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内共生有孔虫中的多样内部共生体群落:热应激下共生体洗牌的影响

Diverse Internal Symbiont Community in the Endosymbiotic Foraminifera : Implications for Symbiont Shuffling Under Thermal Stress.

作者信息

Schmidt Christiane, Morard Raphael, Romero Oscar, Kucera Michal

机构信息

MARUM - Center for Marine Environmental Sciences, University of Bremen, Bremen, Germany.

出版信息

Front Microbiol. 2018 Sep 11;9:2018. doi: 10.3389/fmicb.2018.02018. eCollection 2018.

Abstract

Many shallow-water tropical and subtropical foraminifera engage in photosymbiosis with eukaryotic microalgae. Some of these foraminifera appear to harbor a diverse consortium of endosymbiotic algae within a single host. Such apparent ability to contain different symbionts could facilitate change in symbiont community composition (symbiont shuffling) and mediate the ecological success of the group in a changing environment. However, the discovery of the intra-individual symbiont diversity was thus far based on symbiont culturing, which provides strong constraints on the vitality of the identified algae but provides poor constraints on their initial abundance and thus functional relevance to the host. Here we analyze the algal symbiont diversity in , a benthic foraminifera sampled at four stations, inside and outside of a thermal plume in the eastern Mediterranean coast of Israel. This species has recently invaded the Mediterranean, is unusually thermally tolerant and was described previously to host at least one different diatom symbiont than other symbiont-bearing foraminifera. Our results using genotyping and isolation of algae in culture medium, confirm multiple associations with different diatom species within the same individual. Both methods revealed spatially consistent symbiont associations and identified the most common symbiont as a pelagic diatom In one case, an alternative dominant symbiont, the diatom sp., was detected by genotyping. This diatom was the third most abundant species identified using standard algae culturing method. This method further revealed a spatially consistent pattern in symbiont diversity of a total of seventeen identified diatom species, across the studied localities. Collectively, these results indicate that hosts a diverse consortium of diatom endosymbionts, where different members can become numerically dominant and thus functionally relevant in a changing environment.

摘要

许多浅水热带和亚热带有孔虫与真核微藻进行光合共生。其中一些有孔虫似乎在单个宿主体内拥有多种内共生藻类。这种容纳不同共生体的明显能力可能有助于共生体群落组成的变化(共生体洗牌),并在不断变化的环境中调节该群体的生态成功。然而,迄今为止,个体内共生体多样性的发现是基于共生体培养,这对已鉴定藻类的活力有很强的限制,但对它们的初始丰度以及与宿主的功能相关性限制较差。在这里,我们分析了采自以色列地中海东部海岸热羽流内外四个站点的底栖有孔虫的藻类共生体多样性。该物种最近入侵了地中海,具有异常的耐热性,并且先前被描述为与其他携带共生体的有孔虫相比,宿主至少有一种不同的硅藻共生体。我们使用基因分型和在培养基中分离藻类的结果,证实了同一个体内与不同硅藻物种的多种关联。两种方法都揭示了空间上一致的共生体关联,并确定最常见的共生体是一种浮游硅藻。在一个案例中,通过基因分型检测到一种替代的优势共生体,即硅藻 sp.。这种硅藻是使用标准藻类培养方法鉴定出的第三丰富的物种。该方法进一步揭示了在整个研究地点总共十七种已鉴定的硅藻物种的共生体多样性中存在空间上一致的模式。总体而言,这些结果表明宿主有多种硅藻内共生体,其中不同成员在不断变化的环境中可以在数量上占主导地位,从而在功能上具有相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f24/6141668/a2c18274014d/fmicb-09-02018-g001.jpg

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