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首页> 外文期刊>Harmful Algae >Abundance of the benthic dinoflagellate Prorocentrum and the diversity, distribution, and diarrhetic shellfish toxin production of Prorocentrum lima complex and P. caipirignum in Japan
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Abundance of the benthic dinoflagellate Prorocentrum and the diversity, distribution, and diarrhetic shellfish toxin production of Prorocentrum lima complex and P. caipirignum in Japan

机译:Benthic Dinoflagellate rgorocentrum的丰富度和多样性,分布和腹泻贝类毒素生产鼠泊兰氏菌利马复合物和日本P.Caipirignum

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摘要

In the present study, the abundance of Prorocentrum and the molecular phylogeny, distribution, and DST production of P. lima complex and P. caipirignum in Japan were investigated. First, the cell densities of Prorocentrum were assessed from the temperate to subtropical zones in Japan between 2014 and 2018. The cell density in the subtropical zone [19.0 +/- 40.2 cells/g wet weight (ww) algae] was significantly higher than that in the temperate zone (1.4 +/- 3.4 cells/g ww algae). A total of 244 clonal strains were established from the temperate and subtropical zones. Phylogenetic analyses based on the large-subunit ribosomal DNA D1/D2 revealed that the strains were separated into four species/species complex/phylotypes (P. lima complex, P. caipirignum, and new phylotypes Prorocentrum spp. types 1 and 2). The strains of P. lima complex could be separated into two clades (1 and 3). Furthermore, the strains of clades 1 and 3 could be separated into nine subclades (1a, 1c, 1d, 1e, 1f, 1g, 1h, 1i, and 1j) and three subclades (3a, 3b, and 3c), respectively. The strains of P. caipirignum were separated into two subclades (b and e). Each phylotype/subclade showed a unique distribution pattern in Japan: P. lima complex subclades 1a, 1c, and 3a and P. caipirignum subclades b and e were widespread from the temperate to subtropical zones. On the other hand, P. lima complex subclades 1e and 1i were restricted to the temperate zone, and P. lima complex subclades 1d, 1f, 1g, 1h, 1j, 3b, and 3c and Prorocentrum spp. types 1 and 2 were restricted to the subtropical zone. Furthermore, the DST production of the 243 clonal strains was assessed by LC/MS/MS analysis. The results revealed that all strains produced okadaic acid (OA) and that the OA contents of P. lima complex subclades 1d and 1f, P. caipirignum subclades b and e, and Prorocentrum sp. type 2 tended to be higher than those of the other subclades. While P. lima complex subclades 1a, 1e, 1f, and 1i produced DTX1, the other phylotype/subclades produced either no or low quantities of DTX1. A strain of P. lima complex subclade 1e showed the highest OA and DTX1 contents (55.27 and 70.73 pg/cell, respectively) in the world. These results suggest that there are potential risks for DST accumulation in benthic animals in Japan.
机译:在本研究中,对日本的P.IMIMA复合物和P.Caipirignum的分子系统和分子系统和DST产生的丰度和分子系统发育,分布和DST生产。首先,从2014年和2018年间从温带到亚热带的温带到亚热带的细胞密度。亚热带区域的细胞密度[19.0 +/- 40.2细胞/ g湿重(ww)藻类]显着高于此在温带区(1.4 +/- 3.4个细胞/ g WW藻类)。从温带和亚热带区域建立了总共244个克隆菌株。基于大亚基核糖体DNA dNA dn / d2的系统发育分析表明,菌株分离成四种/物种复合物/种植型(P.IMINA络合物,P.CaIpirgignum和新的Phylotypes Prorocentrum SPP。类型1和2)。 P.IMAMA复合物的菌株可以分成两种片状(1和3)。此外,片状1和3的菌株可以分别分成九个亚片(1A,1C,1D,1E,1F,1G,1H,1I和1J)和三个亚基(3A,3B和3C)。 P.Caipirignum的菌株分成两个亚基点(B和E)。每种植物/亚周/亚克拉德在日本展示了独特的分布模式:P.IMAMA复杂的亚克拉氏1A,1C和3A和P.CaiPirignum亚克B和E广泛地从温带到亚热带区域。另一方面,P.IMAMAC复杂的亚克拉片1E和1I限制在温带区,P.IMAMA复合亚克拉氏1d,1f,1g,1h,1j,3b和3c和prorocentrum spp。类型1和2限制在亚热带区域。此外,通过LC / MS / MS分析评估243克隆菌株的DST产生。结果表明,所有菌株都产生了冈田酸(OA),并且P.IMIMA复合亚克拉氏亚的OA含量为1D和1F,P.CaIpirgignum亚克拉B和E,以及Prorocentrum sp。 2型倾向于高于其他亚克士。虽然P.IMIMA复杂的亚洲1A,1E,1F和1I产生DTX1,但是除了DTX1的其他语型/亚基的其他语型/亚基。 Lima复合亚亚菌株1e的菌株显示了世界上最高的OA和DTX1含量(分别在世界上分别为55.27和70.73页)。这些结果表明,日本底栖动物的DST积累存在潜在风险。

著录项

  • 来源
    《Harmful Algae 》 |2020年第6期| 101687.1-101687.17| 共17页
  • 作者单位

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan|Cawthron Inst 98 Halifax St East Nelson 7010 New Zealand;

    Japan Fisheries Res & Educ Agcy Natl Res Inst Fisheries Sci NRIFS 2-12-4 Fukuura Yokohama Kanagawa 2368648 Japan;

    Japan Fisheries Res & Educ Agcy Natl Res Inst Fisheries Sci NRIFS 2-12-4 Fukuura Yokohama Kanagawa 2368648 Japan;

    Japan Fisheries Res & Educ Agcy Natl Res Inst Fisheries Sci NRIFS 2-12-4 Fukuura Yokohama Kanagawa 2368648 Japan;

    Japan Fisheries Res & Educ Agcy Natl Res Inst Fisheries Sci NRIFS 2-12-4 Fukuura Yokohama Kanagawa 2368648 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan|Ehime Univ United Grad Sch Agr Sci 3-5-7 Tarumi Matsuyama Ehime 7908566 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan|Kochi Prefectural Sukumo Fisheries Guidance Stn Kochi 7880265 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan|Okayama Prefectural Govt Fisheries Promot Div Kita Ku 2-4-6 Uchisange Okayama Okayama 7008570 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

    Kochi Univ Usa Marine Biol Inst 194 Inoshiri Kochi 7811164 Japan;

    INO 228 Koja Okinawa City Okinawa 9042161 Japan;

    Kochi Univ Fac Agr & Marine Sci Lab Aquat Environm Sci LAQUES Nanko Ku 200 Otsu Kochi 7838502 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Dinoflagellate; Dinophysistoxin-1; Okadaic acid; Phylogeny; Prorocentrum caipirignum; Prorocentrum lima complex;

    机译:Dinoflagellate;inophysistoxin-1;冈田酸;系统发生;prorocentrum caipirignum;prorocentrum利马复合物;

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