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周伟, 张万昌, 周叶, 王小敏, 胡蓓娟, 王军花, 洪一江. 基于转录组的池蝶蚌系统发育及其遗传分析[J]. 水生生物学报, 2021, 45(3): 514-522. DOI: 10.7541/2021.2019.208
引用本文: 周伟, 张万昌, 周叶, 王小敏, 胡蓓娟, 王军花, 洪一江. 基于转录组的池蝶蚌系统发育及其遗传分析[J]. 水生生物学报, 2021, 45(3): 514-522. DOI: 10.7541/2021.2019.208
ZHOU Wei, ZHANG Wan-Chang, ZHOU Ye, WANG Xiao-Min, HU Bei-Juan, WANG Jun-Hua, HONG Yi-Jiang. THE PHYLOGENY AND GENETIC ANALYSIS OF THE HYRIOPSIS SCHLEGELII BASED ON TRANSCRIPTOME[J]. ACTA HYDROBIOLOGICA SINICA, 2021, 45(3): 514-522. DOI: 10.7541/2021.2019.208
Citation: ZHOU Wei, ZHANG Wan-Chang, ZHOU Ye, WANG Xiao-Min, HU Bei-Juan, WANG Jun-Hua, HONG Yi-Jiang. THE PHYLOGENY AND GENETIC ANALYSIS OF THE HYRIOPSIS SCHLEGELII BASED ON TRANSCRIPTOME[J]. ACTA HYDROBIOLOGICA SINICA, 2021, 45(3): 514-522. DOI: 10.7541/2021.2019.208

基于转录组的池蝶蚌系统发育及其遗传分析

THE PHYLOGENY AND GENETIC ANALYSIS OF THE HYRIOPSIS SCHLEGELII BASED ON TRANSCRIPTOME

  • 摘要: 池蝶蚌(Hyriopsis schlegelii)和三角帆蚌(Hyriopsis cumingii)的亲缘关系一直存在争议, 为了更深入地对淡水珠蚌进行系统发育分析, 研究对池蝶蚌及其3个近缘物种三角帆蚌、褶纹冠蚌(Cristaria plicata)和背角无齿蚌(Anodonta woodiana)的转录组进行了比较分析。对它们共有单拷贝同源基因进行多序列联配后计算这4种淡水珠蚌之间的遗传距离, 结果表明池蝶蚌和三角帆蚌的遗传距离只有0.00746(小于1%), 而其他淡水珠蚌之间的遗传距离几乎是它的10倍(平均大于6%)。系统发育分析表明, 小方蚌亚科与无齿蚌亚科大约在5144万年前发生分歧, 而池蝶蚌和三角帆蚌发生分化的时间大约在424万年前。进一步的遗传差异分析鉴定了池蝶蚌转录组中的特有基因, 其中KEGG 通路富集的结果表明这些基因主要富集在免疫细胞膜分子和蛋白消化吸收等通路上。同时, GO注释结果表明有很多特有基因与池蝶蚌的优良性状相关, 如与发育相关的生长发育、系统发育和动物器官发育等生物学过程, 及与免疫相关的免疫系统过程、抗原处理和呈递等生物学过程。以上结果表明, 池蝶蚌和三角帆蚌具有更近的亲缘关系, 它们可能是同一物种的不同亚种或不同种群, 这对淡水珠蚌种质资源的保护和遗传育种具有重要参考意义。此外, 相比于三角帆蚌, 池蝶蚌可能具有一些与生长发育及免疫相关的特有基因, 这为探究相关的分子机制提供了线索。

     

    Abstract: There has been controversy about the genetic relationship between Hyriopsis cumingii and Hyriopsis cumingii. To further analyze the phylogeny of freshwater pearl mussels, we conducted comparative transcriptomic analysis between H. schlegelii and its relatives, including Hyriopsis cumingii, Anodonta woodiana and Cristaria plicata. The genetic distance between the four freshwater pearl mussels was calculated after the multiple sequence alignment (MSA) of the single-copy orthologs their shared. The results showed that the genetic distance between H. schlegelii and H. cumingii was only 0.00746 (<1%), while the genetic distance between other freshwater pearl mussels was almost 10 times bigger. Phylogenetic analysis showed that Ambleminae and Anodontinae diverged approximately 51.44 million years ago (Mya), while H. schlegelii and H. cumingii were divided about 4.24 million years ago. Further analysis identified the specific genes in the transcriptome of H. schlegelii. The enrichment of the KEGG pathway indicated that these genes were mainly enriched in pathways such as CD molecules and protein digestion and absorption. Moreover, GO annotation results showed that there were many specific genes related to H. schlegelii excellent characteristics, including development-related biological processes, such as developmental process, system development, animal organ development, and immune-related biological process, immune system process and antigen processing and presentation in GO classification. The above results showed that H. schlegelii and H. cumingii are closely related, and may be different subspecies or populations, which has important reference significance for the germplasm conservation and genetic breeding of freshwater pearl mussels. In addition, compared with H. cumingii, H. schlegelii may have several specific genes related to development and immunity, which provides some clues for exploring the related molecular mechanism.

     

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