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Ultraviolet sunscreen on the coral reef: From coral to fish.

机译:珊瑚礁上的紫外线防晒霜:从珊瑚到鱼。

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摘要

Mycosporine-like amino acids (MAAs) are UVR-absorbing compounds ubiquitous in the aquatic environment. Metazoans appear to obtain them from their diet or from symbiotic microorganisms. The study of MAAs has been complicated by the lack of commercially available standards. Use of tandem mass spectrometry renders this problem tractable.;My dissertation exploited the availability of previously published MAA fragmentation patterns to identify MAAs in the mucus of the corallivorous territorial butterflyfish, Chaetodon multicinctus.;I next adapted both a powerful HPLC separation procedure and a tandem mass spectrometry technique to not only identify, but also quantify, MAAs in the absence of standards.;With this method I examined MAAs through the trophic chain in C. multicinctus and its coral prey, Pocillopora meandrina, Porites compressa and Porites lobata. Specimens from three depths provided non-overlapping levels of downwelling UVR irradiance to investigate if the four species studied modulated their MAA content with exposure level.;I found that the MAAs present in Chaetodon multicinctus epithelial mucus are different from the MAAs in their diet: some, like mycosporine-glycine, abundant in the coral diet, are not detectable in fish mucus and some, present in the epidermal mucus such as palythene and usujirene, are not found in the diet. These results are consistent with prior research on fish eyes, sea urchins, and pteropods. They suggest the possibility of selective uptake, translocation and transformation of MAAs by metazoan consumer organisms. The details of these processes are unknown.;MAA concentrations in the three coral species decreased with increasing depth and the associated UVR reduction. This pattern was, however, not observed in the fish probably due to a ceiling effect. A model is proposed to illustrate this possibility. The corals also showed an interesting difference in MAAs diversity perhaps due to differences in their Symbiodinium: Porites spp. known to have low diversity of symbionts also had a low diversity of MAAs compared to Pocillopora meandrina that harbors a greater diversity of zooxanthellae.;My work also resulted in the addition of several MS2 patterns useful for identification. Further, the discovery of up to four new MAAs suggests the value of continuing to investigate these intriguing metabolites.
机译:霉菌素样氨基酸(MAAs)是在水生环境中普遍存在的吸收UVR的化合物。后生动物似乎是通过饮食或共生微生物获得的。由于缺乏可商购的标准,对MAA的研究变得很复杂。串联质谱法的使用使这个问题易于解决。;我的论文利用了以前发表的MAA片段化模式的可用性,以鉴定珊瑚食性蝴蝶鱼Chaetodon multicinctus的粘液中的MAA。质谱技术不仅可以在没有标准的情况下识别MAA,而且可以定量分析MAA。通过这种方法,我通过多环梭菌及其珊瑚猎物Pocillopora meandrina,Porites compressa和Porites lobata的营养链研究了MAA。来自三个深度的标本提供了向下UVR辐照度的不重叠水平,以研究所研究的四个物种是否随暴露水平调节其MAA含量。我发现Chaetodon multicinctus上皮粘液中存在的MAA与饮食中的MAA不同:例如,在珊瑚的饮食中富含霉菌素-甘氨酸,在鱼的粘液中是无法检测到的,在饮食中没有发现一些存在于表皮粘液中的诸如pa和usujirene。这些结果与先前对鱼眼,海胆和翼足类动物的研究一致。他们提出了后生消费生物选择性吸收,转运和转化MAA的可能性。这些过程的细节是未知的。三种珊瑚物种中的MAA浓度随深度增加和相关的UVR降低而降低。但是,由于天花板效应,在鱼中未观察到这种模式。提出了一个模型来说明这种可能性。珊瑚还显示出MAA多样性有趣的差异,这可能是由于其共生素:Porites spp。与共生黄藻的多样性更高的Pocillopora meandrina相比,已知具有低共生体多样性的MAA也具有较低的多样性。我的工作还导致添加了几种可用于鉴定的MS2模式。此外,多达四个新的MAA的发现表明继续研究这些有趣的代谢物的价值。

著录项

  • 作者

    Kandel, Frederique L. M.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Biology Zoology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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