首页> 外文期刊>Plant and Cell Physiology >Overexpressing the ANR1 MADS-Box Gene in Transgenic Plants Provides New Insights into its Role in the Nitrate Regulation of Root Development
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Overexpressing the ANR1 MADS-Box Gene in Transgenic Plants Provides New Insights into its Role in the Nitrate Regulation of Root Development

机译:在转基因植物中过表达ANR1 MADS-Box基因为其在根发育的硝酸盐调节中的作用提供了新见解

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摘要

The expression of the ANR1 MADS-box gene was manipulated in transgenic plants to investigate its role in the NO3−-dependent regulation of root development in Arabidopsis thaliana. Constitutive overexpression of ANR1 in roots, achieved using GAL4 enhancer trap lines, resulted in more rapid early seedling development, increased lengths and numbers of lateral roots and increased shoot fresh weight. Based on results obtained with five different enhancer trap lines, the overexpression of ANR1 in the lateral root tips appears to be more important for this phenotype than its level of expression in the developing lateral root primordia. Dexamethasone-mediated induction of ANR1 in lines expressing an ANR1–GR (glucocorticoid receptor) fusion protein stimulated lateral root growth but not primary root growth. Short-term (24 h) dexamethasone treatments led to prolonged stimulation of lateral root growth, whether the lateral roots were already mature or still unemerged at the time of treatment. In split-root experiments, localized application of dexamethasone to half of the root system of an ANR1–GR line elicited a localized increase in both the length and numbers of lateral roots, mimicking the effect of a localized NO3− treatment. In both types of transgenic line, the root phenotype was strongly dependent on the presence of NO3−, indicating that there are additional components involved in ANR1 function that are NO3− regulated. The implications of these results for our understanding of ANR1’s mode of action in the root response to localized NO3− are discussed.
机译:在转基因植物中操纵ANR1 MADS-box基因的表达,以研究其在拟南芥根发育中NO 3 -依赖性调控中的作用。使用GAL4增强剂诱集系实现了根部ANR1的组成型过表达,从而使幼苗早期发育更加迅速,侧根的长度和数量增加,并且枝条鲜重增加。根据使用五种不同的增强子捕获线获得的结果,在该表型中,ANR1在侧根尖端的过表达似乎比在发育中的侧根原基中的表达水平更为重要。在表达ANR1-GR(糖皮质激素受体)融合蛋白的品系中,地塞米松介导的ANR1诱导刺激侧根生长,但不刺激初级根生长。短期(24小时)地塞米松治疗可延长对侧根生长的刺激,无论侧根是否已经成熟或在治疗时仍未拔除。在分根实验中,将地塞米松局部应用到ANR1-GR系的一半根系中,会引起侧根的长度和数量局部增加,从而模拟了局部NO 3 -处理。在两种类型的转基因株系中,根表型都强烈依赖于NO 3 -的存在,这表明ANR1功能中涉及的其他成分是NO 3 受管制。讨论了这些结果对我们理解ANR1在局部NO 3 -的根响应中的作用方式的意义。

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    《Plant and Cell Physiology》 |2012年第6期|p.1003-1016|共14页
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    1Centre for Sustainable Agriculture, Lancaster Environment Centre, Lancaster University, Lancaster LA1 4YQ, UK 2Institute of Crop Science, Zhejiang University, 268 Kaixuan Road, 310029 Hangzhou, PR China 3These two authors contributed equally to this work 4Present address: Department of Stem Cell Biology, University of Heidelberg, Im Neuenheimer Feld 230, D-69120 Heidelberg, Germany 5Present address: Institut des Sciences du Végétal, CNRS, 1 Avenue de la Terrasse, 91198 Gif-Sur-Yvette Cedex, France;

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