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首页> 外文期刊>Molecular Plant-Microbe Interactions >Photorespiratory Metabolism and Nodule Function: Behavior of Lotus japonicus Mutants Deficient in Plastid Glutamine Synthetase
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Photorespiratory Metabolism and Nodule Function: Behavior of Lotus japonicus Mutants Deficient in Plastid Glutamine Synthetase

机译:光呼吸代谢和结节功能:缺乏质体谷氨酰胺合成酶的莲花日本突变体的行为。

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Two photorespiratory mutants of Lotus japonicus deficient in plastid glutamine synthetase (GS(2)) were examined for their capacity to establish symbiotic association with Mesorhizobium Ion bacteria. Biosynthetic glutamine synthetase (GS) activity was reduced by around 40% in crude nodule extracts from mutant plants as compared with the wild type (WT). Western blot analysis further confirmed the lack of GS(2) polypeptide in mutant nodules. The decrease in GS activity affected the nodular carbon metabolism under high CO(2) (suppressed photorespiration) conditions, although mutant plants were able to form nodules and fix atmospheric nitrogen. However, when WT and mutant plants were transferred to an ordinary air atmosphere (photorespiratory active conditions) the nodulation process and nitrogen fixation were substantially affected, particularly in mutant plants. The number and fresh weight of mutant nodules as well as acetylene reduction activity showed a strong inhibition compared with WT plants. Optical microscopy studies from mutant plant nodules revealed the anticipated senescence phenotype linked to an important reduction in starch and sucrose levels. These results show that, in Lotus japonicus, photorespiration and, particularly, GS(2) deficiency result in profound limitations in carbon metabolism that affect the nodulation process and nitrogen fixation.
机译:缺乏质体谷氨酰胺合成酶(GS(2))的莲花japonicus的两个光呼吸突变体进行了检查与中生根离子细菌建立共生联系的能力。与野生型(WT)相比,突变植物粗节瘤提取物中的生物合成谷氨酰胺合成酶(GS)活性降低了约40%。免疫印迹分析进一步证实突变结节中缺少GS(2)多肽。 GS活性的降低影响高CO(2)(抑制光呼吸)条件下的结节碳代谢,尽管突变植物能够形成结节并固定大气氮。但是,当将野生型和突变型植物转移到普通空气中(光呼吸活性条件)时,结瘤过程和固氮作用受到很大影响,特别是在突变型植物中。与野生型植物相比,突变根瘤的数量和鲜重以及乙炔的还原活性表现出较强的抑制作用。突变植物根瘤的光学显微镜研究表明,预期的衰老表型与淀粉和蔗糖水平的显着降低有关。这些结果表明,在日本莲花中,光呼吸,特别是GS(2)缺乏导致碳代谢受到严重限制,从而影响结瘤过程和固氮作用。

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