日本地球惑星科学連合2021年大会

講演情報

[E] ポスター発表

セッション記号 B (地球生命科学) » B-PT 古生物学・古生態学

[B-PT01] 生物鉱化作用(バイオミネラリゼーション)と古環境プロキシー

2021年6月6日(日) 17:15 〜 18:30 Ch.17

コンビーナ:豊福 高志(国立研究開発法人海洋研究開発機構)、北里 洋(国立大学法人東京海洋大学)、Bijma Jelle(アルフレッドウェゲナー極域海洋研究所)、廣瀬 孝太郎(早稲田大学  大学院創造理工学研究科 地球・環境資源理工学専攻)

17:15 〜 18:30

[BPT01-P01] Ultrafine structure and elemental compositions of Acantharian (Radiolarian) skeleton from Kashiwajima Island, southwestern Shikoku, Japan

*藤井 麻緒1、堀 利栄2、大藤 弘明5、仲村 康秀3、永嶌 真理子4 (1.東京大学大学院農学生命研究科、2.愛媛大学大学院理工学研究科、3.島根大学エスチュアリー研究センター、4.山口大学大学院創成科学研究科、5.東北大学大学院理学研究科)


キーワード:放散虫、アカンタリア、骨格組成

Radiolarians are divided into two major groups based on the chemical composition of shell: the first group, Polycystine, has opal (SiO2 + nH2O) skeleton, preserved from Cambrian to Recent sediments, and the second one possessing celestite (SrSO4) skeleton called Acantharia. Acantharia is one of the unicellular zooplankton taxa including ca. 50 genera and ca. 150 species. Acantharians are distributed in the oceans around the world, especially oligotrophic surface waters. However, the acantarian skeletons do not remain as fossils because they melt in seawater after died. Acantharia show high value in biomass and there are no other planktons that makes SrSO4-skeletons. In this study, we examined of living Acantharian cells from surface seawater of Kuroshio Current off shore Kashiwa-jima Island, Kochi prefecture, Shikoku, Japan, and studied crystalline structure and chemical compositions of skeletons, in order to clarify its biomineralization process, using by TEM, FE-SEM, EDS (at Ehime University) and WDS analyses (at Yamaguchi University), combined with Focused Ion Beam (FIB) method at GRC (Ehime University).

Radiolarians were picked up from the plankton samples obtained from the surface seawater off Kashiwa-jima samples, and separated into 6 types of Acantharian Clade (A, B, C, D, E and F), under a binocular microscope. Skeletons of each Clade were put on the sample plate separately, and cut off by FIB after washed carefully by Milli-Q water. The thin films of Acantharian skeletons, in particular spines, were made and then observed with a field emission-transmission electron microscope to understand the ultrafine structure.

The crystal structure of Acantharian skeleton was confirmed as uniform Celestine minerals, possessing polarity parallel structure. However, we recognized different characters among SEM images of thin section of spines between Clade E&F and Clade D, which are probably concerned to skeletal forming process, also heterogeneous chemical compositions in the section of spines were detected. We will show these precise results of studies on Acantharia as a poster presentation.