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光照和温度变化对墨角藻防御化学的调节作用及其对相关附生细菌的影响

Defence chemistry modulation by light and temperature shifts and the resulting effects on associated epibacteria of Fucus vesiculosus.

作者信息

Saha Mahasweta, Rempt Martin, Stratil Stephanie B, Wahl Martin, Pohnert Georg, Weinberger Florian

机构信息

Department of Benthic Ecology, Helmholtz-Zentrum für Ozeanforschung (GEOMAR), Kiel, Germany.

Institute for Inorganic and Analytical Chemistry Bioorganic Analytics, Friedrich-Schiller-Universität Jena, Jena, Germany.

出版信息

PLoS One. 2014 Oct 31;9(10):e105333. doi: 10.1371/journal.pone.0105333. eCollection 2014.

Abstract

The goals of this study were (1) to investigate whether Fucus vesiculosus regulates the production of its antifouling defence chemicals against epibacteria in response to light limitation and temperature shifts and (2) to investigate if different surface concentrations of defence compounds shape epibacterial communities. F. vesiculosus was incubated in indoor mesocosms at five different temperature conditions (5 to 25°C) and in outdoor mesocosms under six differently reduced sunlight conditions (0 to 100%), respectively. Algal surface concentrations of previously identified antifouling compounds--dimethylsulphopropionate (DMSP), fucoxanthin and proline--were determined and the bacterial community composition was characterized by in-depth sequencing of the 16S-rRNA gene. Altogether, the effect of different treatment levels upon defence compound concentrations was limited. Under all conditions DMSP alone appeared to be sufficiently concentrated to warrant for at least a partial inhibitory action against epibiotic bacteria of F. vesiculosus. In contrast, proline and fucoxanthin rarely reached the necessary concentration ranges for self-contained inhibition. Nonetheless, in both experiments along with the direct influence of temperature and light, all three compounds apparently affected the overall bacterial community composition associated with F. vesiculosus since tendencies for insensitivity towards all three compounds were observed among bacterial taxa that typically dominate those communities. Given that the concentrations of at least one of the compounds (in most cases DMSP) were always high enough to inhibit bacterial settlement, we conclude that the capacity of F. vesiculosus for such defence will hardly be compromised by shading or warming to temperatures up to 25°C.

摘要

本研究的目标是

(1)调查墨角藻是否会响应光照限制和温度变化来调节其针对体表细菌的防污防御化学物质的产生;(2)研究防御化合物的不同表面浓度是否会塑造体表细菌群落。分别在五个不同温度条件(5至25°C)的室内中型生态箱以及六种不同光照减少条件(0至100%)的室外中型生态箱中培养墨角藻。测定了先前鉴定出的防污化合物——二甲基磺基丙酸酯(DMSP)、岩藻黄质和脯氨酸——在藻类表面的浓度,并通过对16S-rRNA基因进行深度测序来表征细菌群落组成。总体而言,不同处理水平对防御化合物浓度的影响有限。在所有条件下,仅DMSP似乎就充分浓缩,足以对墨角藻的体表细菌产生至少部分抑制作用。相比之下,脯氨酸和岩藻黄质很少达到足以产生独立抑制作用的必要浓度范围。尽管如此,在这两个实验中,除了温度和光照的直接影响外,这三种化合物显然都影响了与墨角藻相关的整体细菌群落组成,因为在通常主导这些群落的细菌类群中观察到了对这三种化合物不敏感的趋势。鉴于至少一种化合物(大多数情况下是DMSP)的浓度始终高到足以抑制细菌附着,我们得出结论,在光照减弱或温度升高至25°C的情况下,墨角藻的这种防御能力几乎不会受到损害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bf6/4215838/6527abfd7f58/pone.0105333.g001.jpg

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