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Nitrogen-Fixing Nodules Are an Important Source of Reduced Sulfur Which Triggers Global Changes in Sulfur Metabolism in Lotus japonicus

机译:固氮结核是硫减少的重要来源这会触发莲花中硫代谢的全球变化。

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摘要

We combined transcriptomic and biochemical approaches to study rhizobial and plant sulfur (S) metabolism in nitrogen (N) fixing nodules (Fix+) of Lotus japonicus, as well as the link of S-metabolism to symbiotic nitrogen fixation and the effect of nodules on whole-plant S-partitioning and metabolism. Our data reveal that N-fixing nodules are thiol-rich organs. Their high adenosine 5′-phosphosulfate reductase activity and strong 35S-flux into cysteine and its metabolites, in combination with the transcriptional upregulation of several rhizobial and plant genes involved in S-assimilation, highlight the function of nodules as an important site of S-assimilation. The higher thiol content observed in nonsymbiotic organs of N-fixing plants in comparison to uninoculated plants could not be attributed to local biosynthesis, indicating that nodules are an important source of reduced S for the plant, which triggers whole-plant reprogramming of S-metabolism. Enhanced thiol biosynthesis in nodules and their impact on the whole-plant S-economy are dampened in plants nodulated by Fix mutant rhizobia, which in most respects metabolically resemble uninoculated plants, indicating a strong interdependency between N-fixation and S-assimilation.
机译:我们结合转录组学和生化方法,研究了莲花的固氮根瘤(Fix + )中的根瘤菌和植物硫(S)代谢,以及S代谢与共生氮的联系固定和根瘤对全植物S分配和代谢的影响。我们的数据表明,固氮结节是富含硫醇的器官。它们具有很高的腺苷5'-磷酸硫酸还原酶活性和强至半胱氨酸及其代谢产物的 35 S-通量,并与参与S同化作用的几个根瘤菌和植物基因的转录上调相结合,突显了它们的功能。结节是S同化的重要场所。与未接种的植物相比,在固氮植物的非共生器官中观察到的更高的硫醇含量不能归因于局部生物合成,这表明结核是植物减少的S的重要来源,这触发了整株植物对S代谢的重新编程。 。在Fix -突变根瘤菌根瘤的植株中,结节中增强的硫醇生物合成及其对整个植物S经济的影响被减弱,该突变根瘤菌在大多数方面在代谢上类似于未接种的植株,表明N-之间有很强的相互依赖性。固定和S同化。

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