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调控资源分配协调氮和根瘤菌的响应以及苜蓿根瘤自动调节。

Regulation of Resource Partitioning Coordinates Nitrogen and Rhizobia Responses and Autoregulation of Nodulation in Medicago truncatula.

机构信息

School of Life Sciences, University of Warwick, Coventry CV4 7AL, UK.

Gateway Building, Sutton Bonington Campus, University of Nottingham, Sutton Bonington LE12 5RD, UK.

出版信息

Mol Plant. 2019 Jun 3;12(6):833-846. doi: 10.1016/j.molp.2019.03.014. Epub 2019 Apr 3.

Abstract

Understanding how plants respond to nitrogen in their environment is crucial for determining how they use it and how the nitrogen use affects other processes related to plant growth and development. Under nitrogen limitation the activity and affinity of uptake systems is increased in roots, and lateral root formation is regulated in order to adapt to low nitrogen levels and scavenge from the soil. Plants in the legume family can form associations with rhizobial nitrogen-fixing bacteria, and this association is tightly regulated by nitrogen levels. The effect of nitrogen on nodulation has been extensively investigated, but the effects of nodulation on plant nitrogen responses remain largely unclear. In this study, we integrated molecular and phenotypic data in the legume Medicago truncatula and determined that genes controlling nitrogen influx are differently expressed depending on whether plants are mock or rhizobia inoculated. We found that a functional autoregulation of nodulation pathway is required for roots to perceive, take up, and mobilize nitrogen as well as for normal root development. Our results together revealed that autoregulation of nodulation, root development, and the location of nitrogen are processes balanced by the whole plant system as part of a resource-partitioning mechanism.

摘要

了解植物如何响应环境中的氮是至关重要的,因为这可以帮助我们确定它们如何利用氮,以及氮的利用如何影响与植物生长和发育相关的其他过程。在氮限制下,根系吸收系统的活性和亲和力会增加,侧根的形成会受到调节,以适应低氮水平并从土壤中获取氮。豆科植物可以与根瘤菌固氮细菌形成共生关系,这种共生关系受到氮水平的严格调控。氮对结瘤的影响已经得到了广泛的研究,但结瘤对植物氮响应的影响在很大程度上仍不清楚。在这项研究中,我们整合了豆科植物蒺藜苜蓿的分子和表型数据,结果表明,控制氮吸收的基因的表达会根据植物是否被模拟接种或根瘤菌接种而有所不同。我们发现,结瘤途径的功能自我调控对于根吸收、利用和移动氮以及正常的根发育是必需的。我们的研究结果表明,结瘤、根发育和氮的位置的自我调控是一个由整个植物系统平衡的过程,是资源分配机制的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efb1/6557310/897e59c69bb0/gr1.jpg

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