Pélissier Hélène C, Frerich Anke, Desimone Marcelo, Schumacher Karin, Tegeder Mechthild
School of Biological Sciences, Center for Reproductive Biology, Washington State University, Pullman, Washington 99164-4236, USA.
Plant Physiol. 2004 Feb;134(2):664-75. doi: 10.1104/pp.103.033365. Epub 2004 Feb 5.
Nodulated legumes receive their nitrogen via nitrogen-fixing rhizobia, which exist in a symbiotic relationship with the root system. In tropical legumes like French bean (Phaseolus vulgaris) or soybean (Glycine max), most of the fixed nitrogen is used for synthesis of the ureides allantoin and allantoic acid, the major long-distance transport forms of organic nitrogen in these species. The purpose of this investigation was to identify a ureide transporter that would allow us to further characterize the mechanisms regulating ureide partitioning in legume roots. A putative allantoin transporter (PvUPS1) was isolated from nodulated roots of French bean and was functionally characterized in an allantoin transport-deficient yeast mutant showing that PvUPS1 transports allantoin but also binds its precursors xanthine and uric acid. In beans, PvUPS1 was expressed throughout the plant body, with strongest expression in nodulated roots, source leaves, pods, and seed coats. In roots, PvUPS1 expression was dependent on the status of nodulation, with highest expression in nodules and roots of nodulated plants compared with non-nodulated roots supplied with ammonium nitrate or allantoin. In situ RNA hybridization localized PvUPS1 to the nodule endodermis and the endodermis and phloem of the nodule vasculature. These results strengthen our prediction that in bean nodules, PvUPS1 is involved in delivery of allantoin to the vascular bundle and loading into the nodule phloem.
结瘤豆科植物通过固氮根瘤菌获取氮,根瘤菌与根系存在共生关系。在热带豆科植物如菜豆(Phaseolus vulgaris)或大豆(Glycine max)中,大部分固定氮用于合成尿囊素和尿囊酸这两种脲类化合物,它们是这些物种中有机氮的主要长距离运输形式。本研究的目的是鉴定一种脲类转运蛋白,以便我们进一步表征调节豆科植物根中脲类分配的机制。从菜豆的结瘤根中分离出一种假定的尿囊素转运蛋白(PvUPS1),并在一个尿囊素运输缺陷型酵母突变体中对其进行了功能表征,结果表明PvUPS1不仅运输尿囊素,还结合其前体黄嘌呤和尿酸。在菜豆中,PvUPS1在整个植株中都有表达,在结瘤根、源叶、豆荚和种皮中表达最强。在根中,PvUPS1的表达取决于结瘤状态,与供应硝酸铵或尿囊素的未结瘤根相比,在结瘤植物的根瘤和根中表达最高。原位RNA杂交将PvUPS1定位到根瘤内皮层以及根瘤维管束的内皮层和韧皮部。这些结果强化了我们的预测,即在菜豆根瘤中,PvUPS1参与将尿囊素输送到维管束并装载到根瘤韧皮部。