Department of Crop and Soil Sciences, North Carolina State University, Raleigh, NC, 27695-7619, USA.
Department of Bacteriology, University of Wisconsin-Madison, Madison, WI, 53706, USA.
Sci Rep. 2023 Jan 16;13(1):804. doi: 10.1038/s41598-023-28160-8.
Transport systems are crucial in many plant processes, including plant-microbe interactions. Nodule formation and function in legumes involve the expression and regulation of multiple transport proteins, and many are still uncharacterized, particularly for nitrogen transport. Amino acids originating from the nitrogen-fixing process are an essential form of nitrogen for legumes. This work evaluates the role of MtN21 (henceforth MtUMAMIT14), a putative transport system from the MtN21/EamA-like/UMAMIT family, in nodule formation and nitrogen fixation in Medicago truncatula. To dissect this transporter's role, we assessed the expression of MtUMAMIT14 using GUS staining, localized the corresponding protein in M. truncatula root and tobacco leaf cells, and investigated two independent MtUMAMIT14 mutant lines. Our results indicate that MtUMAMIT14 is localized in endosomal structures and is expressed in both the infection zone and interzone of nodules. Comparison of mutant and wild-type M. truncatula indicates MtUMAMIT14, the expression of which is dependent on the presence of NIN, DNF1, and DNF2, plays a role in nodule formation and nitrogen-fixation. While the function of the transporter is still unclear, our results connect root nodule nitrogen fixation in legumes with the UMAMIT family.
运输系统在许多植物过程中都至关重要,包括植物-微生物相互作用。豆科植物的根瘤形成和功能涉及多种运输蛋白的表达和调节,其中许多仍未被描述,特别是氮素运输。来自固氮过程的氨基酸是豆科植物氮素的重要形式。本研究评估了假定的运输系统 MtN21(以下简称 MtUMAMIT14)在蒺藜苜蓿根瘤形成和固氮中的作用。为了剖析该转运蛋白的作用,我们使用 GUS 染色评估了 MtUMAMIT14 的表达,在蒺藜苜蓿根和烟草叶细胞中定位了相应的蛋白,并研究了两个独立的 MtUMAMIT14 突变体系。结果表明,MtUMAMIT14 定位于内体结构中,在根瘤的侵染区和居间区均有表达。突变体和野生型蒺藜苜蓿的比较表明,MtUMAMIT14 的表达依赖于 NIN、DNF1 和 DNF2 的存在,在根瘤形成和固氮中发挥作用。虽然该转运蛋白的功能尚不清楚,但我们的结果将豆科植物根瘤固氮与 UMAMIT 家族联系起来。