INRA, UMR Eco&Sols-Ecologie Fonctionnelle & Biogéochimie des Sols & Agroécosystèmes, 2 Place Viala, F34060, Montpellier, France.
J Exp Bot. 2012 Aug;63(13):4723-30. doi: 10.1093/jxb/ers151. Epub 2012 Jul 5.
Although previous studies on N2-fixing legumes have demonstrated the contribution of acid phosphatases to their phosphorus (P) use efficiency under P-deficient growth conditions, localization of these enzymes in bean nodules has not been demonstrated. In this study, phosphoenol pyruvate phosphatase (PEPase) gene transcripts were localized within the nodule tissues of two recombinant inbred lines, RIL115 (P-deficiency tolerant) and RIL147 (P-deficiency sensitive), of Phaseolus vulgaris. Nodules were induced by Rhizobium tropici CIAT899 under hydroaeroponic conditions with a sufficient versus a deficient P supply. The results indicated that PEPase transcripts were particularly abundant in the nodule infected zone and cortex of both RILs. Analysis of fluorescence intensity indicated that nodule PEPase was induced under conditions of P deficiency to a significantly higher extent in RIL147 than in RIL115, and more in the inner cortex (91%) than in the outer cortex (71%) or the infected zone (79%). In addition, a significant increase (39%) in PEPase enzyme activity in the P-deficient RIL147 correlated with an increase (58%) in the efficiency of use in rhizobial symbiosis. It was concluded that nodule PEPase is upregulated under conditions of P deficiency in the P-deficiency-sensitive RIL147, and that this gene may contribute to adaptation of rhizobial symbiosis to low-P environments.
尽管先前关于固氮豆科植物的研究表明,酸性磷酸酶在磷缺乏生长条件下对其磷利用效率有贡献,但这些酶在豆科植物根瘤中的定位尚未得到证明。在这项研究中,磷酸烯醇丙酮酸磷酸酶(PEPase)基因转录本在两个重组自交系(RIL115(耐缺磷)和 RIL147(缺磷敏感))的根瘤组织中进行了定位。在水培和气培条件下,用 Rhizobium tropici CIAT899 诱导根瘤,供应充足或缺乏磷。结果表明,PEPase 转录本在两个 RIL 的根瘤感染区和皮层中特别丰富。荧光强度分析表明,在缺磷条件下,RIL147 中根瘤 PEPase 的诱导程度明显高于 RIL115,内皮层(91%)的诱导程度高于外皮层(71%)或感染区(79%)。此外,缺磷 RIL147 中 PEPase 酶活性的显著增加(39%)与根瘤共生中利用效率的增加(58%)相关。因此,可以得出结论,在缺磷敏感的 RIL147 中,根瘤 PEPase 在缺磷条件下被上调,该基因可能有助于根瘤共生适应低磷环境。