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过量表达从水稻表达谱中鉴定的氮响应早期结瘤素基因的转基因水稻植株提高了氮利用效率。

Increased nitrogen-use efficiency in transgenic rice plants over-expressing a nitrogen-responsive early nodulin gene identified from rice expression profiling.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, Canada N1G 2W1.

出版信息

Plant Cell Environ. 2009 Dec;32(12):1749-60. doi: 10.1111/j.1365-3040.2009.02032.x. Epub 2009 Aug 14.

Abstract

Development of genetic varieties with improved nitrogen-use efficiency (NUE) is essential for sustainable agriculture. In this study, we developed a growth system for rice wherein N was the growth-limiting factor, and identified N-responsive genes by a whole genome transcriptional profiling approach. Some genes were selected to test their functionality in NUE by a transgenic approach. One such example with positive effects on NUE is an early nodulin gene OsENOD93-1. This OsENOD93-1 gene responded significantly to both N induction and N reduction. Transgenic rice plants over-expressing the OsENOD93-1 gene had increased shoot dry biomass and seed yield. This OsENOD93-1 gene was expressed at high levels in roots of wild-type (WT) plants, and its protein product was localized in mitochondria. Transgenic plants accumulated higher concentrations of total amino acids and total N in roots. A higher concentration of amino acids in xylem sap was detected in transgenic plants, especially under N stress. In situ hybridization revealed that OsENOD93-1 is expressed in vascular bundles, as well as in epidermis and endodermis. This work demonstrates that transcriptional profiling, coupled with a transgenic validation approach, is an effective strategy for gene discovery. The knowledge gained from this study could be applied to other important crops.

摘要

培育具有改良氮利用效率(NUE)的遗传品种对于可持续农业至关重要。在本研究中,我们开发了一种水稻生长系统,其中氮是生长的限制因素,并通过全基因组转录谱分析方法鉴定了氮响应基因。通过转基因方法选择了一些基因来测试它们在 NUE 中的功能。其中一个具有积极影响 NUE 的例子是早期结瘤素基因 OsENOD93-1。这种 OsENOD93-1 基因对氮诱导和氮减少都有显著响应。过量表达 OsENOD93-1 基因的转基因水稻植株增加了地上部干生物量和种子产量。该 OsENOD93-1 基因在野生型(WT)植物的根中高水平表达,其蛋白质产物定位于线粒体。转基因植物在根中积累了更高浓度的总氨基酸和总氮。在转基因植物中,特别是在氮胁迫下,检测到木质部汁液中氨基酸浓度更高。原位杂交显示,OsENOD93-1 在维管束以及表皮和内皮层中表达。这项工作表明,转录谱分析与转基因验证方法相结合,是一种有效的基因发现策略。从这项研究中获得的知识可应用于其他重要作物。

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