintaining the health of the coral community. Previous studies have shown that Symbiodinium sp., a free-living zooxanthellae, exhibits different responses to various phosphate concentrations in terms of growth and alkaline phosphatase activity. To understand how Symbiodinium sp. responds to dynamic changes in dissolved inorganic phosphorus (DIP), we carried out comparative analyses on the transcriptome of this dinoflagellate under two different initial phosphate concentrations in 0, 5, and 10 d. Initial phosphate concentrations of 0.15 and 35 μmol/L were designed based on the phosphate concentration of an F/2 medium typically used in laboratory culture and a low average phosphate concentration of the East China Sea in recent years, respectively. The de novo assembly results showed that 231 642201 Transcripts and 80955 Unigenes were obtained; a total of 4407 (5.44%) Unigenes were co-annotated in the NR, gene ontology (GO), Kyoto encyclopedia of genes and genomes (KEGG), evolutionary genealogy of genes: non-supervised orthologous groups (eggNOG), SwissProt, and protein families (Pfam) databases. In addition, 27 236 (33.64%) Unigenes had significant matches in the NR database. All Unigenes annotated in the NR database were selected for annotation in the GO database. As such, a total of 23998 (29.64%) Unigenes were mapped into three categories: molecular function, cellular population, and biological process. Among the annotations in the GO database, there were 13 sub-categories of molecular functions, 16 sub-categories of cellular components, and 19 sub-categories of biological processes. The eggNOG functional analysis results showed that 45387 (56.06%) Unigenes were divided into 25 categories according to their functional characteristics. The largest category was post-translational modification, protein turnover and chaperone (3704, 8.16%), followed by signal transduction mechanism (3272, 7.21%), translation, ribosomal structure and biological development (2091, 4.61%), extracellular structure (168, 0.37%), nuclear structure (78, 0.17%), and cell movement (24, 0.05%). To obtain the differentially expressed genes related to phosphorus utilization, transcriptome data from five experimental groups were compared and analyzed. The results suggest that there were three phospholipase A2 genes, two phospholipase B genes, one phospholipase C gene, three phospholipase D genes, two alkaline phosphatase, genes, four acid phosphatase genes, three inorganic phosphate transporter genes, two sodium-dependent phosphate transporter genes, and three mitochondrial phosphate transporter genes that were differentially expressed. According to the genetic expression profile of the differentially expressed genes, it was hypothesized that the free-living Symbiodinium sp. may continue growing under low phosphorus stress by enhancing its ability to transport inorganic phosphate into cells and utilizing organic phosphorus via phosphatase. This study improves the current understanding on the survival mechanism of zooxanthellae in oligotrophic seas. The findings pave an avenue to uncover the molecular regulation mechanism of Symbiodinium sp. in response to different phosphate concentrations.

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李月,王云龙,欧阳珑玲.不同磷酸盐浓度下浮游虫黄藻的转录组比较分析[J].中国水产科学,2022,29(4):585-595
LI Yue, WANG Yunlong, OUYANG Longling. Comparative analyses on the transcriptome among free-living zooxanthellae under different phosphate concentrations[J]. Journal of Fishery Sciences of China,2022,29(4):585-595

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  • 在线发布日期: 2022-04-22
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