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首页> 外文期刊>Molecular Plant-Microbe Interactions >Carbon Metabolism and Bacteroid Functioning Are Involved in the Regulation of Nitrogen Fixation in Medicago truncatula Under Drought and Recovery
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Carbon Metabolism and Bacteroid Functioning Are Involved in the Regulation of Nitrogen Fixation in Medicago truncatula Under Drought and Recovery

机译:干旱和恢复条件下Medi藜苜蓿的固氮调控涉及碳代谢和细菌功能。

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Regulation of symbiotic nitrogen fixation (SNF) during drought stress is complex and not yet fully understood. In the present work, the involvement of nodule C and N metabolism in the regulation of SNF in Medicago truncatula under drought and a subsequent rewatering treatment was analyzed using a combination of metabolomic and proteomic approaches. Drought induced a reduction of SNF rates and major changes in the metabolic profile of nodules, mostly an accumulation of amino acids (Pro, His, and Trp) and carbohydrates (sucrose, galactinol, raffinose, and trehalose). This accumulation was coincidental with a decline in the levels of bacteroid proteins involved in SNF and C metabolism, along with a partial reduction of the levels of plant sucrose synthase 1 (SuSy1). In contrast, the variations in enzymes related to N assimilation were found not to correlate with the reduction in SNF, suggesting that these enzymes do not have a role in the regulation of SNF. Unlike the situation in other legumes such as pea and soybean, the drought-induced inhibition of SNF in M. truncatula appears to be caused by impairment of bacteroid metabolism and N2-fixing capacity rather than a limitation of respiratory substrate.
机译:干旱胁迫下共生固氮(SNF)的调控是复杂的,尚未完全了解。在目前的工作中,结合代谢组学和蛋白质组学方法,分析了干旱条件下run藜苜蓿中结节碳和氮代谢参与SNF的调控,以及随后的补水处理。干旱导致SNF降低,结节的代谢特征发生重大变化,主要是氨基酸(Pro,His和Trp)和碳水化合物(蔗糖,半乳糖醇,棉子糖和海藻糖)的积累。这种积累是伴随着参与SNF和C代谢的类细菌蛋白水平的下降,以及植物蔗糖合酶1(SuSy1)水平的部分下降。相反,发现与N同化相关的酶的变化与SNF的降低不相关,表明这些酶在SNF的调节中不起作用。与豌豆和大豆等其他豆类作物的情况不同,干旱引起的截枝梭菌对SNF的抑制作用似乎是由于细菌代谢和N2固定能力受损而不是限制呼吸底物引起的。

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