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Temperature and Symbiodinium physiology affect the establishment and development of symbiosis in corals

机译:温度和共生素生理影响珊瑚共生的建立和发展

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摘要

Symbiotic associations are ubiquitous in nature. In fact, all eukaryotic species harbour microbial symbionts that are essential for their health. Often overlooked, symbiosis is an important factor when predicting how organisms might respond to climate change. Some associations are so tight-knit that rapid changes in the environment can lead to extinction of one or both partners. Alternatively, the ability to switch to more stress-tolerant partners can allow for rapid adjustment to environmental change, such as increases in host range size. Here, we outline a mechanism by which symbiotic species that acquire their symbionts anew each generation might adapt to global warming via transgenerational, environmentally mediated changes in host-symbiont partnerships. At temperatures approximating climate change conditions at the end of the century, the larvae of 2 common scleractinian corals established symbiosis with a novel and more thermo-tolerant symbiont. Conversely, the establishment of symbiosis with heat-sensitive symbionts was greatly reduced. Transgenerational change in symbionts is a mechanism by which organisms that engage in flexible mutualistic relationships can rapidly adjust to a changing climate.
机译:共生协会在自然界无处不在。实际上,所有真核生物都具有对其健康至关重要的微生物共生体。在预测生物体对气候变化的反应方式时,共生常常被忽视,是一个重要因素。一些协会关系紧密,以至于环境的迅速变化可能导致一个或两个伴侣的灭绝。或者,切换到更具耐性的伙伴的能力可以允许快速适应环境变化,例如增加宿主范围。在这里,我们概述了一种机制,通过这种机制,每代新获得共生菌的共生物种可通过宿主-共生菌伙伴关系中的跨代,环境介导的变化来适应全球变暖。在本世纪末,在接近气候变化条件的温度下,两种常见的巩膜珊瑚的幼虫建立了一种新的,更耐高温的共生生物。相反,大大减少了与热敏共生体共生的建立。共生体的跨世代变化是一种机制,通过这种机制,参与灵活的相互关系的生物可以迅速适应气候变化。

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