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Maize maintains growth in response to decreased nitrate supply through a highly dynamic and developmental stage-specific transcriptional response

机译:玉米通过高度动态和发育阶段特异性的转录反应来维持生长,以响应硝酸盐供应的减少

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摘要

Elucidation of the gene networks underlying the response to N supply and demand will facilitate the improvement of the N uptake efficiency of plants. We undertook a transcriptomic analysis of maize to identify genes responding to both a non-growth-limiting decrease in NO3- provision and to development-based N demand changes at seven representative points across the life cycle. Gene co-expression networks were derived by cluster analysis of the transcript profiles. The majority of NO3--responsive transcription occurred at 11 (D11), 18 (D18) and 29 (D29) days after emergence, with differential expression predominating in the root at D11 and D29 and in the leaf at D18. A cluster of 98 probe sets was identified, the expression pattern of which is similar to that of the high-affinity NO3- transporter (NRT2) genes across the life cycle. The cluster is enriched with genes encoding enzymes and proteins of lipid metabolism and transport, respectively. These are candidate genes for the response of maize to N supply and demand. Only a few patterns of differential gene expression were observed over the entire life cycle; however, the composition of the classes of the genes differentially regulated at individual time points was unique, suggesting tightly controlled regulation of NO3--responsive gene expression.
机译:阐明对氮供需的响应所基于的基因网络将有助于提高植物对氮的吸收效率。我们对玉米进行了转录组学分析,以鉴定在生命周期中七个代表点上对NO3-供给的非增长限制减少和对基于发育的氮需求变化的响应的基因。基因共表达网络通过转录谱的聚类分析得到。大多数NO3响应转录发生在出苗后11(D11),18(D18)和29(D29)天,差异表达主要发生在D11和D29的根部和D18的叶中。鉴定出一组98个探针,其表达模式与整个生命周期中的高亲和力NO3-转运蛋白(NRT2)基因相似。该簇分别富含编码脂质代谢和转运的酶和蛋白质的基因。这些是玉米对氮供需反应的候选基因。在整个生命周期中仅观察到几种差异基因表达模式。但是,在各个时间点受到差异调节的基因类别的组成是独特的,这表明对NO3响应基因表达的调节受到严格控制。

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