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热应激会降低固氮生物对珊瑚共生体氮循环的贡献。

Heat stress reduces the contribution of diazotrophs to coral holobiont nitrogen cycling.

机构信息

Red Sea Research Center, Division of Biological and Environmental Science and Engineering, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

Department of Biology, University of Konstanz, Konstanz, Germany.

出版信息

ISME J. 2022 Apr;16(4):1110-1118. doi: 10.1038/s41396-021-01158-8. Epub 2021 Dec 2.

Abstract

Efficient nutrient cycling in the coral-algal symbiosis requires constant but limited nitrogen availability. Coral-associated diazotrophs, i.e., prokaryotes capable of fixing dinitrogen, may thus support productivity in a stable coral-algal symbiosis but could contribute to its breakdown when overstimulated. However, the effects of environmental conditions on diazotroph communities and their interaction with other members of the coral holobiont remain poorly understood. Here we assessed the effects of heat stress on diazotroph diversity and their contribution to holobiont nutrient cycling in the reef-building coral Stylophora pistillata from the central Red Sea. In a stable symbiotic state, we found that nitrogen fixation by coral-associated diazotrophs constitutes a source of nitrogen to the algal symbionts. Heat stress caused an increase in nitrogen fixation concomitant with a change in diazotroph communities. Yet, this additional fixed nitrogen was not assimilated by the coral tissue or the algal symbionts. We conclude that although diazotrophs may support coral holobiont functioning under low nitrogen availability, altered nutrient cycling during heat stress abates the dependence of the coral host and its algal symbionts on diazotroph-derived nitrogen. Consequently, the role of nitrogen fixation in the coral holobiont is strongly dependent on its nutritional status and varies dynamically with environmental conditions.

摘要

在珊瑚-藻类共生体中,有效的养分循环需要持续但有限的氮供应。因此,与珊瑚相关的固氮生物,即能够固定二氮的原核生物,可能会支持稳定的珊瑚-藻类共生体的生产力,但在受到过度刺激时也可能导致其崩溃。然而,环境条件对固氮生物群落的影响及其与珊瑚共生体其他成员的相互作用仍知之甚少。在这里,我们评估了热应激对造礁珊瑚石珊瑚(Stylophora pistillata)中固氮生物多样性及其对共生体养分循环的影响,该珊瑚来自红海中部。在稳定的共生状态下,我们发现珊瑚相关的固氮生物的氮固定为藻类共生体提供了氮源。热应激导致氮固定增加,同时固氮生物群落发生变化。然而,这种额外的固定氮并没有被珊瑚组织或藻类共生体吸收。我们的结论是,尽管固氮生物可能在低氮供应下支持珊瑚共生体的功能,但热应激期间养分循环的改变削弱了珊瑚宿主及其藻类共生体对固氮生物衍生氮的依赖。因此,氮固定在珊瑚共生体中的作用强烈依赖于其营养状况,并随环境条件动态变化。

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