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Marine-Based Cultivation of Diacarnus Sponges and the Bacterial Community Composition of Wild and Maricultured Sponges and Their Larvae

机译:陆生双齿海绵的养殖以及野生和海水养殖海绵及其幼虫的细菌群落组成

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摘要

Marine organisms including sponges (Porifera) contain many structurally diverse bioactive compounds, frequently in a low concentration that hampers their commercial production. Two solutions to this problem are: culturing sponge explants for harvesting the desired compound and cultivation of sponge-associated bacteria. These bacteria (often considered the source of the desired compounds) include the Actinobacteria, from which many novel drugs were developed. In a long-term experiment (lasting 767 days), we evaluated the culture amenability of the sponge Diacarnus erythraenus in a mariculture system, placed at 10- and 20-m depths. The growth and survival rates of sponge fragments were monitored. Wild and maricultured sponges from both depths and their larvae were sampled at different time intervals for denaturing gradient gel electrophoresis (DGGE) profiling of the bacterial community residing within them. 16S rRNA gene sequences of both cultured bacterial isolates and clone libraries of unculturable bacteria were composed and compared, focusing on Actinobacteria. Sponges from both depths did not differ significantly either in mean growth rates (percent weight change year−1 ± S.E.) (64.5% ± 21% at 10 m and 79.3% ± 19.1% at 20 m) or in seasonal growth rates. Survival was also very similar (72% at 10 m and 70% at 20 m). There were 88 isolates identified from adults and 40 from their larvae. The isolates and clone libraries showed diverse bacterial communities. The DGGE profiles of wild and maricultured sponges differed only slightly, without a significant effect of depths or dates of sampling. This long-term experiment suggests that D. erythraenus probably remained healthy and indicates its mariculture suitability.
机译:包括海绵(Porifera)在内的海洋生物包含许多结构多样的生物活性化合物,这些化合物的浓度通常很低,从而妨碍了其商业生产。解决此问题的两种方法是:培养海绵外植体以收获所需的化合物和培养海绵相关细菌。这些细菌(通常被认为是所需化合物的来源)包括放线菌,由此发展出许多新药。在一项长期实验(历时767天)中,我们评估了放置在10-m和20-m深度的海水养殖系统中海绵杜鹃(Diacarnus erythraenus)的培养适应性。监测海绵碎片的生长和存活率。在不同的时间间隔对两个深度的野生海绵和海水海绵及其幼虫进行采样,以对其中的细菌群落进行变性梯度凝胶电泳(DGGE)分析。组成和比较了培养细菌分离株和不可培养细菌克隆文库的16S rRNA基因序列,重点是放线菌。来自两个深度的海绵在平均增长率(第1年体重变化百分比±SE)(10 m处为64.5%±21%,20 m处为79.3%±19.1%)方面均无显着差异。费率。生存率也非常相似(10 m时为72%,20 m时为70%)。从成年人中鉴定出88株,从其幼虫中鉴定出40株。分离物和克隆文库显示出不同的细菌群落。野生海绵和海水养殖海绵的DGGE曲线仅略有不同,而对采样深度或采样日期没有明显影响。这项长期实验表明,D。erythraenus可能保持健康,并表明其适合海水养殖。

著录项

  • 来源
    《Marine Biotechnology》 |2011年第6期|p.1169-1182|共14页
  • 作者单位

    Department of Zoology, Tel Aviv University, Tel Aviv, 69978, Israel;

    Department of Zoology, Tel Aviv University, Tel Aviv, 69978, Israel;

    Department of Zoology, Tel Aviv University, Tel Aviv, 69978, Israel;

    Institute of Marine and Environmental Technology, University of Maryland Center for Environmental Science, Columbus Center, Suite 236, 701 East Pratt Street, Baltimore, MD, 21202, USA;

    National Center for Mariculture, IOLR, P.O. Box 1212, Eilat, 88212, Israel;

    Institute of Marine and Environmental Technology, University of Maryland Center for Environmental Science, Columbus Center, Suite 236, 701 East Pratt Street, Baltimore, MD, 21202, USA;

    Department of Zoology, Tel Aviv University, Tel Aviv, 69978, Israel;

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

    Diacarnus erythraenus; Red Sea; 16S rRNA gene; Aquaculture; Mariculture; Phylogenetic analysis; Marine natural products;

    机译:杜鹃(Diacarnus erythraenus);红海;16S rRNA基因;水产养殖;混养;系统发育分析;海洋天然产物;

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