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Sucrose Synthase in Legume Nodules Is Essential for Nitrogen Fixation

机译:豆科结节中的蔗糖合酶对于固氮至关重要

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摘要

The role of sucrose synthase (SS) in the fixation of N was examined in the rug4 mutant of pea (Pisum sativum L.) plants in which SS activity was severely reduced. When dependent on nodules for their N supply, the mutant plants were not viable and appeared to be incapable of effective N fixation, although nodule formation was essentially normal. In fact, N and C resources invested in nodules were much greater in mutant plants than in the wild-type (WT) plants. Low SS activity in nodules (present at only 10% of WT levels) resulted in lower amounts of total soluble protein and leghemoglobin and lower activities of several enzymes compared with WT nodules. Alkaline invertase activity was not increased to compensate for reduced SS activity. Leghemoglobin was present at less than 20% of WT values, so O2 flux may have been compromised. The two components of nitrogenase were present at normal levels in mutant nodules. However, only a trace of nitrogenase activity was detected in intact plants and none was found in isolated bacteroids. The results are discussed in relation to the role of SS in the provision of C substrates for N fixation and in the development of functional nodules.
机译:在豌豆(Pisum sativum L.)植物的rug4突变株中,SS活性严重降低,检查了蔗糖合酶(SS)在固氮中的作用。当依靠结节的氮供应时,尽管结节的形成基本上是正常的,但突变植物却没有活力并且似乎无法有效固氮。实际上,与野生型(WT)植物相比,突变植物中对结核的氮和碳资源投入要大得多。与WT结核相比,结节中SS活性低(仅占WT水平的10%)导致总可溶性蛋白和豆血红蛋白量降低,几种酶的活性降低。碱性转化酶活性没有增加以补偿降低的SS活性。血红蛋白的含量不到野生型值的20%,因此O2通量可能已受到损害。突变结节中固氮酶的两种成分均以正常水平存在。但是,在完整植物中仅检测到微量的固氮酶活性,而在分离的类细菌中未发现。讨论了有关SS在为N固定提供C底物和功能性结节发展中的作用的结果。

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