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Genomic deletions disrupt nitrogen metabolism pathways of a cyanobacterial diatomsymbiont

机译:基因组缺失破坏了蓝藻硅藻的氮代谢途径共生体

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摘要

Diatoms with symbiotic N2-fixing cyanobacteria are often abundant in the oligotrophic open ocean gyres. The most abundant cyanobacterial symbionts form heterocysts (specialized cells for N2 fixation) and provide nitrogen (N) to their hosts, but their morphology, cellular locations and abundances differ depending on the host. Here we show that the location of the symbiont and its dependency on the host are linked to the evolution of the symbiont genome. The genome of Richelia (found inside the siliceous frustule of Hemiaulus) is reduced and lacks ammonium transporters, nitrateitrite reductases and glutamine:2-oxoglutarate aminotransferase. In contrast, the genome of the closely related Calothrix (found outside the frustule of Chaetoceros) is more similar to those of free-living heterocyst-forming cyanobacteria. The genome of Richelia is an example of metabolic streamlining that has implications for the evolution of N2-fixing symbiosis and potentially for manipulating plant–cyanobacterial interactions.
机译:在贫营养的开放海洋回旋中,具有共生N2固定蓝藻细菌的硅藻通常很多。最为丰富的蓝细菌共生体形成异型囊(用于N2固定的特殊细胞)并向其宿主提供氮(N),但它们的形态,细胞位置和丰度因宿主而异。在这里,我们显示共生体的位置及其对宿主的依赖性与共生体基因组的进化有关。 Richelia的基因组(在Hemiaulus的硅质壳中发现)减少了,并且缺少铵转运蛋白,硝酸盐/亚硝酸盐还原酶和谷氨酰胺:2-氧戊二酸氨基转移酶。相比之下,密切相关的Calothrix(位于Chaetoceros的壳壳外)的基因组与自由生活的形成异囊藻的蓝细菌的基因组更为相似。 Richelia的基因组是代谢精简的一个例子,它对固定N2的共生的进化有潜在影响,并可能影响操纵植物与蓝细菌的相互作用。

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