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水稻 DUR3 介导高亲和力尿素转运,当在拟南芥中表达时,在提高尿素获取和利用方面发挥有效作用。

Rice DUR3 mediates high-affinity urea transport and plays an effective role in improvement of urea acquisition and utilization when expressed in Arabidopsis.

机构信息

Department of Plant Nutrition, Key Laboratory of Plant and Soil Interactions of MEoC, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.

出版信息

New Phytol. 2012 Jan;193(2):432-44. doi: 10.1111/j.1469-8137.2011.03929.x. Epub 2011 Oct 19.

DOI:10.1111/j.1469-8137.2011.03929.x
PMID:22010949
Abstract

• Despite the great agricultural and ecological importance of efficient use of urea-containing nitrogen fertilizers by crops, molecular and physiological identities of urea transport in higher plants have been investigated only in Arabidopsis. • We performed short-time urea-influx assays which have identified a low-affinity and high-affinity (K(m) of 7.55 μM) transport system for urea-uptake by rice roots (Oryza sativa). • A high-affinity urea transporter OsDUR3 from rice was functionally characterized here for the first time among crops. OsDUR3 encodes an integral membrane-protein with 721 amino acid residues and 15 predicted transmembrane domains. Heterologous expression demonstrated that OsDUR3 restored yeast dur3-mutant growth on urea and facilitated urea import with a K(m) of c. 10 μM in Xenopus oocytes. • Quantitative reverse-transcription polymerase chain reaction (qPCR) analysis revealed upregulation of OsDUR3 in rice roots under nitrogen-deficiency and urea-resupply after nitrogen-starvation. Importantly, overexpression of OsDUR3 complemented the Arabidopsis atdur3-1 mutant, improving growth on low urea and increasing root urea-uptake markedly. Together with its plasma membrane localization detected by green fluorescent protein (GFP)-tagging and with findings that disruption of OsDUR3 by T-DNA reduces rice growth on urea and urea uptake, we suggest that OsDUR3 is an active urea transporter that plays a significant role in effective urea acquisition and utilisation in rice.

摘要

• 尽管作物高效利用含尿素的氮肥具有重要的农业和生态意义,但高等植物中尿素转运的分子和生理特性仅在拟南芥中进行了研究。 • 我们进行了短时间的尿素流入测定,这些测定确定了水稻根系吸收尿素的低亲和力和高亲和力(K(m)为 7.55 μM)转运系统。 • 我们首次在作物中对水稻高亲和力尿素转运蛋白 OsDUR3 进行了功能表征。OsDUR3 编码一种具有 721 个氨基酸残基和 15 个预测跨膜结构域的完整膜蛋白。异源表达表明,OsDUR3 恢复了酵母 dur3 突变体在尿素上的生长,并在爪蟾卵母细胞中以约 10 μM 的 K(m)促进尿素导入。 • 定量逆转录聚合酶链反应(qPCR)分析显示,在氮缺乏和氮饥饿后尿素供应下,水稻根系中 OsDUR3 的表达上调。重要的是,OsDUR3 的过表达补充了拟南芥 atdur3-1 突变体,改善了在低尿素条件下的生长,并显著增加了根对尿素的吸收。与 GFP 标记检测到的其质膜定位以及 T-DNA 破坏 OsDUR3 会降低水稻在尿素上的生长和尿素吸收的发现相结合,我们认为 OsDUR3 是一种活跃的尿素转运蛋白,在水稻有效获取和利用尿素方面发挥着重要作用。

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