MOE Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, China.
State Key Laboratory of Grassland Agro-Ecosystem, College of Ecology, Lanzhou University, Lanzhou, China.
Plant Cell Environ. 2023 Nov;46(11):3558-3574. doi: 10.1111/pce.14678. Epub 2023 Aug 7.
Adequate distribution of mineral sulphur (S) nutrition to nodules mediated by sulphate transporters is crucial for nitrogen fixation in symbiosis establishment process. However, the molecular mechanisms underlying this process remain largely unknown. In this study, we characterized the function of Early Senescent Nodule 2 (MtESN2), a gene crucial to nitrogen fixation in Medicago truncatula. Mutations in MtESN2 resulted in severe developmental and functional defects including dwarf shoots, early senescent nodules, and lower nitrogenase activity under symbiotic conditions compared to wild-type plants. MtESN2 encodes an M. truncatula sulphate transporter that is expressed only in roots and nodules, with the highest expression levels in the transition zone and nitrogen-fixing zone of nodules. MtESN2 exhibited sulphate transport activity when expressed in yeast. Immunolocalization analysis showed that MtESN2-yellow fluorescent protein fusion protein was localized to the plasma membranes of both uninfected and infected cells of nodules, where it might transport sulphate into both rhizobia-infected and uninfected cells within the nodules. Our results reveal an unreported sulphate transporter that contributes to effective symbiosis and prevents nodule early senescence in M. truncatula.
足够的矿质硫(S)营养分配到由硫酸盐转运体介导的根瘤中,对于共生体建立过程中的固氮至关重要。然而,这一过程的分子机制在很大程度上仍然未知。在这项研究中,我们对 Early Senescent Nodule 2(MtESN2)进行了功能表征,MtESN2 是紫花苜蓿固氮过程中至关重要的基因。与野生型植物相比,MtESN2 突变导致严重的发育和功能缺陷,包括矮化枝条、早期衰老的根瘤和共生条件下的固氮酶活性降低。MtESN2 编码一种仅在根和根瘤中表达的紫花苜蓿硫酸盐转运体,在根瘤的过渡区和固氮区表达水平最高。当在酵母中表达时,MtESN2 表现出硫酸盐转运活性。免疫定位分析表明,MtESN2-黄色荧光蛋白融合蛋白定位于根瘤的未感染和感染细胞的质膜上,它可能将硫酸盐运入根瘤内的感染和未感染细胞。我们的研究结果揭示了一种未被报道的硫酸盐转运体,它有助于有效的共生并防止紫花苜蓿根瘤的早期衰老。