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通过过度表达尿素渗透酶 1 积累尿囊素可改善氮素限制条件下水稻的生长。

Allantoin accumulation through overexpression of ureide permease1 improves rice growth under limited nitrogen conditions.

机构信息

Graduate School of International Agricultural Technology and Crop Biotechnology, Institute/GreenBio Science and Technology, Seoul National University, Pyeongchang, Korea.

Center for Nutraceutical and Pharmaceutical Materials, Division of Bioscience and Bioinformatics, Myongji University, Yongin, Gyeonggi, Korea.

出版信息

Plant Biotechnol J. 2019 Jul;17(7):1289-1301. doi: 10.1111/pbi.13054. Epub 2019 Feb 4.

Abstract

In legumes, nitrogen (N) can be stored as ureide allantoin and transported by ureide permease (UPS) from nodules to leaves where it is catabolized to release ammonium and assimilation to amino acids. In non-leguminous plants especially rice, information on its roles in N metabolism is scarce. Here, we show that OsUPS1 is localized in plasma membranes and are highly expressed in vascular tissues of rice. We further evaluated an activation tagging rice overexpressing OsUPS1 (OsUPS1 ) under several N regimes. Under normal field conditions, panicles from OsUPS1 plants (14 days after flowering (DAF)) showed significant allantoin accumulation. Under hydroponic system at the vegetative stage, plants were exposed to N-starvation and measured the ammonium in roots after resupplying with ammonium sulphate. OsUPS1 plants displayed higher ammonium uptake in roots compared to wild type (WT). When grown under low-N soil supplemented with different N-concentrations, OsUPS1 exhibited better growth at 50% N showing higher chlorophyll, tiller number and at least 20% increase in shoot and root biomass relative to WT. To further confirm the effects of regulating the expression of OsUPS1, we evaluated whole-body-overexpressing plants driven by the GOS2 promoter (OsUPS1 ) as well as silencing plants (OsUPS1 ). We found significant accumulation of allantoin in leaves, stems and roots of OsUPS1 while in OsUPS1 allantoin was significantly accumulated in roots. We propose that OsUPS1 is responsible for allantoin partitioning in rice and its overexpression can support plant growth through accumulation of allantoin in sink tissues which can be utilized when N is limiting.

摘要

在豆科植物中,氮(N)可以作为尿囊素储存在体内,并通过尿囊素渗透酶(UPS)从根瘤运输到叶片,在叶片中被分解为铵并被同化形成氨基酸。在非豆科植物中,特别是水稻,其在氮代谢中的作用的信息还很匮乏。在这里,我们发现 OsUPS1 定位于质膜上,在水稻的维管束组织中高度表达。我们进一步评估了一种在几种氮素条件下过表达 OsUPS1 的激活标签水稻(OsUPS1 )。在正常田间条件下,OsUPS1 植株(花后 14 天)的穗中显示出明显的尿囊素积累。在营养生长期的水培系统中,植物经历氮饥饿,并用硫酸铵重新供应后测量根部的铵。与野生型(WT)相比,OsUPS1 植物的根部吸收铵的能力更高。当在添加不同氮浓度的低氮土壤中生长时,OsUPS1 在 50%氮浓度下表现出更好的生长,表现为更高的叶绿素、分蘖数以及地上部和根生物量至少增加 20%,与 WT 相比。为了进一步证实调控 OsUPS1 表达的效果,我们评估了由 GOS2 启动子驱动的全株过表达植株(OsUPS1 )和沉默植株(OsUPS1 )。我们发现 OsUPS1 叶片、茎和根中的尿囊素积累显著增加,而 OsUPS1 中尿囊素在根中积累显著增加。我们提出 OsUPS1 负责水稻中尿囊素的分配,其过表达可以通过在氮限制时可利用的汇组织中积累尿囊素来支持植物生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4847/11386731/15dcdf9248dc/PBI-17-1289-g002.jpg

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