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首页> 外文期刊>Science Advances >Heat-evolved microalgal symbionts increase coral bleaching tolerance
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Heat-evolved microalgal symbionts increase coral bleaching tolerance

机译:热进化的微藻共生增加珊瑚漂白耐受性

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Coral reefs worldwide are suffering mass mortalities from marine heat waves. With the aim of enhancing coral bleaching tolerance, we evolved 10 clonal strains of a common coral microalgal endosymbiont at elevated temperatures (31°C) for 4 years in the laboratory. All 10 heat-evolved strains had expanded their thermal tolerance in vitro following laboratory evolution. After reintroduction into coral host larvae, 3 of the 10 heat-evolved endosymbionts also increased the holobionts’ bleaching tolerance. Although lower levels of secreted reactive oxygen species (ROS) accompanied thermal tolerance of the heat-evolved algae, reduced ROS secretion alone did not predict thermal tolerance in symbiosis. The more tolerant symbiosis exhibited additional higher constitutive expression of algal carbon fixation genes and coral heat tolerance genes. These findings demonstrate that coral stock with enhanced climate resilience can be developed through ex hospite laboratory evolution of their microalgal endosymbionts.
机译:全球珊瑚礁是海洋热浪的大规模死亡。旨在提高珊瑚漂白耐受性,我们在实验室中升高的温度(31°C)在升高的温度(31°C)下演化了10个克隆菌株。所有10个热进化菌株在实验室演化之后扩大了它们的热耐受性。重新引入珊瑚宿主幼虫后,10个热进化的末体的3个也增加了血液漂白耐受性。尽管较低水平的分泌的反应性氧(ROS)伴有热进化藻类的热耐受性,但单独降低ROS分泌并未预测共生中的热耐受性。更耐受的共生症表现出含有藻类碳固定基因和珊瑚耐热基因的额外较高的组成型表达。这些研究结果表明,通过其微观的内酯的实验室演化,可以通过excenite实验室演变来开发具有增强的气候弹性的珊瑚股。

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