INRA 1355, UMR 'Institut Sophia Agrobiotech', Sophia-Antipolis Cedex, F-06903, France; CNRS 7254, UMR 'Institut Sophia Agrobiotech', Sophia-Antipolis Cedex, F-06903, France; UMR 'Institut Sophia Agrobiotech' Université de Nice-Sophia Antipolis (UNS), Cedex, F-06903, France.
Plant Cell Environ. 2014 Mar;37(3):658-69. doi: 10.1111/pce.12185. Epub 2013 Sep 17.
PRAF proteins are present in all plants, but their functions remain unclear. We investigated the role of one member of the PRAF family, MtZR1, on the development of roots and nitrogen-fixing nodules in Medicago truncatula. We found that MtZR1 was expressed in all M. truncatula organs. Spatiotemporal analysis showed that MtZR1 expression in M. truncatula roots was mostly limited to the root meristem and the vascular bundles of mature nodules. MtZR1 expression in root nodules was down-regulated in response to various abiotic stresses known to affect nitrogen fixation efficiency. The down-regulation of MtZR1 expression by RNA interference in transgenic roots decreased root growth and impaired nodule development and function. MtZR1 overexpression resulted in longer roots and significant changes to nodule development. Our data thus indicate that MtZR1 is involved in the development of roots and nodules. To our knowledge, this work provides the first in vivo experimental evidence of a biological role for a typical PRAF protein in plants.
PRAF 蛋白存在于所有植物中,但它们的功能仍不清楚。我们研究了 PRAF 家族的一个成员 MtZR1 在蒺藜苜蓿根和固氮根瘤发育中的作用。我们发现 MtZR1 在蒺藜苜蓿的所有器官中都有表达。时空分析表明,MtZR1 在蒺藜苜蓿根中的表达主要局限于根分生组织和成熟根瘤的维管束。MtZR1 在根瘤中的表达受多种已知影响固氮效率的非生物胁迫的下调。在转基因根中通过 RNA 干扰下调 MtZR1 的表达会降低根的生长并损害根瘤的发育和功能。MtZR1 的过表达导致根更长,并对根瘤的发育产生显著影响。因此,我们的数据表明 MtZR1 参与了根和根瘤的发育。据我们所知,这项工作提供了第一个典型 PRAF 蛋白在植物中具有生物学功能的体内实验证据。