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利用基质辅助激光解吸电离飞行时间质谱(MALDI-ToF MS)对子弹形管水母(双栉水母科)进行新型鉴别尝试。

Novel attempt at discrimination of a bullet-shaped siphonophore (Family Diphyidae) using matrix-assisted laser desorption/ionization time of flight mass spectrometry (MALDI-ToF MS).

机构信息

Laboratory of Biodiversity, Department of Life Science, Hanyang University, Seoul, 04763, South Korea.

Big Data Biology Lab, Department of Life Science, Chung-Ang University, Seoul, 06974, South Korea.

出版信息

Sci Rep. 2021 Sep 24;11(1):19077. doi: 10.1038/s41598-021-98724-z.

Abstract

One major difficulty in identifying the gelatinous bodied bullet-shaped Siphonophore, Diphyids, is that their shape is deformed following ethanol fixation. Ethanol often is preferred over other fixatives, since samples fixed in ethanol can be used for molecular studies that can supplement morphological findings. To overcome this problem, we obtained protein mass spectra of ten species of Diphyidae found in the waters of the Kuroshio Current (Northwest Pacific and South Coast of South Korea) to test whether MALDI-ToF MS could be used as a methodology for species identification. In addition, a number of morphological characteristics that can be used with ethanol-treated samples was summarized. Concatenated phylogenetic analysis was also performed to determine the phylogenetic relationship by obtaining partial sequences of four genes (mtCOI, 16S rRNA, 18S rRNA, and ITS regions). Based on our integrative analysis, MALDI-ToF MS was evaluated as a potentially fast, inexpensive, and accurate tool for species identification along with conventional morphological and DNA barcoding for Diphyidae.

摘要

鉴定凝胶状梭形水螅水母(双栉水母目)的一个主要困难是,它们的形状在乙醇固定后会变形。由于乙醇固定的样本可用于补充形态学发现的分子研究,因此通常优先选择乙醇而不是其他固定剂。为了克服这个问题,我们获得了在黑潮(西北太平洋和韩国南部沿海)水域发现的十种双栉水母目的蛋白质质谱,以测试 MALDI-TOF MS 是否可用于物种鉴定。此外,还总结了一些可用于乙醇处理样本的形态特征。还通过获得四个基因(mtCOI、16S rRNA、18S rRNA 和 ITS 区)的部分序列进行了连锁进化分析,以确定系统发育关系。基于我们的综合分析,MALDI-TOF MS 被评估为一种潜在的快速、廉价且准确的工具,可与传统的形态学和 DNA 条形码技术一起用于双栉水母目的物种鉴定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc53/8463557/75e998977b7d/41598_2021_98724_Fig2_HTML.jpg

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