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Flooding of the root system in soybean: biochemical and molecular aspects of N metabolism in the nodule during stress and recovery

机译:大豆根系泛滥:胁迫和恢复过程中根瘤中氮代谢的生化和分子方面

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摘要

Nitrogen fixation of the nodule of soybean is highly sensitive to oxygen deficiency such as provoked by waterlogging of the root system. This study aimed to evaluate the effects of flooding on N metabolism in nodules of soybean. Flooding resulted in a marked decrease of asparagine (the most abundant amino acid) and a concomitant accumulation of gamma-aminobutyric acid (GABA). Flooding also resulted in a strong reduction of the incorporation of N-15(2) in amino acids. Nodule amino acids labelled before flooding rapidly lost N-15 during flooding, except for GABA, which initially increased and declined slowly thereafter. Both nitrogenase activity and the expression of nifH and nifD genes were strongly decreased on flooding. Expression of the asparagine synthetase genes SAS1 and SAS2 was reduced, especially the former. Expression of genes encoding the enzyme glutamic acid decarboxylase (GAD1, GAD4, GAD5) was also strongly suppressed except for GAD2 which increased. Almost all changes observed during flooding were reversible after draining. Possible changes in asparagine and GABA metabolism that may explain the marked fluctuations of these amino acids during flooding are discussed. It is suggested that the accumulation of GABA has a storage role during flooding stress.
机译:大豆根瘤的固氮对缺氧高度敏感,例如根系浸水会引起缺氧。本研究旨在评估水淹对大豆根瘤中氮代谢的影响。水淹导致天冬酰胺(最丰富的氨基酸)显着减少,并伴有γ-氨基丁酸(GABA)的积累。淹没还导致N-15(2)在氨基酸中的结合大大减少。淹没前标记的根瘤氨基酸在淹没过程中迅速失去了N-15,但GABA最初增加而其后缓慢下降。淹没后,固氮酶活性以及nifH和nifD基因的表达均大大降低。天冬酰胺合成酶基因SAS1和SAS2的表达降低,尤其是前者。编码谷氨酸脱羧酶的基因(GAD1,GAD4,GAD5)的表达也被强烈抑制,除了GAD2增加。洪水后几乎观察到的所有变化在排水后都是可逆的。讨论了天冬酰胺和GABA代谢的可能变化,这些变化可以解释这些氨基酸在淹没期间的明显波动。提示GABA的积累在水淹胁迫中具有存储作用。

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