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宿主植物基因组克服了共生固氮细菌基因缺失的问题。

Host plant genome overcomes the lack of a bacterial gene for symbiotic nitrogen fixation.

机构信息

National Institute of Agrobiological Sciences, Tsukuba, Ibaraki 305-8602, Japan.

出版信息

Nature. 2009 Nov 26;462(7272):514-7. doi: 10.1038/nature08594.

Abstract

Homocitrate is a component of the iron-molybdenum cofactor in nitrogenase, where nitrogen fixation occurs. NifV, which encodes homocitrate synthase (HCS), has been identified from various diazotrophs but is not present in most rhizobial species that perform efficient nitrogen fixation only in symbiotic association with legumes. Here we show that the FEN1 gene of a model legume, Lotus japonicus, overcomes the lack of NifV in rhizobia for symbiotic nitrogen fixation. A Fix(-) (non-fixing) plant mutant, fen1, forms morphologically normal but ineffective nodules. The causal gene, FEN1, was shown to encode HCS by its ability to complement a HCS-defective mutant of Saccharomyces cerevisiae. Homocitrate was present abundantly in wild-type nodules but was absent from ineffective fen1 nodules. Inoculation with Mesorhizobium loti carrying FEN1 or Azotobacter vinelandii NifV rescued the defect in nitrogen-fixing activity of the fen1 nodules. Exogenous supply of homocitrate also recovered the nitrogen-fixing activity of the fen1 nodules through de novo nitrogenase synthesis in the rhizobial bacteroids. These results indicate that homocitrate derived from the host plant cells is essential for the efficient and continuing synthesis of the nitrogenase system in endosymbionts, and thus provide a molecular basis for the complementary and indispensable partnership between legumes and rhizobia in symbiotic nitrogen fixation.

摘要

同型柠檬酸是固氮酶中铁-钼辅因子的一个组成部分,而氮固定就发生在固氮酶中。已经从各种固氮生物中鉴定出编码同型柠檬酸合酶(HCS)的 NifV,但它不存在于大多数能够与豆科植物进行有效共生固氮的根瘤菌中。在这里,我们表明,模式豆科植物百脉根的 FEN1 基因克服了根瘤菌中缺乏 NifV 以进行共生固氮的问题。Fix(-)(不固氮)植物突变体 fen1 形成形态正常但无效的根瘤。该致病基因 FEN1 通过其能够互补酿酒酵母 HCS 缺陷突变体来证明其编码 HCS 的能力。同型柠檬酸在野生型根瘤中大量存在,但在无效的 fen1 根瘤中不存在。用携带 FEN1 的 Mesorhizobium loti 或携带 Azotobacter vinelandii NifV 的接种物挽救了 fen1 根瘤固氮活性的缺陷。通过从头合成固氮酶,外源同型柠檬酸也恢复了 fen1 根瘤的固氮活性。这些结果表明,宿主植物细胞衍生的同型柠檬酸对于共生体中固氮酶系统的高效和持续合成是必不可少的,从而为豆科植物和根瘤菌在共生固氮中的互补和不可或缺的伙伴关系提供了分子基础。

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